# Advanced industry — proposed complete feedstock and product routes ## C06-P06-ADV01 — Recommendation status and scope This P06 appendix closes the named-input-to-use gap for IND-M60–64. Every recipe below is an edition-scoped, unapproved recommendation for fictional game systems. The C06-AR recipe and C06-AP product references are documentation labels, not new MAT resources, registered items or implemented recipes. Quantities, yields, energy coefficients, capacities and durations remain null. Null means unresolved, not free. The routes use already named Earth or pre-Afterlight materials. Charted uranium remains uranium; it is not renamed or used to approve a real fuel process. Redstone-based reaction material is overt game fiction. Nothing here supplies real enrichment, chemistry, reactor geometry or operating instructions. The existing optional fission, fusion and advanced-field identities remain optional industrial ambitions. Neither first lunar travel nor an ordinary habitat gains a reactor requirement. ## C06-P06-ADV02 — IND-M60: a shielded fuel cassette Recommended recipe C06-AR01 uses actual charted uranium stock, an empty structural-steel cassette housing, a technical-ceramic liner and an accepted seal set. IND-M60 performs a bounded preparation interaction using supplied electricity and replaceable service stock. Its first enclosure, work fixture and tracked receiving stores use earlier structural steel, technical ceramics, copper connections and ordinary control parts. No first-machine component requires output from the reactor it will later supply. The output, C06-AP01 Shielded Fuel Cassette, owns its loaded feedstock and reusable housing. Preparation also reserves a compatible receiver for declared retained preparation residue. The amount remains unresolved; it cannot be omitted from capacity checks if the selected recipe produces it. Unworked uranium stays identified stock. A stopped preparation retains one accounted intermediate; cancelling before commitment returns its unused ingredients. This recommendation establishes a fictional packaged fuel route only. The preparation animation can show insertion, enclosure and a successful custody check. It does not imply real material conversion detail. The first electricity comes from an already working source such as IND-M32 or a supplied IND-M34, with buffering through IND-M37 where useful. ## C06-P06-ADV03 — IND-M61: heat, useful power and a spent cassette Recommended operation C06-AR02 accepts C06-AP01, supplied process-water service, control electricity and the declared service parts. Earlier steel, technical ceramics, copper service components and known control equipment construct the plant and its connected thermal loop. IND-M33 receives its bounded heat output and supplies electricity through the existing generation and distribution relationship. The first plant therefore uses an already reachable power connection for commissioning. Active operation consumes the cassette's defined fuel allocation and returns C06-AP02 Spent Fuel Cassette to a reserved tracked store. The outer housing remains the same recoverable component. At IND-M60's isolated service position, a supported handling job can transfer the retained spent payload into its designated store and return the inspected empty housing. Consumed fuel is not recreated. Reusable housings reduce construction demand; they do not refill themselves. A full spent receiver blocks a new operating allocation. Missing cooling or a severed heat connection produces controlled local shutdown with the current cassette and loop contents preserved. Working water recirculates only within the defined retained quantity; any top-up and losses are explicit later coefficients. Region parking stops authored demand. The default consequence of a fault is a bounded service task, not an unattended disaster after absence. ## C06-P06-ADV04 — IND-M62: a finite fictional reaction cartridge C06-AR03 recommends a compatible IND-M60 preparation fixture for a separate game recipe: redstone stock, prepared carbon, a technical-ceramic insert, copper contacts, an empty cartridge shell and a finite supplied electrical service charge produce C06-AP03 High-Duty Reaction Cartridge. Redstone is the existing familiar resource category; carbon follows the ordinary or IND-M06 route. Preparation retains any declared residue in a named receiver. This is fictional reaction material, not a claim that those ingredients are real fusion fuel. C06-AR04 consumes that loaded cartridge at IND-M62. Its earlier-built plant uses structural steel or an already available reinforced-alloy option, technical ceramics, copper conductors, ordinary optical/control assemblies and compatible thermal service. A real IND-M37 startup allocation is required in addition to preparation charge. Neither charge appears from a full-looking display. The configured process delivers bounded heat or power through its declared output interface and produces C06-AP04 Spent Reaction Cartridge. The spent cartridge goes to an inspected service position: retained spent material enters tracked storage, while compatible shell parts return through normal service/reclamation. Neither the consumed redstone/carbon allocation nor its charge is recovered as fresh fuel. Its source is finite material plus actual preparation work, rather than a gas-separation loop that feeds itself. Later balance must count extraction, carbon preparation, cartridge manufacture, startup, active service and all recoverable fractions together. Until those coefficients are established, no efficiency or net-output promise is made. ## C06-P06-ADV05 — IND-M63: one narrow aligned-field component C06-AR05 recommends prepared copper conductor stock, an ordinary glass or explicitly accepted clear-quartz optical element, a technical-ceramic carrier and a consumed redstone/carbon process insert. Supplied electricity and a compatible thermal connection support one bounded IND-M63 operation. Its first apparatus uses earlier steel, ceramic, copper and ordinary optical parts. A proposed specialist optical upgrade is unnecessary for constructing that initial apparatus. The output, C06-AP05 Aligned-Field Component, serves a defined advanced instrument or the supported transit assembly. It contains the contributed conductor, carrier and optical parts; preparation consumes the named insert. A spent insert goes to tracked service storage, and any reusable fixture stays installed. A failed readiness check consumes nothing. Once a process commits, its item and stage remain recoverable through the established interruption rule. This apparatus does not synthesize ore, duplicate specimens or create arbitrary energy. Alignment is a bounded game interaction with a named recipient and observable result. Dismantling returns compatible retained components through finite recovery, never a fresh complete insert plus the already-produced component. ## C06-P06-ADV06 — IND-M64: a pre-Afterlight transit bootstrap C06-AR06 combines C06-AP05, an earlier structural frame, copper service connections, an existing optical assembly, ordinary control parts and a declared prepared redstone calibration insert. IND-M64 uses supplied electricity, the supported fixture and previously obtained route observations to produce C06-AP06 Calibrated Transit Module. The observations are a nonconsumed knowledge prerequisite; completing a job neither deletes the discovery record nor creates another physical sample. The first module uses entirely pre-Afterlight stock. Established Pluto observations can support its route record, and PM13 Nightglass is a proposed specialist optical option where an accepted recipe warrants it. Neither Cairn's PM15/PM16 nor Morrow's PM17/PM18 enters the first bootstrap. Used calibration stock enters a declared spent receiver; unused fixtures and apparatus remain available for another job. Installing this module does not invent a new hull or certify a complete voyage. The existing spacecraft capability must separately provide supported travel, power, navigation, conventional protection, real operating supplies and an independent homeward allocation. The return depends on those already carried services and retained route knowledge. Later discoveries can improve a refit after arrival, while failure or deferral preserves the original supported home route. ## C06-P06-ADV07 — What is now closed and what remains unverified The companion register names every recommended recipe's inputs, output, service, byproduct, receiver, reusable component and earlier first-machine construction category. These routes close the prose-level dependency gap while retaining their unapproved recommendation status. They neither change the implemented mineral chart nor move Smelt from its next-work position. Future evidence must resolve accepted recipe quantities, balanced losses and recovery, complete energy accounting, output capacities, actual geometry, warning intervals and runtime persistence. Review one complete supplied job, missing-input refusal, output blockage, controlled interruption, parked region and conserved recovery for each operation. No numerical or gameplay pass is claimed by this appendix.