The next pass goes closer.

460 additional assessments: ten for each of40 station parts and six game systems. This extends the approved461-check rubric. These new rows begin Unreviewed; a playable preview is not full-fidelity acceptance.

Each assessment needs evidence tied to its actual build. Passing requires9/10 or better, with no missing critical detail or clipping. Every repeated child is assessed separately. Unknowns stay unverified.

B.01 remains one branding criterion covering both placements. The requested redesign must use smaller marks that follow the surface, without bulky backings, and pass its attachment, readability and motion checks again.

Evidence ledger · Full text · Original requirements

S01 · Unity · Node 1 10 checks · Unreviewed

S01.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect six port collars; shield panel edges; radial handrail feet at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S01.R2.02 · Photographic registration
Use two dated primary photographs of six port collars; shield panel edges; radial handrail feet. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S01.R2.03 · Grazing geometry
Sweep a light and camera tangentially past six port collars; shield panel edges; radial handrail feet. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S01.R2.04 · Material scale
Compare six port collars; shield panel edges; radial handrail feet at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S01.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on six port collars; shield panel edges; radial handrail feet with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S01.R2.06 · Hidden attachments
Look underneath and behind six port collars; shield panel edges; radial handrail feet; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S01.R2.07 · Shadow transition
Hold a close view of six port collars; shield panel edges; radial handrail feet while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S01.R2.08 · Reflection continuity
Move continuously around six port collars; shield panel edges; radial handrail feet through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S01.R2.09 · Camera and tether passage
Approach six port collars; shield panel edges; radial handrail feet from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S01.R2.10 · Production revisit
Repeat the same route around six port collars; shield panel edges; radial handrail feet in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S02 · Harmony · Node 2 10 checks · Unreviewed

S02.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect Destiny connection; Columbus and Kibo interfaces; forward adapter collar at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S02.R2.02 · Photographic registration
Use two dated primary photographs of Destiny connection; Columbus and Kibo interfaces; forward adapter collar. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S02.R2.03 · Grazing geometry
Sweep a light and camera tangentially past Destiny connection; Columbus and Kibo interfaces; forward adapter collar. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S02.R2.04 · Material scale
Compare Destiny connection; Columbus and Kibo interfaces; forward adapter collar at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S02.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on Destiny connection; Columbus and Kibo interfaces; forward adapter collar with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S02.R2.06 · Hidden attachments
Look underneath and behind Destiny connection; Columbus and Kibo interfaces; forward adapter collar; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S02.R2.07 · Shadow transition
Hold a close view of Destiny connection; Columbus and Kibo interfaces; forward adapter collar while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S02.R2.08 · Reflection continuity
Move continuously around Destiny connection; Columbus and Kibo interfaces; forward adapter collar through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S02.R2.09 · Camera and tether passage
Approach Destiny connection; Columbus and Kibo interfaces; forward adapter collar from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S02.R2.10 · Production revisit
Repeat the same route around Destiny connection; Columbus and Kibo interfaces; forward adapter collar in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S03 · Tranquility · Node 3 10 checks · Unreviewed

S03.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect Cupola attachment; Leonardo interface; external blanket seams at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S03.R2.02 · Photographic registration
Use two dated primary photographs of Cupola attachment; Leonardo interface; external blanket seams. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S03.R2.03 · Grazing geometry
Sweep a light and camera tangentially past Cupola attachment; Leonardo interface; external blanket seams. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S03.R2.04 · Material scale
Compare Cupola attachment; Leonardo interface; external blanket seams at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S03.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on Cupola attachment; Leonardo interface; external blanket seams with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S03.R2.06 · Hidden attachments
Look underneath and behind Cupola attachment; Leonardo interface; external blanket seams; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S03.R2.07 · Shadow transition
Hold a close view of Cupola attachment; Leonardo interface; external blanket seams while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S03.R2.08 · Reflection continuity
Move continuously around Cupola attachment; Leonardo interface; external blanket seams through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S03.R2.09 · Camera and tether passage
Approach Cupola attachment; Leonardo interface; external blanket seams from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S03.R2.10 · Production revisit
Repeat the same route around Cupola attachment; Leonardo interface; external blanket seams in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S04 · Destiny laboratory 10 checks · Unreviewed

S04.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect laboratory end cone; rack-side window; service cable exits at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S04.R2.02 · Photographic registration
Use two dated primary photographs of laboratory end cone; rack-side window; service cable exits. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S04.R2.03 · Grazing geometry
Sweep a light and camera tangentially past laboratory end cone; rack-side window; service cable exits. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S04.R2.04 · Material scale
Compare laboratory end cone; rack-side window; service cable exits at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S04.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on laboratory end cone; rack-side window; service cable exits with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S04.R2.06 · Hidden attachments
Look underneath and behind laboratory end cone; rack-side window; service cable exits; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S04.R2.07 · Shadow transition
Hold a close view of laboratory end cone; rack-side window; service cable exits while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S04.R2.08 · Reflection continuity
Move continuously around laboratory end cone; rack-side window; service cable exits through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S04.R2.09 · Camera and tether passage
Approach laboratory end cone; rack-side window; service cable exits from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S04.R2.10 · Production revisit
Repeat the same route around laboratory end cone; rack-side window; service cable exits in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S05 · Columbus laboratory 10 checks · Unreviewed

S05.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect external payload brackets; module shielding; grapple fitting at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S05.R2.02 · Photographic registration
Use two dated primary photographs of external payload brackets; module shielding; grapple fitting. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S05.R2.03 · Grazing geometry
Sweep a light and camera tangentially past external payload brackets; module shielding; grapple fitting. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S05.R2.04 · Material scale
Compare external payload brackets; module shielding; grapple fitting at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S05.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on external payload brackets; module shielding; grapple fitting with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S05.R2.06 · Hidden attachments
Look underneath and behind external payload brackets; module shielding; grapple fitting; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S05.R2.07 · Shadow transition
Hold a close view of external payload brackets; module shielding; grapple fitting while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S05.R2.08 · Reflection continuity
Move continuously around external payload brackets; module shielding; grapple fitting through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S05.R2.09 · Camera and tether passage
Approach external payload brackets; module shielding; grapple fitting from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S05.R2.10 · Production revisit
Repeat the same route around external payload brackets; module shielding; grapple fitting in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S06 · Kibo pressurized module 10 checks · Unreviewed

S06.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect large cylinder shielding; end flange; exposed-facility interface at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S06.R2.02 · Photographic registration
Use two dated primary photographs of large cylinder shielding; end flange; exposed-facility interface. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S06.R2.03 · Grazing geometry
Sweep a light and camera tangentially past large cylinder shielding; end flange; exposed-facility interface. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S06.R2.04 · Material scale
Compare large cylinder shielding; end flange; exposed-facility interface at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S06.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on large cylinder shielding; end flange; exposed-facility interface with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S06.R2.06 · Hidden attachments
Look underneath and behind large cylinder shielding; end flange; exposed-facility interface; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S06.R2.07 · Shadow transition
Hold a close view of large cylinder shielding; end flange; exposed-facility interface while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S06.R2.08 · Reflection continuity
Move continuously around large cylinder shielding; end flange; exposed-facility interface through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S06.R2.09 · Camera and tether passage
Approach large cylinder shielding; end flange; exposed-facility interface from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S06.R2.10 · Production revisit
Repeat the same route around large cylinder shielding; end flange; exposed-facility interface in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S07 · Kibo logistics module · ELM-PS 10 checks · Unreviewed

S07.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect logistics-module end cap; inter-module collar; handrail standoffs at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S07.R2.02 · Photographic registration
Use two dated primary photographs of logistics-module end cap; inter-module collar; handrail standoffs. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S07.R2.03 · Grazing geometry
Sweep a light and camera tangentially past logistics-module end cap; inter-module collar; handrail standoffs. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S07.R2.04 · Material scale
Compare logistics-module end cap; inter-module collar; handrail standoffs at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S07.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on logistics-module end cap; inter-module collar; handrail standoffs with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S07.R2.06 · Hidden attachments
Look underneath and behind logistics-module end cap; inter-module collar; handrail standoffs; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S07.R2.07 · Shadow transition
Hold a close view of logistics-module end cap; inter-module collar; handrail standoffs while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S07.R2.08 · Reflection continuity
Move continuously around logistics-module end cap; inter-module collar; handrail standoffs through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S07.R2.09 · Camera and tether passage
Approach logistics-module end cap; inter-module collar; handrail standoffs from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S07.R2.10 · Production revisit
Repeat the same route around logistics-module end cap; inter-module collar; handrail standoffs in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S08 · Kibo exposed facility 10 checks · Unreviewed

S08.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect payload sockets; platform underside; cable trays at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S08.R2.02 · Photographic registration
Use two dated primary photographs of payload sockets; platform underside; cable trays. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S08.R2.03 · Grazing geometry
Sweep a light and camera tangentially past payload sockets; platform underside; cable trays. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S08.R2.04 · Material scale
Compare payload sockets; platform underside; cable trays at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S08.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on payload sockets; platform underside; cable trays with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S08.R2.06 · Hidden attachments
Look underneath and behind payload sockets; platform underside; cable trays; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S08.R2.07 · Shadow transition
Hold a close view of payload sockets; platform underside; cable trays while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S08.R2.08 · Reflection continuity
Move continuously around payload sockets; platform underside; cable trays through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S08.R2.09 · Camera and tether passage
Approach payload sockets; platform underside; cable trays from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S08.R2.10 · Production revisit
Repeat the same route around payload sockets; platform underside; cable trays in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S09 · Kibo robotic arm · JEMRMS 10 checks · Unreviewed

S09.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect arm elbow; end effector; camera and cable joints at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S09.R2.02 · Photographic registration
Use two dated primary photographs of arm elbow; end effector; camera and cable joints. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S09.R2.03 · Grazing geometry
Sweep a light and camera tangentially past arm elbow; end effector; camera and cable joints. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S09.R2.04 · Material scale
Compare arm elbow; end effector; camera and cable joints at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S09.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on arm elbow; end effector; camera and cable joints with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S09.R2.06 · Hidden attachments
Look underneath and behind arm elbow; end effector; camera and cable joints; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S09.R2.07 · Shadow transition
Hold a close view of arm elbow; end effector; camera and cable joints while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S09.R2.08 · Reflection continuity
Move continuously around arm elbow; end effector; camera and cable joints through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S09.R2.09 · Camera and tether passage
Approach arm elbow; end effector; camera and cable joints from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S09.R2.10 · Production revisit
Repeat the same route around arm elbow; end effector; camera and cable joints in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S10 · Cupola 10 checks · Unreviewed

S10.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect seven window frames; glass edges; shutter hinges at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S10.R2.02 · Photographic registration
Use two dated primary photographs of seven window frames; glass edges; shutter hinges. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S10.R2.03 · Grazing geometry
Sweep a light and camera tangentially past seven window frames; glass edges; shutter hinges. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S10.R2.04 · Material scale
Compare seven window frames; glass edges; shutter hinges at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S10.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on seven window frames; glass edges; shutter hinges with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S10.R2.06 · Hidden attachments
Look underneath and behind seven window frames; glass edges; shutter hinges; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S10.R2.07 · Shadow transition
Hold a close view of seven window frames; glass edges; shutter hinges while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S10.R2.08 · Reflection continuity
Move continuously around seven window frames; glass edges; shutter hinges through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S10.R2.09 · Camera and tether passage
Approach seven window frames; glass edges; shutter hinges from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S10.R2.10 · Production revisit
Repeat the same route around seven window frames; glass edges; shutter hinges in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S11 · Quest airlock 10 checks · Unreviewed

S11.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect crew-lock metal shield; gas-tank covers; hatch-side fittings at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S11.R2.02 · Photographic registration
Use two dated primary photographs of crew-lock metal shield; gas-tank covers; hatch-side fittings. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S11.R2.03 · Grazing geometry
Sweep a light and camera tangentially past crew-lock metal shield; gas-tank covers; hatch-side fittings. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S11.R2.04 · Material scale
Compare crew-lock metal shield; gas-tank covers; hatch-side fittings at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S11.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on crew-lock metal shield; gas-tank covers; hatch-side fittings with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S11.R2.06 · Hidden attachments
Look underneath and behind crew-lock metal shield; gas-tank covers; hatch-side fittings; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S11.R2.07 · Shadow transition
Hold a close view of crew-lock metal shield; gas-tank covers; hatch-side fittings while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S11.R2.08 · Reflection continuity
Move continuously around crew-lock metal shield; gas-tank covers; hatch-side fittings through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S11.R2.09 · Camera and tether passage
Approach crew-lock metal shield; gas-tank covers; hatch-side fittings from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S11.R2.10 · Production revisit
Repeat the same route around crew-lock metal shield; gas-tank covers; hatch-side fittings in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S12 · Leonardo permanent multipurpose module 10 checks · Unreviewed

S12.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect relocated docking collar; shield seams; grapple hardware at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S12.R2.02 · Photographic registration
Use two dated primary photographs of relocated docking collar; shield seams; grapple hardware. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S12.R2.03 · Grazing geometry
Sweep a light and camera tangentially past relocated docking collar; shield seams; grapple hardware. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S12.R2.04 · Material scale
Compare relocated docking collar; shield seams; grapple hardware at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S12.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on relocated docking collar; shield seams; grapple hardware with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S12.R2.06 · Hidden attachments
Look underneath and behind relocated docking collar; shield seams; grapple hardware; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S12.R2.07 · Shadow transition
Hold a close view of relocated docking collar; shield seams; grapple hardware while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S12.R2.08 · Reflection continuity
Move continuously around relocated docking collar; shield seams; grapple hardware through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S12.R2.09 · Camera and tether passage
Approach relocated docking collar; shield seams; grapple hardware from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S12.R2.10 · Production revisit
Repeat the same route around relocated docking collar; shield seams; grapple hardware in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S13 · BEAM expandable module 10 checks · Unreviewed

S13.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect inflated envelope; axial strap paths; berthing and grapple fittings at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S13.R2.02 · Photographic registration
Use two dated primary photographs of inflated envelope; axial strap paths; berthing and grapple fittings. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S13.R2.03 · Grazing geometry
Sweep a light and camera tangentially past inflated envelope; axial strap paths; berthing and grapple fittings. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S13.R2.04 · Material scale
Compare inflated envelope; axial strap paths; berthing and grapple fittings at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S13.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on inflated envelope; axial strap paths; berthing and grapple fittings with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S13.R2.06 · Hidden attachments
Look underneath and behind inflated envelope; axial strap paths; berthing and grapple fittings; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S13.R2.07 · Shadow transition
Hold a close view of inflated envelope; axial strap paths; berthing and grapple fittings while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S13.R2.08 · Reflection continuity
Move continuously around inflated envelope; axial strap paths; berthing and grapple fittings through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S13.R2.09 · Camera and tether passage
Approach inflated envelope; axial strap paths; berthing and grapple fittings from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S13.R2.10 · Production revisit
Repeat the same route around inflated envelope; axial strap paths; berthing and grapple fittings in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S14 · Bishop airlock 10 checks · Unreviewed

S14.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect bell-shaped shell; Tranquility mount; external payload sites at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S14.R2.02 · Photographic registration
Use two dated primary photographs of bell-shaped shell; Tranquility mount; external payload sites. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S14.R2.03 · Grazing geometry
Sweep a light and camera tangentially past bell-shaped shell; Tranquility mount; external payload sites. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S14.R2.04 · Material scale
Compare bell-shaped shell; Tranquility mount; external payload sites at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S14.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on bell-shaped shell; Tranquility mount; external payload sites with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S14.R2.06 · Hidden attachments
Look underneath and behind bell-shaped shell; Tranquility mount; external payload sites; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S14.R2.07 · Shadow transition
Hold a close view of bell-shaped shell; Tranquility mount; external payload sites while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S14.R2.08 · Reflection continuity
Move continuously around bell-shaped shell; Tranquility mount; external payload sites through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S14.R2.09 · Camera and tether passage
Approach bell-shaped shell; Tranquility mount; external payload sites from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S14.R2.10 · Production revisit
Repeat the same route around bell-shaped shell; Tranquility mount; external payload sites in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S15 · Zarya 10 checks · Unreviewed

S15.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect forward and aft transitions; radiator surfaces; antenna roots at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S15.R2.02 · Photographic registration
Use two dated primary photographs of forward and aft transitions; radiator surfaces; antenna roots. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S15.R2.03 · Grazing geometry
Sweep a light and camera tangentially past forward and aft transitions; radiator surfaces; antenna roots. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S15.R2.04 · Material scale
Compare forward and aft transitions; radiator surfaces; antenna roots at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S15.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on forward and aft transitions; radiator surfaces; antenna roots with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S15.R2.06 · Hidden attachments
Look underneath and behind forward and aft transitions; radiator surfaces; antenna roots; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S15.R2.07 · Shadow transition
Hold a close view of forward and aft transitions; radiator surfaces; antenna roots while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S15.R2.08 · Reflection continuity
Move continuously around forward and aft transitions; radiator surfaces; antenna roots through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S15.R2.09 · Camera and tether passage
Approach forward and aft transitions; radiator surfaces; antenna roots from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S15.R2.10 · Production revisit
Repeat the same route around forward and aft transitions; radiator surfaces; antenna roots in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S16 · Zvezda service module 10 checks · Unreviewed

S16.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect service-module taper; antenna mounts; radiator panels at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S16.R2.02 · Photographic registration
Use two dated primary photographs of service-module taper; antenna mounts; radiator panels. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S16.R2.03 · Grazing geometry
Sweep a light and camera tangentially past service-module taper; antenna mounts; radiator panels. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S16.R2.04 · Material scale
Compare service-module taper; antenna mounts; radiator panels at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S16.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on service-module taper; antenna mounts; radiator panels with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S16.R2.06 · Hidden attachments
Look underneath and behind service-module taper; antenna mounts; radiator panels; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S16.R2.07 · Shadow transition
Hold a close view of service-module taper; antenna mounts; radiator panels while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S16.R2.08 · Reflection continuity
Move continuously around service-module taper; antenna mounts; radiator panels through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S16.R2.09 · Camera and tether passage
Approach service-module taper; antenna mounts; radiator panels from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S16.R2.10 · Production revisit
Repeat the same route around service-module taper; antenna mounts; radiator panels in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S17 · Poisk 10 checks · Unreviewed

S17.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect docking compartment body; hatch rim; external rails at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S17.R2.02 · Photographic registration
Use two dated primary photographs of docking compartment body; hatch rim; external rails. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S17.R2.03 · Grazing geometry
Sweep a light and camera tangentially past docking compartment body; hatch rim; external rails. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S17.R2.04 · Material scale
Compare docking compartment body; hatch rim; external rails at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S17.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on docking compartment body; hatch rim; external rails with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S17.R2.06 · Hidden attachments
Look underneath and behind docking compartment body; hatch rim; external rails; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S17.R2.07 · Shadow transition
Hold a close view of docking compartment body; hatch rim; external rails while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S17.R2.08 · Reflection continuity
Move continuously around docking compartment body; hatch rim; external rails through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S17.R2.09 · Camera and tether passage
Approach docking compartment body; hatch rim; external rails from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S17.R2.10 · Production revisit
Repeat the same route around docking compartment body; hatch rim; external rails in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S18 · Rassvet 10 checks · Unreviewed

S18.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect mini research-module shell; docking end; external brackets at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S18.R2.02 · Photographic registration
Use two dated primary photographs of mini research-module shell; docking end; external brackets. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S18.R2.03 · Grazing geometry
Sweep a light and camera tangentially past mini research-module shell; docking end; external brackets. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S18.R2.04 · Material scale
Compare mini research-module shell; docking end; external brackets at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S18.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on mini research-module shell; docking end; external brackets with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S18.R2.06 · Hidden attachments
Look underneath and behind mini research-module shell; docking end; external brackets; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S18.R2.07 · Shadow transition
Hold a close view of mini research-module shell; docking end; external brackets while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S18.R2.08 · Reflection continuity
Move continuously around mini research-module shell; docking end; external brackets through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S18.R2.09 · Camera and tether passage
Approach mini research-module shell; docking end; external brackets from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S18.R2.10 · Production revisit
Repeat the same route around mini research-module shell; docking end; external brackets in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S19 · Nauka multipurpose laboratory 10 checks · Unreviewed

S19.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect laboratory cylinder; three-panel radiator; external grapple sites at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S19.R2.02 · Photographic registration
Use two dated primary photographs of laboratory cylinder; three-panel radiator; external grapple sites. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S19.R2.03 · Grazing geometry
Sweep a light and camera tangentially past laboratory cylinder; three-panel radiator; external grapple sites. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S19.R2.04 · Material scale
Compare laboratory cylinder; three-panel radiator; external grapple sites at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S19.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on laboratory cylinder; three-panel radiator; external grapple sites with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S19.R2.06 · Hidden attachments
Look underneath and behind laboratory cylinder; three-panel radiator; external grapple sites; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S19.R2.07 · Shadow transition
Hold a close view of laboratory cylinder; three-panel radiator; external grapple sites while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S19.R2.08 · Reflection continuity
Move continuously around laboratory cylinder; three-panel radiator; external grapple sites through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S19.R2.09 · Camera and tether passage
Approach laboratory cylinder; three-panel radiator; external grapple sites from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S19.R2.10 · Production revisit
Repeat the same route around laboratory cylinder; three-panel radiator; external grapple sites in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S20 · Prichal docking node 10 checks · Unreviewed

S20.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect six-port node; occupied collar; unused-port covers at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S20.R2.02 · Photographic registration
Use two dated primary photographs of six-port node; occupied collar; unused-port covers. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S20.R2.03 · Grazing geometry
Sweep a light and camera tangentially past six-port node; occupied collar; unused-port covers. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S20.R2.04 · Material scale
Compare six-port node; occupied collar; unused-port covers at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S20.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on six-port node; occupied collar; unused-port covers with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S20.R2.06 · Hidden attachments
Look underneath and behind six-port node; occupied collar; unused-port covers; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S20.R2.07 · Shadow transition
Hold a close view of six-port node; occupied collar; unused-port covers while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S20.R2.08 · Reflection continuity
Move continuously around six-port node; occupied collar; unused-port covers through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S20.R2.09 · Camera and tether passage
Approach six-port node; occupied collar; unused-port covers from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S20.R2.10 · Production revisit
Repeat the same route around six-port node; occupied collar; unused-port covers in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S21 · European Robotic Arm · ERA 10 checks · Unreviewed

S21.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect arm elbows; base interfaces; end effectors and cable sleeves at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S21.R2.02 · Photographic registration
Use two dated primary photographs of arm elbows; base interfaces; end effectors and cable sleeves. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S21.R2.03 · Grazing geometry
Sweep a light and camera tangentially past arm elbows; base interfaces; end effectors and cable sleeves. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S21.R2.04 · Material scale
Compare arm elbows; base interfaces; end effectors and cable sleeves at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S21.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on arm elbows; base interfaces; end effectors and cable sleeves with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S21.R2.06 · Hidden attachments
Look underneath and behind arm elbows; base interfaces; end effectors and cable sleeves; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S21.R2.07 · Shadow transition
Hold a close view of arm elbows; base interfaces; end effectors and cable sleeves while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S21.R2.08 · Reflection continuity
Move continuously around arm elbows; base interfaces; end effectors and cable sleeves through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S21.R2.09 · Camera and tether passage
Approach arm elbows; base interfaces; end effectors and cable sleeves from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S21.R2.10 · Production revisit
Repeat the same route around arm elbows; base interfaces; end effectors and cable sleeves in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S22 · Pressurized mating adapters and docking adapters 10 checks · Unreviewed

S22.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect PMA taper; IDA docking rim; neighboring collar gaps at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S22.R2.02 · Photographic registration
Use two dated primary photographs of PMA taper; IDA docking rim; neighboring collar gaps. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S22.R2.03 · Grazing geometry
Sweep a light and camera tangentially past PMA taper; IDA docking rim; neighboring collar gaps. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S22.R2.04 · Material scale
Compare PMA taper; IDA docking rim; neighboring collar gaps at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S22.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on PMA taper; IDA docking rim; neighboring collar gaps with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S22.R2.06 · Hidden attachments
Look underneath and behind PMA taper; IDA docking rim; neighboring collar gaps; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S22.R2.07 · Shadow transition
Hold a close view of PMA taper; IDA docking rim; neighboring collar gaps while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S22.R2.08 · Reflection continuity
Move continuously around PMA taper; IDA docking rim; neighboring collar gaps through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S22.R2.09 · Camera and tether passage
Approach PMA taper; IDA docking rim; neighboring collar gaps from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S22.R2.10 · Production revisit
Repeat the same route around PMA taper; IDA docking rim; neighboring collar gaps in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S23 · Z1 truss and mounted equipment 10 checks · Unreviewed

S23.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect truss-node interface; antennas; external cable loops at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S23.R2.02 · Photographic registration
Use two dated primary photographs of truss-node interface; antennas; external cable loops. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S23.R2.03 · Grazing geometry
Sweep a light and camera tangentially past truss-node interface; antennas; external cable loops. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S23.R2.04 · Material scale
Compare truss-node interface; antennas; external cable loops at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S23.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on truss-node interface; antennas; external cable loops with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S23.R2.06 · Hidden attachments
Look underneath and behind truss-node interface; antennas; external cable loops; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S23.R2.07 · Shadow transition
Hold a close view of truss-node interface; antennas; external cable loops while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S23.R2.08 · Reflection continuity
Move continuously around truss-node interface; antennas; external cable loops through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S23.R2.09 · Camera and tether passage
Approach truss-node interface; antennas; external cable loops from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S23.R2.10 · Production revisit
Repeat the same route around truss-node interface; antennas; external cable loops in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S24 · S0 central truss 10 checks · Unreviewed

S24.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect central lattice nodes; Destiny attachments; rail interfaces at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S24.R2.02 · Photographic registration
Use two dated primary photographs of central lattice nodes; Destiny attachments; rail interfaces. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S24.R2.03 · Grazing geometry
Sweep a light and camera tangentially past central lattice nodes; Destiny attachments; rail interfaces. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S24.R2.04 · Material scale
Compare central lattice nodes; Destiny attachments; rail interfaces at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S24.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on central lattice nodes; Destiny attachments; rail interfaces with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S24.R2.06 · Hidden attachments
Look underneath and behind central lattice nodes; Destiny attachments; rail interfaces; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S24.R2.07 · Shadow transition
Hold a close view of central lattice nodes; Destiny attachments; rail interfaces while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S24.R2.08 · Reflection continuity
Move continuously around central lattice nodes; Destiny attachments; rail interfaces through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S24.R2.09 · Camera and tether passage
Approach central lattice nodes; Destiny attachments; rail interfaces from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S24.R2.10 · Production revisit
Repeat the same route around central lattice nodes; Destiny attachments; rail interfaces in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S25 · P1 truss and port radiator bank 10 checks · Unreviewed

S25.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect port truss webs; radiator hinges; ammonia-line supports at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S25.R2.02 · Photographic registration
Use two dated primary photographs of port truss webs; radiator hinges; ammonia-line supports. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S25.R2.03 · Grazing geometry
Sweep a light and camera tangentially past port truss webs; radiator hinges; ammonia-line supports. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S25.R2.04 · Material scale
Compare port truss webs; radiator hinges; ammonia-line supports at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S25.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on port truss webs; radiator hinges; ammonia-line supports with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S25.R2.06 · Hidden attachments
Look underneath and behind port truss webs; radiator hinges; ammonia-line supports; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S25.R2.07 · Shadow transition
Hold a close view of port truss webs; radiator hinges; ammonia-line supports while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S25.R2.08 · Reflection continuity
Move continuously around port truss webs; radiator hinges; ammonia-line supports through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S25.R2.09 · Camera and tether passage
Approach port truss webs; radiator hinges; ammonia-line supports from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S25.R2.10 · Production revisit
Repeat the same route around port truss webs; radiator hinges; ammonia-line supports in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S26 · S1 truss and starboard radiator bank 10 checks · Unreviewed

S26.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect starboard truss webs; radiator hinges; ammonia-line supports at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S26.R2.02 · Photographic registration
Use two dated primary photographs of starboard truss webs; radiator hinges; ammonia-line supports. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S26.R2.03 · Grazing geometry
Sweep a light and camera tangentially past starboard truss webs; radiator hinges; ammonia-line supports. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S26.R2.04 · Material scale
Compare starboard truss webs; radiator hinges; ammonia-line supports at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S26.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on starboard truss webs; radiator hinges; ammonia-line supports with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S26.R2.06 · Hidden attachments
Look underneath and behind starboard truss webs; radiator hinges; ammonia-line supports; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S26.R2.07 · Shadow transition
Hold a close view of starboard truss webs; radiator hinges; ammonia-line supports while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S26.R2.08 · Reflection continuity
Move continuously around starboard truss webs; radiator hinges; ammonia-line supports through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S26.R2.09 · Camera and tether passage
Approach starboard truss webs; radiator hinges; ammonia-line supports from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S26.R2.10 · Production revisit
Repeat the same route around starboard truss webs; radiator hinges; ammonia-line supports in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S27 · P3/P4 truss and array joints 10 checks · Unreviewed

S27.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect port rotary joint; array canisters; lattice and cable routes at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S27.R2.02 · Photographic registration
Use two dated primary photographs of port rotary joint; array canisters; lattice and cable routes. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S27.R2.03 · Grazing geometry
Sweep a light and camera tangentially past port rotary joint; array canisters; lattice and cable routes. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S27.R2.04 · Material scale
Compare port rotary joint; array canisters; lattice and cable routes at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S27.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on port rotary joint; array canisters; lattice and cable routes with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S27.R2.06 · Hidden attachments
Look underneath and behind port rotary joint; array canisters; lattice and cable routes; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S27.R2.07 · Shadow transition
Hold a close view of port rotary joint; array canisters; lattice and cable routes while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S27.R2.08 · Reflection continuity
Move continuously around port rotary joint; array canisters; lattice and cable routes through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S27.R2.09 · Camera and tether passage
Approach port rotary joint; array canisters; lattice and cable routes from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S27.R2.10 · Production revisit
Repeat the same route around port rotary joint; array canisters; lattice and cable routes in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S28 · S3/S4 truss and array joints 10 checks · Unreviewed

S28.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect starboard rotary joint; array canisters; lattice and cable routes at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S28.R2.02 · Photographic registration
Use two dated primary photographs of starboard rotary joint; array canisters; lattice and cable routes. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S28.R2.03 · Grazing geometry
Sweep a light and camera tangentially past starboard rotary joint; array canisters; lattice and cable routes. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S28.R2.04 · Material scale
Compare starboard rotary joint; array canisters; lattice and cable routes at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S28.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on starboard rotary joint; array canisters; lattice and cable routes with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S28.R2.06 · Hidden attachments
Look underneath and behind starboard rotary joint; array canisters; lattice and cable routes; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S28.R2.07 · Shadow transition
Hold a close view of starboard rotary joint; array canisters; lattice and cable routes while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S28.R2.08 · Reflection continuity
Move continuously around starboard rotary joint; array canisters; lattice and cable routes through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S28.R2.09 · Camera and tether passage
Approach starboard rotary joint; array canisters; lattice and cable routes from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S28.R2.10 · Production revisit
Repeat the same route around starboard rotary joint; array canisters; lattice and cable routes in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S29 · P5 spacer truss 10 checks · Unreviewed

S29.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect port spacer diagonals; bolted end interfaces; cable routing at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S29.R2.02 · Photographic registration
Use two dated primary photographs of port spacer diagonals; bolted end interfaces; cable routing. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S29.R2.03 · Grazing geometry
Sweep a light and camera tangentially past port spacer diagonals; bolted end interfaces; cable routing. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S29.R2.04 · Material scale
Compare port spacer diagonals; bolted end interfaces; cable routing at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S29.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on port spacer diagonals; bolted end interfaces; cable routing with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S29.R2.06 · Hidden attachments
Look underneath and behind port spacer diagonals; bolted end interfaces; cable routing; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S29.R2.07 · Shadow transition
Hold a close view of port spacer diagonals; bolted end interfaces; cable routing while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S29.R2.08 · Reflection continuity
Move continuously around port spacer diagonals; bolted end interfaces; cable routing through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S29.R2.09 · Camera and tether passage
Approach port spacer diagonals; bolted end interfaces; cable routing from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S29.R2.10 · Production revisit
Repeat the same route around port spacer diagonals; bolted end interfaces; cable routing in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S30 · S5 spacer truss 10 checks · Unreviewed

S30.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect starboard spacer diagonals; bolted end interfaces; cable routing at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S30.R2.02 · Photographic registration
Use two dated primary photographs of starboard spacer diagonals; bolted end interfaces; cable routing. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S30.R2.03 · Grazing geometry
Sweep a light and camera tangentially past starboard spacer diagonals; bolted end interfaces; cable routing. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S30.R2.04 · Material scale
Compare starboard spacer diagonals; bolted end interfaces; cable routing at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S30.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on starboard spacer diagonals; bolted end interfaces; cable routing with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S30.R2.06 · Hidden attachments
Look underneath and behind starboard spacer diagonals; bolted end interfaces; cable routing; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S30.R2.07 · Shadow transition
Hold a close view of starboard spacer diagonals; bolted end interfaces; cable routing while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S30.R2.08 · Reflection continuity
Move continuously around starboard spacer diagonals; bolted end interfaces; cable routing through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S30.R2.09 · Camera and tether passage
Approach starboard spacer diagonals; bolted end interfaces; cable routing from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S30.R2.10 · Production revisit
Repeat the same route around starboard spacer diagonals; bolted end interfaces; cable routing in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S31 · P6 outer photovoltaic truss 10 checks · Unreviewed

S31.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect outer port mast canisters; end lattice; radiator attachment at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S31.R2.02 · Photographic registration
Use two dated primary photographs of outer port mast canisters; end lattice; radiator attachment. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S31.R2.03 · Grazing geometry
Sweep a light and camera tangentially past outer port mast canisters; end lattice; radiator attachment. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S31.R2.04 · Material scale
Compare outer port mast canisters; end lattice; radiator attachment at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S31.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on outer port mast canisters; end lattice; radiator attachment with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S31.R2.06 · Hidden attachments
Look underneath and behind outer port mast canisters; end lattice; radiator attachment; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S31.R2.07 · Shadow transition
Hold a close view of outer port mast canisters; end lattice; radiator attachment while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S31.R2.08 · Reflection continuity
Move continuously around outer port mast canisters; end lattice; radiator attachment through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S31.R2.09 · Camera and tether passage
Approach outer port mast canisters; end lattice; radiator attachment from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S31.R2.10 · Production revisit
Repeat the same route around outer port mast canisters; end lattice; radiator attachment in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S32 · S6 outer photovoltaic truss 10 checks · Unreviewed

S32.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect outer starboard mast canisters; end lattice; radiator attachment at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S32.R2.02 · Photographic registration
Use two dated primary photographs of outer starboard mast canisters; end lattice; radiator attachment. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S32.R2.03 · Grazing geometry
Sweep a light and camera tangentially past outer starboard mast canisters; end lattice; radiator attachment. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S32.R2.04 · Material scale
Compare outer starboard mast canisters; end lattice; radiator attachment at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S32.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on outer starboard mast canisters; end lattice; radiator attachment with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S32.R2.06 · Hidden attachments
Look underneath and behind outer starboard mast canisters; end lattice; radiator attachment; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S32.R2.07 · Shadow transition
Hold a close view of outer starboard mast canisters; end lattice; radiator attachment while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S32.R2.08 · Reflection continuity
Move continuously around outer starboard mast canisters; end lattice; radiator attachment through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S32.R2.09 · Camera and tether passage
Approach outer starboard mast canisters; end lattice; radiator attachment from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S32.R2.10 · Production revisit
Repeat the same route around outer starboard mast canisters; end lattice; radiator attachment in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S33 · Eight legacy solar-array wings 10 checks · Unreviewed

S33.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect each legacy wing tip; cell blankets; central mast and hinges at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S33.R2.02 · Photographic registration
Use two dated primary photographs of each legacy wing tip; cell blankets; central mast and hinges. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S33.R2.03 · Grazing geometry
Sweep a light and camera tangentially past each legacy wing tip; cell blankets; central mast and hinges. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S33.R2.04 · Material scale
Compare each legacy wing tip; cell blankets; central mast and hinges at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S33.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on each legacy wing tip; cell blankets; central mast and hinges with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S33.R2.06 · Hidden attachments
Look underneath and behind each legacy wing tip; cell blankets; central mast and hinges; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S33.R2.07 · Shadow transition
Hold a close view of each legacy wing tip; cell blankets; central mast and hinges while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S33.R2.08 · Reflection continuity
Move continuously around each legacy wing tip; cell blankets; central mast and hinges through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S33.R2.09 · Camera and tether passage
Approach each legacy wing tip; cell blankets; central mast and hinges from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S33.R2.10 · Production revisit
Repeat the same route around each legacy wing tip; cell blankets; central mast and hinges in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S34 · Six iROSA wings and support kits 10 checks · Unreviewed

S34.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect all six roll-out wings; front cells and rear flex; root footpads at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S34.R2.02 · Photographic registration
Use two dated primary photographs of all six roll-out wings; front cells and rear flex; root footpads. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S34.R2.03 · Grazing geometry
Sweep a light and camera tangentially past all six roll-out wings; front cells and rear flex; root footpads. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S34.R2.04 · Material scale
Compare all six roll-out wings; front cells and rear flex; root footpads at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S34.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on all six roll-out wings; front cells and rear flex; root footpads with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S34.R2.06 · Hidden attachments
Look underneath and behind all six roll-out wings; front cells and rear flex; root footpads; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S34.R2.07 · Shadow transition
Hold a close view of all six roll-out wings; front cells and rear flex; root footpads while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S34.R2.08 · Reflection continuity
Move continuously around all six roll-out wings; front cells and rear flex; root footpads through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S34.R2.09 · Camera and tether passage
Approach all six roll-out wings; front cells and rear flex; root footpads from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S34.R2.10 · Production revisit
Repeat the same route around all six roll-out wings; front cells and rear flex; root footpads in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S35 · Canadarm2 10 checks · Unreviewed

S35.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect long-arm elbow; both latching end effectors; cable sleeves at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S35.R2.02 · Photographic registration
Use two dated primary photographs of long-arm elbow; both latching end effectors; cable sleeves. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S35.R2.03 · Grazing geometry
Sweep a light and camera tangentially past long-arm elbow; both latching end effectors; cable sleeves. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S35.R2.04 · Material scale
Compare long-arm elbow; both latching end effectors; cable sleeves at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S35.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on long-arm elbow; both latching end effectors; cable sleeves with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S35.R2.06 · Hidden attachments
Look underneath and behind long-arm elbow; both latching end effectors; cable sleeves; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S35.R2.07 · Shadow transition
Hold a close view of long-arm elbow; both latching end effectors; cable sleeves while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S35.R2.08 · Reflection continuity
Move continuously around long-arm elbow; both latching end effectors; cable sleeves through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S35.R2.09 · Camera and tether passage
Approach long-arm elbow; both latching end effectors; cable sleeves from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S35.R2.10 · Production revisit
Repeat the same route around long-arm elbow; both latching end effectors; cable sleeves in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S36 · Dextre 10 checks · Unreviewed

S36.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect robot torso; both arm tools; articulated joint covers at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S36.R2.02 · Photographic registration
Use two dated primary photographs of robot torso; both arm tools; articulated joint covers. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S36.R2.03 · Grazing geometry
Sweep a light and camera tangentially past robot torso; both arm tools; articulated joint covers. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S36.R2.04 · Material scale
Compare robot torso; both arm tools; articulated joint covers at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S36.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on robot torso; both arm tools; articulated joint covers with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S36.R2.06 · Hidden attachments
Look underneath and behind robot torso; both arm tools; articulated joint covers; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S36.R2.07 · Shadow transition
Hold a close view of robot torso; both arm tools; articulated joint covers while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S36.R2.08 · Reflection continuity
Move continuously around robot torso; both arm tools; articulated joint covers through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S36.R2.09 · Camera and tether passage
Approach robot torso; both arm tools; articulated joint covers from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S36.R2.10 · Production revisit
Repeat the same route around robot torso; both arm tools; articulated joint covers in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S37 · Mobile Base System and Mobile Transporter 10 checks · Unreviewed

S37.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect rail wheels; mobile-base interfaces; cable and tool stowage at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S37.R2.02 · Photographic registration
Use two dated primary photographs of rail wheels; mobile-base interfaces; cable and tool stowage. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S37.R2.03 · Grazing geometry
Sweep a light and camera tangentially past rail wheels; mobile-base interfaces; cable and tool stowage. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S37.R2.04 · Material scale
Compare rail wheels; mobile-base interfaces; cable and tool stowage at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S37.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on rail wheels; mobile-base interfaces; cable and tool stowage with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S37.R2.06 · Hidden attachments
Look underneath and behind rail wheels; mobile-base interfaces; cable and tool stowage; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S37.R2.07 · Shadow transition
Hold a close view of rail wheels; mobile-base interfaces; cable and tool stowage while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S37.R2.08 · Reflection continuity
Move continuously around rail wheels; mobile-base interfaces; cable and tool stowage through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S37.R2.09 · Camera and tether passage
Approach rail wheels; mobile-base interfaces; cable and tool stowage from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S37.R2.10 · Production revisit
Repeat the same route around rail wheels; mobile-base interfaces; cable and tool stowage in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S38 · EXPRESS Logistics Carriers · ELC-1 through ELC-4 10 checks · Unreviewed

S38.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect all four carrier decks; carried-unit mounts; underside braces at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S38.R2.02 · Photographic registration
Use two dated primary photographs of all four carrier decks; carried-unit mounts; underside braces. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S38.R2.03 · Grazing geometry
Sweep a light and camera tangentially past all four carrier decks; carried-unit mounts; underside braces. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S38.R2.04 · Material scale
Compare all four carrier decks; carried-unit mounts; underside braces at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S38.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on all four carrier decks; carried-unit mounts; underside braces with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S38.R2.06 · Hidden attachments
Look underneath and behind all four carrier decks; carried-unit mounts; underside braces; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S38.R2.07 · Shadow transition
Hold a close view of all four carrier decks; carried-unit mounts; underside braces while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S38.R2.08 · Reflection continuity
Move continuously around all four carrier decks; carried-unit mounts; underside braces through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S38.R2.09 · Camera and tether passage
Approach all four carrier decks; carried-unit mounts; underside braces from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S38.R2.10 · Production revisit
Repeat the same route around all four carrier decks; carried-unit mounts; underside braces in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S39 · External Stowage Platforms · ESP-1 through ESP-3 10 checks · Unreviewed

S39.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect all three stowage platforms; blanket-covered units; attachment feet at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S39.R2.02 · Photographic registration
Use two dated primary photographs of all three stowage platforms; blanket-covered units; attachment feet. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S39.R2.03 · Grazing geometry
Sweep a light and camera tangentially past all three stowage platforms; blanket-covered units; attachment feet. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S39.R2.04 · Material scale
Compare all three stowage platforms; blanket-covered units; attachment feet at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S39.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on all three stowage platforms; blanket-covered units; attachment feet with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S39.R2.06 · Hidden attachments
Look underneath and behind all three stowage platforms; blanket-covered units; attachment feet; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S39.R2.07 · Shadow transition
Hold a close view of all three stowage platforms; blanket-covered units; attachment feet while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S39.R2.08 · Reflection continuity
Move continuously around all three stowage platforms; blanket-covered units; attachment feet through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S39.R2.09 · Camera and tether passage
Approach all three stowage platforms; blanket-covered units; attachment feet from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S39.R2.10 · Production revisit
Repeat the same route around all three stowage platforms; blanket-covered units; attachment feet in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

S40 · Alpha Magnetic Spectrometer · AMS-02 10 checks · Unreviewed

S40.R2.01 · Native close approach
Move from 12m to 0.75m from the surface, keeping a collision-safe camera. Inspect detector cylinder; thermal radiator; servicing hardware at native1080p and1440p; record where source detail stops resolving. No enlarged contact sheet substitutes for the native view.

S40.R2.02 · Photographic registration
Use two dated primary photographs of detector cylinder; thermal radiator; servicing hardware. Record focal-length or projection uncertainty, align at least three visible datums, and report silhouette/feature offsets. Missing evidence remains Unverified.

S40.R2.03 · Grazing geometry
Sweep a light and camera tangentially past detector cylinder; thermal radiator; servicing hardware. Inspect normals, triangle facets and stitched boundaries; reject sudden normal flips or disconnected seams that a frontal view conceals.

S40.R2.04 · Material scale
Compare detector cylinder; thermal radiator; servicing hardware at a measured metre scale. Check that foil wrinkles, weave, pressed channels and scratches retain believable scale through approach and retreat; label reconstructed heights separately from source measurements.

S40.R2.05 · Markings and thin edges
Inspect labels, rail edges and narrow fittings on detector cylinder; thermal radiator; servicing hardware with anisotropic filtering at steep angles. Reject mirrored text, unreadable substituted lettering, edge crawl, atlas bleed or sharpening halos.

S40.R2.06 · Hidden attachments
Look underneath and behind detector cylinder; thermal radiator; servicing hardware; measure the actual host seats and deliberate penetrations. Reject floating feet, buried working surfaces and unsupported cable ends. Repeat for every child instance.

S40.R2.07 · Shadow transition
Hold a close view of detector cylinder; thermal radiator; servicing hardware while the station moves through changing Sun/Earth lighting. Check contact-shadow stability and plausible metal/fabric separation; identify fringing, dark triangles and lost silhouette detail.

S40.R2.08 · Reflection continuity
Move continuously around detector cylinder; thermal radiator; servicing hardware through at least two reflection refreshes. Inspect frame sequences for sudden brightness changes, smeared close objects and mismatched highlights. Report probe/parallax limits rather than concealing them.

S40.R2.09 · Camera and tether passage
Approach detector cylinder; thermal radiator; servicing hardware from above, below and both sides using actual movement inputs. Inspect camera obstruction, the deformed suit and full cable thickness; classify unreachable probes separately from passing ones.

S40.R2.10 · Production revisit
Repeat the same route around detector cylinder; thermal radiator; servicing hardware in the packaged build after leaving and returning. Check loading errors, texture residency, frame-time spikes and changed geometry. Bind evidence to exact source and asset hashes; previous passes cannot certify changed assets.

A · Preserve the astronaut; add convincing animation 10 checks · Unreviewed

A.R2.01 · Extended check 1
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Preserve the approved suit's silhouette, fabric, patches, visor, gloves, boots, and color. Compare the same ten baseline views before and after rigging; any visible loss requires correction. Record a native-resolution before/after sequence and the exact input or time change.

A.R2.02 · Extended check 2
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Add an articulated skeleton with anatomically placed shoulders, elbows, wrists, hips, knees, and ankles. Inspect shaded and wireframe deformation at neutral and extreme allowed poses. Repeat with the opposite direction and a second start state; inspect asymmetric failures.

A.R2.03 · Extended check 3
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Make arms and legs visibly respond during movement, with restrained motion appropriate to a bulky pressurized suit; reject a rigid statue sliding through the scene. Inspect the limiting near and far view, including the front and rear of any visible body.

A.R2.04 · Extended check 4
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Use gentle, asymmetric arm and leg drift at rest. Limbs settle smoothly after input stops, without synchronized pendulum loops or sudden resets. Run a continuous30-second sequence; judge transitions and accumulated drift.

A.R2.05 · Extended check 5
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Use a grounded stepping cycle only when feet have a supported contact surface; free flight uses floating poses, with no walking through empty space. Repeat in sunlight, Earth fill and station shadow; report source or lighting limits.

A.R2.06 · Extended check 6
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Keep fabric volume across bent elbows, shoulders, knees, and hips. Reject collapsing joints, torn seams, stretched patches, and candy-wrapper twisting. Inspect each contact boundary at native scale and measure any required geometric clearance.

A.R2.07 · Extended check 7
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Keep gloves attached at the wrist and boots attached at the ankle through the full pose range; no hand, sleeve, or knee passes through another suit surface. Switch away through all relevant view buttons and return; ensure state and visibility restore.

A.R2.08 · Extended check 8
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Keep the backpack and helmet rigidly mounted while the body animates; neither may squash with skin weights or penetrate the torso. Compare the visible result to the named source, measured invariant or requested interaction; no assertion-only visual pass.

A.R2.09 · Extended check 9
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Attach the tether to its visible suit fitting and update it through every pose. Inspect the front, rear, underside, and full camera orbit while moving. Repeat under the packaged production renderer at1080p and1440p and record its frame-time cost.

A.R2.10 · Extended check 10
Focus: visor rim, shoulders, elbows, wrists, hips, knees, ankles, backpack and safety-line exit. Re-evaluate: Record forward, reverse, sideways, vertical, braking, idle, and turning sequences. Preserve appearance in motion and confirm the animated envelope stays clear of station geometry. Perform an uninterrupted mouse-and-keyboard playthrough and retain defect/retest evidence.

C · Camera, movement, view buttons, and tether 10 checks · Unreviewed

C.R2.01 · Extended check 1
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Right-button drag orbits the camera independently around the astronaut through a full 360 degrees, including an unobstructed front/visor view and a visible tether attachment. Record a native-resolution before/after sequence and the exact input or time change.

C.R2.02 · Extended check 2
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Right-drag changes neither body heading nor thrust direction. Suppress the browser context menu only on the game canvas; releasing the button leaves the chosen view in place. Repeat with the opposite direction and a second start state; inspect asymmetric failures.

C.R2.03 · Extended check 3
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Left-button drag turns the astronaut's body and its forward movement heading. WASD supplies translation; the camera follows continuously without sudden snapping. Inspect the limiting near and far view, including the front and rear of any visible body.

C.R2.04 · Extended check 4
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Keep vertical movement and braking available with clearly displayed bindings. Translation, turning, and camera orbit must work in combination without stuck input. Run a continuous30-second sequence; judge transitions and accumulated drift.

C.R2.05 · Extended check 5
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Provide an explicit recenter control and bounded camera distance. Vertical orbit must not flip the image or pass through the astronaut's helmet and body. Repeat in sunlight, Earth fill and station shadow; report source or lighting limits.

C.R2.06 · Extended check 6
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Preserve the existing named view buttons and make their effects clear. Interior, EVA, station overview, and suit inspection must load a readable, unclipped composition. Inspect each contact boundary at native scale and measure any required geometric clearance.

C.R2.07 · Extended check 7
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Allow inspection around both ends, all sides, and beneath the entire station. Camera collision should slide or shorten smoothly without passing through structure or hiding the astronaut unnecessarily. Switch away through all relevant view buttons and return; ensure state and visibility restore.

C.R2.08 · Extended check 8
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Keep the tether attached at both visible ends, routed around obstacles, and within its allowed length. Slack must not sag as if under Earth-surface gravity or pass through the suit. Compare the visible result to the named source, measured invariant or requested interaction; no assertion-only visual pass.

C.R2.09 · Extended check 9
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Support a usable route around the station through tether reattachment/reeling and free movement as applicable. Test constrained corners, full extension, detachment, return, and recovery from obstruction. Repeat under the packaged production renderer at1080p and1440p and record its frame-time cost.

C.R2.10 · Extended check 10
Focus: independent mouse orbit, body heading, recenter, near-wall obstruction and front-of-face visibility. Re-evaluate: Test button release outside the canvas, lost focus, simultaneous buttons, view switching, and reload. Controls must recover cleanly; use isolated Playwright self-play and captured visual evidence. Perform an uninterrupted mouse-and-keyboard playthrough and retain defect/retest evidence.

E · Earth detail, clouds, atmosphere, and lighting 10 checks · Unreviewed

E.R2.01 · Extended check 1
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Choose imagery by ground detail visible from the actual orbital altitude. A larger file or an 8K label does not pass: compare coastlines, terrain, and cloud edges at native 1080p and 1440p captures. Record a native-resolution before/after sequence and the exact input or time change.

E.R2.02 · Extended check 2
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Use sufficient source detail and distance-appropriate tiles so close Earth views have no obvious square pixels or smeared continents. Upscaled low-resolution imagery alone fails. Repeat with the opposite direction and a second start state; inspect asymmetric failures.

E.R2.03 · Extended check 3
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Inspect tile boundaries, longitude wrap, poles, coastlines, and ocean/land transitions for seams, mismatched color, duplicate clouds, and blurred joins. Inspect the limiting near and far view, including the front and rear of any visible body.

E.R2.04 · Extended check 4
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Build clouds as a separate altitude layer with convincing thickness, soft edges, and varied structure. Reject clouds painted onto the land or an opaque white shell. Run a continuous30-second sequence; judge transitions and accumulated drift.

E.R2.05 · Extended check 5
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Animate clouds slowly relative to the ground with regional variation and continuous motion; rotating one rigid cloud globe is insufficient for the requested improvement. Repeat in sunlight, Earth fill and station shadow; report source or lighting limits.

E.R2.06 · Extended check 6
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Show cloud motion in a time-separated comparison with ground landmarks tracked. At normal speed it is subtle; time acceleration must reveal continuous drift without a looping jump. Inspect each contact boundary at native scale and measure any required geometric clearance.

E.R2.07 · Extended check 7
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Match the thin atmospheric limb and horizon falloff to orbital photographs, using an actual altitude-to-radius relationship rather than an oversized neon halo. Switch away through all relevant view buttons and return; ensure state and visibility restore.

E.R2.08 · Extended check 8
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Use one coherent Sun direction for Earth, clouds, station, and astronaut. Cloud shadows, land shading, and the day/night boundary must agree. Compare the visible result to the named source, measured invariant or requested interaction; no assertion-only visual pass.

E.R2.09 · Extended check 9
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Match ocean darkness, land saturation, cloud brightness, and glint to exposure-matched references. Preserve cloud detail without crushed land or blown-out white surfaces. Repeat under the packaged production renderer at1080p and1440p and record its frame-time cost.

E.R2.10 · Extended check 10
Focus: coastlines, cloud edges, cloud shadows, ocean glint, horizon and polar source boundaries. Re-evaluate: Capture horizon, straight-down, sunset, and night-side motion. Reject cloud/ground intersections, texture swimming, unstable shadows, visible detail transitions, and excessive stars under daylight exposure. Perform an uninterrupted mouse-and-keyboard playthrough and retain defect/retest evidence.

O · Real orbital motion and a stable playable station 10 checks · Unreviewed

O.R2.01 · Extended check 1
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Use metres consistently and record Earth radius, orbital altitude, inclination, and simulation time in the scene specification. The station's scale must remain 1:1. Record a native-resolution before/after sequence and the exact input or time change.

O.R2.02 · Extended check 2
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Move the station's reference frame along an actual orbital trajectory around Earth; spinning the Earth texture under a stationary station alone fails. Repeat with the opposite direction and a second start state; inspect asymmetric failures.

O.R2.03 · Extended check 3
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Calculate orbital period from the chosen radius and gravitational parameter. Verify a complete simulated orbit against the calculation and the reference altitude, rather than hardcoding an arbitrary fast loop. Inspect the limiting near and far view, including the front and rear of any visible body.

O.R2.04 · Extended check 4
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Advance Earth's rotation separately from the station orbit and cloud drift. Track a named ground landmark to demonstrate these motions are independent. Run a continuous30-second sequence; judge transitions and accumulated drift.

O.R2.05 · Extended check 5
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Keep the astronaut, station, active camera, and tether in a numerically stable local frame that follows the orbit together; no drift away from the station when controls are idle. Repeat in sunlight, Earth fill and station shadow; report source or lighting limits.

O.R2.06 · Extended check 6
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Use a documented station attitude relative to the orbit so Earth-facing views remain physically coherent. Compare the horizon direction from the Cupola and exterior views. Inspect each contact boundary at native scale and measure any required geometric clearance.

O.R2.07 · Extended check 7
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Keep Sun direction consistent through orbital motion; station shadows, illuminated array faces, Earth lighting, and eclipse timing must agree. Switch away through all relevant view buttons and return; ensure state and visibility restore.

O.R2.08 · Extended check 8
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Offer clearly labeled real-time and accelerated orbital viewing. Acceleration changes simulation time consistently and must not secretly change astronaut movement speed. Compare the visible result to the named source, measured invariant or requested interaction; no assertion-only visual pass.

O.R2.09 · Extended check 9
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Switch views, orbit the astronaut camera, and attach/reel the tether during accelerated and normal orbit. Reject jumps, precision jitter, length changes, or broken relative positions. Repeat under the packaged production renderer at1080p and1440p and record its frame-time cost.

O.R2.10 · Extended check 10
Focus: Sun direction, orbital drift, terminator, cloud wind and time-rate changes. Re-evaluate: Record continuous normal-speed and accelerated sequences plus positions over one orbit. Require visible ground-track progression and correct shadow changes; a static screenshot cannot establish this gate. Perform an uninterrupted mouse-and-keyboard playthrough and retain defect/retest evidence.

I · Interior fidelity and continuity 10 checks · Unreviewed

I.R2.01 · Extended check 1
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Replace any invented straight corridor layout in explorable areas with the actual connected-module topology and measured hatch-center relationships. Record a native-resolution before/after sequence and the exact input or time change.

I.R2.02 · Extended check 2
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Match interior cross-sections, passage widths, rack depths, and hatch sizes to the specific module; one corridor template repeated everywhere fails. Repeat with the opposite direction and a second start state; inspect asymmetric failures.

I.R2.03 · Extended check 3
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Build reference boards for every player-accessible interior wall and end, including the ceiling and areas behind the starting camera. Inspect the limiting near and far view, including the front and rear of any visible body.

I.R2.04 · Extended check 4
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Match racks, storage bags, restraints, ventilation grilles, and labels by location and scale; equipment density must follow references rather than random clutter. Run a continuous30-second sequence; judge transitions and accumulated drift.

I.R2.05 · Extended check 5
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Attach cables, bags, panels, and equipment to visible supports. Inspect their back sides and every accessible gap for floating objects and intersections. Repeat in sunlight, Earth fill and station shadow; report source or lighting limits.

I.R2.06 · Extended check 6
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Use distinct textiles, coated panels, metal fittings, displays, and glazing. Match local illumination without flattening the cabin into uniform white or colored neon. Inspect each contact boundary at native scale and measure any required geometric clearance.

I.R2.07 · Extended check 7
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Preserve clean sightlines and astronaut clearance at actual scale; adjust navigation and animation instead of secretly widening the station. Switch away through all relevant view buttons and return; ensure state and visibility restore.

I.R2.08 · Extended check 8
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Keep interior windows and exterior openings physically consistent, including frame thickness and the correct view of Earth or station equipment. Compare the visible result to the named source, measured invariant or requested interaction; no assertion-only visual pass.

I.R2.09 · Extended check 9
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Allow the existing view-based inside/outside transition; door mechanics are optional. Arrival pose, camera clearance, controls, and tether state must remain coherent. Repeat under the packaged production renderer at1080p and1440p and record its frame-time cost.

I.R2.10 · Extended check 10
Focus: Interior fidelity and continuity and every constituent visible or interactive feature. Re-evaluate: Record a continuous tour of every explorable interior area, looking at all walls and moving through each junction. No walk-through walls, clipped suit, missing ceiling, or exposed exterior shell. Perform an uninterrupted mouse-and-keyboard playthrough and retain defect/retest evidence.

G · Whole-scene acceptance and non-regression 10 checks · Unreviewed

G.R2.01 · Extended check 1
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Compare full-station forward, aft, port, starboard, zenith, and nadir renders against the frozen configuration, then repeat matched oblique flyaround views. Wrong topology or a missing assembly blocks completion. Record a native-resolution before/after sequence and the exact input or time change.

G.R2.02 · Extended check 2
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Maintain a host-and-child inventory for every visible component, including antennas, visiting vehicles, science payloads, brackets, and transferred hardware. Every item must belong to a rubric and have reference evidence. Repeat with the opposite direction and a second start state; inspect asymmetric failures.

G.R2.03 · Extended check 3
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Run named collision approaches against every major assembly and its protrusions, in both travel directions where reachable. Test the astronaut, animated limbs, camera, and tether separately. Inspect the limiting near and far view, including the front and rear of any visible body.

G.R2.04 · Extended check 4
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Use native-resolution stills and moving captures at 1080p and 1440p. Inspect a screen grid for silhouette errors, blur, clipped details, floating objects, and excessive post-processing. Run a continuous30-second sequence; judge transitions and accumulated drift.

G.R2.05 · Extended check 5
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Keep normals, tangents, triangulation, glass ordering, shadows, texture filtering, and detail transitions stable. Zero reproducible visible cracks, exposed intersections, flicker, or missing back faces are allowed on reachable views. Repeat in sunlight, Earth fill and station shadow; report source or lighting limits.

G.R2.06 · Extended check 6
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Use a recorded reference device/browser/settings profile. Proposed performance gate: median at least 60 FPS, p95 frame time at most 22 ms, and p99 at most 33.3 ms on each warmed 120-second 1080p traversal. Report 1440p separately. Inspect each contact boundary at native scale and measure any required geometric clearance.

G.R2.07 · Extended check 7
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Measure complete traversals around arrays, radiators, robotics, interiors, Earth, and the animated suit. No traversal may be represented by an empty-scene or stationary-camera benchmark. Switch away through all relevant view buttons and return; ensure state and visibility restore.

G.R2.08 · Extended check 8
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Record cold-load time, asset bytes, memory, loading failures, and console errors. Required assets must load, no fatal errors are allowed, and warmed movement must have no asset-loading freeze over 100 ms. Compare the visible result to the named source, measured invariant or requested interaction; no assertion-only visual pass.

G.R2.09 · Extended check 9
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Compare every candidate with the accepted baseline at identical cameras, lighting, settings, and motion. Improvements cannot conceal regression in the approved suit, input, clarity, collision coverage, or performance. Repeat under the packaged production renderer at1080p and1440p and record its frame-time cost.

G.R2.10 · Extended check 10
Focus: Whole-scene acceptance and non-regression and every constituent visible or interactive feature. Re-evaluate: Accept only the exact built version represented by the complete evidence ledger. Publish or hand over a final-quality claim only after all required checks pass; list remaining defects explicitly on any requested interim preview. Perform an uninterrupted mouse-and-keyboard playthrough and retain defect/retest evidence.