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  1. 1D diffusion transport of crystolecules
  2. 2023-03-12
  3. 2023-05-28
  4. 2023-06-01
  5. 2023-06-05
  6. 2023-06-06
  7. 2023-06-07
  8. 2023-06-08
  9. 2023-06-17
  10. 2023-08-26
  11. 3D modeling
  12. APM and nuclear technology
  13. APM related terms
  14. AP manufactured solar cells
  15. A Minimal Toolset for Positional Diamond Mechanosynthesis (paper)
  16. A true but useless theory of everything
  17. Abiotic peptide synthesis
  18. Abundant element
  19. Accidentally suggestive
  20. Acetylene sorting pump
  21. Activation energy as a loose analog to evolutionary obstacles
  22. Active color gemstone display
  23. Adhesive interfaces
  24. Advanced productive nanosystem
  25. Air as a resource
  26. Air using micro ships
  27. Algorithmic selfassembly
  28. Alternatives to the term "Nanofactory"
  29. Aluminium
  30. An architecture for universal construction via modular robotic components (paper)
  31. Analogies and their dangers
  32. Anatase
  33. Annotated lambda diagram
  34. Annotated lambda diagram mockups
  35. Apatite
  36. Applicability of macro 3D printing for nanomachine prototyping
  37. Architectural engineering
  38. Argon
  39. Arrow of time
  40. Artificial life
  41. Asphalt
  42. Assembly layer
  43. Assembly level 1 (gem-gum factory)
  44. Assembly level 2 (gem-gum factory)
  45. Assembly level 3 (gem-gum factory)
  46. Assembly level 4 (gem-gum factory)
  47. Assembly levels
  48. Assembly line assembly
  49. Assembly line orienting stage
  50. Assembly line positioning stage
  51. Assembly lines in gem-gum factories
  52. Assembly subsystem of a gem-gum factory
  53. Asteroid belt
  54. Atmosphere sentinels
  55. Atmospheric mesh
  56. Atom placement frequency
  57. Atomic orbitals
  58. Atomic precision
  59. Atomic resolution
  60. Atomically precise bearings
  61. Atomically precise disassembly
  62. Atomically precise manufacturing
  63. Atomically precise nanostructure
  64. Atomically precise roller gearbearing
  65. Atomically precise slide bearing
  66. Attachment chains
  67. Autogenous
  68. Automated research
  69. Base material
  70. Base materials with high potential
  71. Batch transport for reduction of friction losses
  72. Beautiful differentiation (Conal Elliott)
  73. Beryl
  74. Beryllium
  75. Beta carbon nitride
  76. Big bang as spontaneous demixing event
  77. Binary gem-like compound
  78. Biointerfacing gem-gum based technologies
  79. Biomineralization
  80. Biominerals
  81. Block diagram of a gem-gum on-chip factory
  82. Bond order
  83. Books
  84. Bootstrapping atomic precision
  85. Bootstrapping methods for productive nanosystems
  86. Boron nitrogen dative bond interfaces
  87. Bottom-up Top-down overlap
  88. Bottom-up manufacturing
  89. Bottom scale assembly lines in gem-gum factories
  90. Bottom up positional assembly
  91. Brachiating gridcrawlers
  92. Branching factor
  93. Bridging the gaps
  94. Bromellite
  95. Brookite
  96. Brownian motion
  97. Brownian technology path
  98. Building chamber
  99. Bunching
  100. Calcite
  101. Calcium
  102. Capsule transport
  103. Carbon
  104. Carbon capture buoy scenario
  105. Carbon dioxide
  106. Carbon dioxide collector
  107. Carriage particle accelerators
  108. Carrier pellet
  109. Castle in the sky
  110. Catalysis construction kit approach
  111. Cellular shape shifting tangible systems
  112. Center for Bits and Atoms
  113. Ceres
  114. Ceria
  115. Challenges in the visualization of gem-gum factories
  116. Chamber to part size ratio
  117. Characteristic bending length
  118. Charts for gemstone-like compounds
  119. Cheat sheet
  120. Chemical element
  121. Chemical energy transmission
  122. Chemical stability
  123. Chemical synthesis
  124. Chemomechanical converter
  125. Chemospring
  126. Chlorine
  127. Circumsembly
  128. Citizen science
  129. Claytronics
  130. Cleanroom lockout
  131. Climate crisis
  132. Colonization of asteroids
  133. Colonization of the solar system
  134. Color emulation
  135. Combining advantages of different selfassembly technologies
  136. Common critique towards diamondoid atomically precise manufacturing and technology
  137. Common misconceptions about atomically precise manufacturing
  138. Common stones
  139. Community portal
  140. Comparison of mechanical character of different bonds types
  141. Compenslow
  142. Compiling to categories (Conal Elliott)
  143. Component (gem-gum factory)
  144. Computronium
  145. Concrete
  146. Connection mechanism
  147. Connection method
  148. Conservative estimation
  149. Consistent design for external limiting factors
  150. Construction kit analogy for the periodic table of elements
  151. Constructive solid geometry
  152. Content addressed
  153. Continuity of perception
  154. Control hierarchy
  155. Convergent assembly
  156. Convergent assembly to hierarchical assembly correspondences
  157. Convergent mechanical actuation
  158. Convergent self assembly
  159. Cooling
  160. Cooling by heating
  161. Coordinate bond
  162. Copyfication square
  163. Coumputation subsystem
  164. Coupling mechanism
  165. Covalent bond
  166. Covalent bonds
  167. Cryovolcanism
  168. Crystolecular element
  169. Crystolecular unit
  170. Crystolecule assembly robotics
  171. Crystolecule fragment
  172. Crystolecule routing layer
  173. Curry-Howard-Lambeck isomorphism
  174. Dangers
  175. Data IO bottleneck
  176. Data compression
  177. Data decompression chain
  178. Data taken hostage
  179. De-novo protein engineering
  180. Deep drilling
  181. Deliberate slowdown at the lower assembly levels
  182. Deltalumite
  183. Denotative continuous-time programming (Conal Elliott)
  184. Denotative design (Conal Elliott)
  185. Desert scenario
  186. Design levels
  187. Design of crystolecules
  188. Design of gem-gum on-chip factories
  189. Determinism of AI
  190. Dialondeite
  191. Diamond
  192. Diamond like compound
  193. Diamondoid
  194. Diamondoid crystolecular machine element
  195. Diamondoid heat pipe system
  196. Diamondoid heat pump system
  197. Diamondoid solar cell
  198. Diamondoid structural meta materials
  199. Diamondoid waste incineration
  200. Diffing
  201. Diffusion
  202. Diffusion slowdown blockade
  203. Diffusion transport
  204. Digital control over reversibly composable units of matter
  205. Digital manufacturing
  206. Direct manipulation
  207. Direct path
  208. Direct physical hacking attacks
  209. Disaster proof
  210. Discussion of proposed nanofactory designs
  211. Dissipation sharing
  212. Distorted visualization methods for convergent assembly
  213. Drexler-Smalley debate on molecular nanotechnology
  214. Drive subsystem of a gem-gum factory
  215. Dynamic rebootstrapping of upper convergent assembly levels
  216. Dystactic phase
  217. Early diamondoid nanosystem pixel (direct path)
  218. Effective concentration
  219. Effects of current day experimental research limitations
  220. Electric metamaterial
  221. Electrically conductive gem-like compounds
  222. Electromagnetic metamaterial
  223. Electromechanical converter
  224. Electronic transitions
  225. Element recovery landfill bots
  226. Elephants with spiderlegs
  227. Emergence of the arrow of time
  228. Emergent concept detection
  229. Emulated elasticity
  230. Energy, force, and stiffness
  231. Energy conversion
  232. Energy density
  233. Energy harvesting
  234. Energy recuperation
  235. Energy storage cell
  236. Energy storage problem
  237. Energy transmission
  238. Engines of Creation
  239. Entropic energy
  240. Entropomechanical converter
  241. Eric Drexler's blog partially dug up from the Internet Archive
  242. Estimation of nanomechanical quantisation
  243. Ethyne
  244. Evaluating the Friction of Rotary Joints in Molecular Machines (paper)
  245. Every structure permissible by physical law
  246. Evolution
  247. Examples of diamondoid molecular machine elements
  248. Exciting super far term visions for gemstone metamaterial technology
  249. Exothermy offloading
  250. Exotic math

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