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  1. 2023-03-12
  2. 2023-05-28
  3. 2023-06-01
  4. 2023-06-05
  5. 2023-06-06
  6. 2023-06-08
  7. 2023-06-17
  8. 2023-08-26
  9. AP manufactured solar cells
  10. Abiotic peptide synthesis
  11. Active color gemstone display
  12. Adhesive interfaces
  13. Algorithmic selfassembly
  14. Alternatives to the term "Nanofactory"
  15. Analogies and their dangers
  16. Anatase
  17. Architectural engineering
  18. Argon
  19. Arrow of time
  20. Artificial life
  21. Assembly level 1 (gem-gum factory)
  22. Assembly level 2 (gem-gum factory)
  23. Assembly level 4 (gem-gum factory)
  24. Assembly line orienting stage
  25. Assembly line positioning stage
  26. Assembly lines in gem-gum factories
  27. Assembly subsystem of a gem-gum factory
  28. Atmosphere sentinels
  29. Atomic precision
  30. Atomically precise bearings
  31. Atomically precise manufacturing
  32. Atomically precise nanostructure
  33. Atomically precise roller gearbearing
  34. Attachment chains
  35. Base material
  36. Batch transport for reduction of friction losses
  37. Beryl
  38. Beta carbon nitride
  39. Binary gem-like compound
  40. Biointerfacing gem-gum based technologies
  41. Biomineralization
  42. Biominerals
  43. Block diagram of a gem-gum on-chip factory
  44. Bootstrapping atomic precision
  45. Bootstrapping methods for productive nanosystems
  46. Boron nitrogen dative bond interfaces
  47. Bottom-up Top-down overlap
  48. Bottom-up manufacturing
  49. Bottom scale assembly lines in gem-gum factories
  50. Bottom up positional assembly
  51. Brachiating gridcrawlers
  52. Branching factor
  53. Bromellite
  54. Brookite
  55. Brownian motion
  56. Building chamber
  57. Bunching
  58. Carbon dioxide
  59. Castle in the sky
  60. Cellular shape shifting tangible systems
  61. Center for Bits and Atoms
  62. Ceres
  63. Ceria
  64. Chamber to part size ratio
  65. Characteristic bending length
  66. Charts for gemstone-like compounds
  67. Cheat sheet
  68. Citizen science
  69. Claytronics
  70. Cleanroom lockout
  71. Common stones
  72. Computronium
  73. Connection mechanism
  74. Conservative estimation
  75. Continuity of perception
  76. Convergent assembly to hierarchical assembly correspondences
  77. Coordinate bond
  78. Copyfication square
  79. Coumputation subsystem
  80. Coupling mechanism
  81. Covalent bond
  82. Covalent bonds
  83. Cryovolcanism
  84. Crystolecular element
  85. Crystolecular unit
  86. Crystolecule fragment
  87. Data taken hostage
  88. Deliberate slowdown at the lower assembly levels
  89. Dialondeite
  90. Diamondoid crystolecular machine element
  91. Diamondoid heat pipe system
  92. Diffusion
  93. Digital manufacturing
  94. Direct physical hacking attacks
  95. Drexler-Smalley debate on molecular nanotechnology
  96. Drive subsystem of a gem-gum factory
  97. Dystactic phase
  98. Early diamondoid nanosystem pixel (direct path)
  99. Effective concentration
  100. Electrically conductive gem-like compounds
  101. Electronic transitions
  102. Element recovery landfill bots
  103. Energy density
  104. Energy harvesting
  105. Energy recuperation
  106. Energy storage problem
  107. Entropic energy
  108. Eric Drexler's blog partially dug up from the Internet Archive
  109. Ethyne
  110. Every structure permissible by physical law
  111. Exciting super far term visions for gemstone metamaterial technology
  112. Exothermy offloading
  113. Exotic math
  114. Femtotechnology
  115. Fixed station assembly
  116. Fluorine
  117. Foldamer R&D
  118. Foldamer printer approach (incremental path)
  119. Foldamer robot approach (incremental path)
  120. Folded-foldamer pushing approach
  121. Form closing interlocking
  122. Form closure
  123. Fractals in gem-gum nanomachinery
  124. Free floating crystolecule
  125. Friction in diffusion transport
  126. Functional block construction kit approach
  127. Future-backward development
  128. Future world scenarios
  129. Gem-gum
  130. Gem-gum factory pixel
  131. Gem-gum goo
  132. Gem-gum technology
  133. Gem-gum technology (disambiguation)
  134. Gem-gum to natural material gap
  135. Gem-gum waste crisis
  136. Gem-gum waste dissolution
  137. Gemstone
  138. General Introduction to atomically precise manufacturing
  139. General tips for productive communication
  140. Germanium
  141. Goals of this wiki
  142. Good websites about compounds and minerals
  143. Graphene sheet lining
  144. Grappling gripper gun suit
  145. Guided tour
  146. HOPG
  147. Hematite structure
  148. Hierarchical locking
  149. High performance of gem-gum technology
  150. High pressure
  151. High pressure modifications
  152. Hinged blockchain self folding
  153. House of cards
  154. Housing in the gem-gum era
  155. How to make a gem-gum factory run forward
  156. Hydroxide
  157. Hyper high throughput microcomponent recomposition
  158. Hyper isolation chamber
  159. Implosion nanofabrication
  160. Impossible
  161. In solvent synthesizable gemstone-like compounds
  162. Increasing bearing area to decrease friction
  163. Informal laws
  164. Inorganic polymer
  165. Interplanetary atomically precise von Neumann probes
  166. Intuitively understanding the size of Earth
  167. Intuitively understanding the size of an atom
  168. Inverse quantum isolation chamber
  169. Io (moon)
  170. Isostructural bending
  171. Isotropy of materials
  172. Jittery finger problem
  173. Kaehler bracket
  174. Kinetic trap
  175. Knowledge matrix
  176. Known to be astronomically unlikely
  177. Lattice scaled stiffness
  178. Learning from enzymes
  179. Levels of metamaterials
  180. Likely visual appearance of gem-gum products
  181. Limits of construction kit analogy
  182. Liquid nitrogen ocean
  183. List of all programs
  184. List of potential gemstone based metamaterials
  185. List of proposed tooltips for diamond mechanosynthesis
  186. Lithospheric mesh
  187. Logs
  188. Lonsdaleite
  189. Loss of control
  190. Low hydrogen content
  191. Low level gemstone metamaterial
  192. Lucid dreaming
  193. Machine-phase chemistry
  194. Machine element
  195. Machine phase organized other phases
  196. Macroscale active align-and-fuse connectors
  197. Macroscale slowness bottleneck
  198. Macroscale surface passivation
  199. Magnification theme-park
  200. Marcasite structure
  201. Mechadensite
  202. Mechanical-electrical analogies
  203. Mechanical circuit element
  204. Mechanical metamaterial
  205. Mechanical pulse width modulation
  206. Mechanical stability
  207. Mechanosynthesis (disambiguation)
  208. Mechanosynthetic dioxygen splitting
  209. Mechanosynthetic resource molecule splitting
  210. Medium mover suit
  211. Mesocomponent
  212. Mesogravity
  213. Mesoscale friction
  214. Meta pages
  215. Metal complex
  216. Metal free gemstone-like compound
  217. Methane
  218. Method of assembly
  219. Microcomponent cache
  220. Microcomponent recomposer (disambiguation)
  221. Microcomponent recomposer microbot
  222. Microcomponent subsystems
  223. Microcomponent test-and-repair microbot
  224. Microelectromechanic system
  225. Microgravity
  226. Microgravity locomotion suit
  227. Millimetre sized components
  228. Miscellaneous
  229. Misleading biological analogies that should be avoided
  230. Mobile carbon dioxide collector
  231. Mobile mesoscale robotic device
  232. Mobile microscale robotic device
  233. Mobile nanoscale robotic device
  234. Mobile robotic device
  235. Mode of assembly
  236. Naked core
  237. Nanobot swarms
  238. Nanoelectronics
  239. Nanofabrik (potental version for german wikipedia)
  240. Nanofactory math based on continuity of throughput
  241. Nanomachinery encapsulation
  242. Nanomechanic circuits
  243. Nanomechanical computing
  244. Nanoparticle
  245. Nanoscale connection method
  246. Nanoscale style machinery at the macroscale
  247. Natural color of gem-gum products
  248. Nature does it differently
  249. Near term and far term
  250. Neo-polymorph
  251. Neologism
  252. No nanobots
  253. Non atomically precise manufacturing methods
  254. Octet truss
  255. Odd gemstone-like compound
  256. Oddball compound
  257. Oddball molecules
  258. Offtopic fun
  259. Olivine
  260. Omnivorous nanobots
  261. On the probability interpretation of quantum mechanics
  262. OpenSCAD
  263. Organic anorganic gemstone interface
  264. Organic gemstone-like compound
  265. Organometallic compound
  266. Organometallic gemstone-like compound
  267. Origami
  268. Osmium
  269. Other sites
  270. Oxidation
  271. Particle acceleration of crystolecules
  272. Passivation (disambiguation)
  273. Passive color gemstone display
  274. Percolation limit
  275. Periodic table of gearbearings
  276. Perovskite structure
  277. Piezochemical mechanosynthesis
  278. Piezochemistry
  279. Piezomechanochemistry
  280. Piezomechanosynthesis of macroscopic single crystals
  281. Polyoxymetalates
  282. Polyyne rods
  283. Positional assembly
  284. Positional assembly kinematic loop
  285. Possibility space
  286. Preprocessing step 2 (gem-gum factory)
  287. Present-forward Future-backward overlap
  288. Prime distractions
  289. Producer product pushapart
  290. Productive nanosystem (disambiguation)
  291. Programmatic 3D modeling
  292. Pure metals and metal alloys
  293. Pure metals and metallic alloys
  294. Pyrite structure
  295. Quantumchemistry simulation
  296. RR/Mechanical through joint motion threading
  297. ReChain frame system
  298. Reasons for APM
  299. Redundancy
  300. RepRec pick-and-place robots
  301. RepRec – inspiring sources
  302. Replacement of cheapest industrial materials
  303. Replication pentagon
  304. Resource molecule
  305. Richard Feynman
  306. Rising influence of quantum mechanics
  307. Robot substructure gradients
  308. Rock digestion chamber
  309. Rocket engines and AP technology
  310. Routing level
  311. Rutile structure
  312. S-block metals
  313. Sandwich compound
  314. Scaled down 3D printing
  315. Science vs engineering
  316. Second assembly level self replication
  317. Self assembly
  318. Self replicating device
  319. Selfassembly level
  320. Semi hard-coded structures
  321. Sensors
  322. Separation of concerns
  323. Sequence of zones
  324. Serendipity
  325. Side products of technology level 0
  326. Side products of technology level I
  327. Simple crystal structures of especial interest
  328. Simple metal containing carbides and nitrides
  329. Simultaneous prototyping across scales
  330. Site-specific workpiece activation
  331. Sitemap
  332. Sloppy finger problem
  333. Snapback
  334. Socioeconomic consequences
  335. Soft-core macrorobots with hard-core nanomachinery
  336. Soft cables and sheets
  337. Soil processing
  338. Spaceflight with gem-gum-tec
  339. Specifity
  340. Spectrum of means of assembly
  341. Spelling on this wiki
  342. Spill
  343. Spill of sub microscale objects
  344. Squigglesembly
  345. Static rebar profile force circuit
  346. Steric traps
  347. Sticky finger problem
  348. Stiction
  349. Story scenarios
  350. Stratified shearing valves
  351. Subsystems of gem-gum factories
  352. Support
  353. Surveillance and sphere of privacy
  354. Techno plants
  355. Technology levels
  356. Tensioning mechanism design
  357. Terminology
  358. Terminology for parts
  359. Terminology for spacial places
  360. Ternary and higher gem-like compounds
  361. Testing of gemstone based nanomachinery
  362. Tether assisted assembly
  363. The basics of atoms
  364. The defining traits of gem-gum-tec
  365. The feel of atoms
  366. The fractal braided river of fate
  367. The inner workings of the human brain
  368. The speed of atoms
  369. The term nanotechnology
  370. The three axes of the Center for Bits and Atoms
  371. The three stabilities
  372. The usual suspects
  373. The various other nanotechnologies
  374. Theoretical overhang
  375. There is limited room at the bottom
  376. There is plenty of room at the bottom
  377. Thermal stability
  378. Thermal subsystem
  379. Thermodynamic nanocrystal
  380. Thermodynamic potentials
  381. Thermodynamics
  382. Tistarite
  383. Top-down manufacturing
  384. Top down positional assembly
  385. Topaz
  386. Tour by topic
  387. Transitionary materials
  388. Transport layer
  389. Transportation and transmission
  390. Types of chemical reactions for synthesis
  391. Ultimate limit
  392. Ultra long term technology stability
  393. Unknown matter claimer
  394. Usage of isotopes
  395. Vacuum handling
  396. Verneuil method
  397. Viscosity
  398. Visible wavelength light at the nanoscale
  399. Vitamin parts
  400. Weakly guided selfassembly
  401. Wear
  402. What we can X depends on what we can Y
  403. Where to start targeted development
  404. Why gemstone metamaterial technology should work in brief
  405. Why larger bearing area of smaller machinery is not a problem
  406. Why ultra-compact molecular assemblers are not desirable
  407. Why ultra-compact molecular assemblers are too difficult
  408. Why ultra-compact molecular assemblers are too inefficient
  409. Wiki setup notes
  410. Wikis
  411. Wobbly finger problem
  412. Zero friction freestanding attachment chain transport
  413. Zero sum situation
  414. Zincblende structure
  415. Zone
  416. Zoo of quasiparticles

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