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★ [[Products of gem-gum-tec]] <br>
★ [[Products of gem-gum-tec]] <br>
★ Cioncrete example:[[Gem-gum suit]] <br>
★ Concrete example: [[Gem-gum suit]] <br>
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★ '''[[Likely visual appearance of gem-gum products]]''' <br>
★ '''[[Likely visual appearance of gem-gum products]]''' <br>

Revision as of 08:39, 9 June 2026

This article is a stub. It needs to be expanded.


(1) Introduction & Overview (2) The set Goal (3) Benefits & Products

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the character of robotic work in the nanocosm gem-gum-pocket-factory CO2 collector buoy
(4) Possible Pathways (5) Effects, Risks, ...

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incremental technology improvement reproduction hexagon


Topics

Pathways â€Ķ

â€Ķ towards advanced gemstone based productive nanosystems.

★ Generally:
– Bootstrapping methods for productive nanosystems
– Bridging the gaps

★ Incremental path
– One big if not biggest blocker: Lack of proper termination control (one option: Algorithmic selfassembly)
– Escaping the window between:
â€Ķ Positional assembly redundancy blockade &
â€Ķ Thermal driven selfassembly diffusion speed slowdown blockade
â€Ķ (Wild ideas: Circumsembly & Squigglesembly)
– Expanding the kinematic loop in order to escape the finger problems
– Hierarchical selfassembly

★ Direct path
– Why force applying mechanosynthesis should work in brief
– Early diamondoid nanosystem pixel (direct path)
â€Ķ Potential early crystolecular building blocks & Potential early crystolecular mechanisms
– Convergent assembly

There were/are some tensions between the sides. For one case see: Pathway controversy
(2026) Not yet meaningfuly experimentally accessible: Mixed path

Far term target of APM

â€Ķ as identified in Nanosystems via applying the methodology of explorartory enginering.

★ Why gemstones?
– Oxidation and the fruit analogy, Atomically precise surface passivation
– Undesired cold-welding vs desired: Seamless covalent welding

★ Why (mechanical) metamaterials?
– Gem-gum Superelasticity (wiki-TODO: Add two new graphics on that.)

★ Why cogs-n-gears?
– They get the job done and are not a naive transfer of ideas on closer inspection.

ðŸŠĪ Trapdoors

★ ðŸŠĪ "Diffusion transport is free."
– No, Diffusion transport is not free. One has to pay the energy at toll stations that may have no "small change" to give back.
â€Ķ Heck cog-n-gear attachment chain trannsport may become even become more efficient than diffusion when advanced and operated sowly:
â€Ķ See: Dissipation sharing & Exothermy offloading (in how far these tricks work is highly speculative)


★ ðŸŠĪ "Scaling laws make things worse."
– Yes, physics change when going down to the nanoscale, BUT â€Ķ
– No, not necesarily for the worse for macroscale style cog-n-gear machinery
– The are two critical scaling laws that make things better rather than worse. Both as of 2026 still barely known.
â€Ķ See below in section: Physical basics


★ ðŸŠĪ "Simulations show that these would not work."
– "No, nanodiamond does not behave like jelly."
– "No, one would not "see" the atomic wiggles when "seeing" the machine motions at proposed operation speeds."
â€Ķ See: Misleading aspects in animations of diamondoid molecular machine elements
â€Ķ See: Why MD simulations can't simulate proposed speeds for diamondoid nanomachinery


★ ðŸŠĪ "Scaling laws make things worse"
★ â€Ķ See: Macroscale style machinery at the nanoscale
★ To overcompensating scaling laws that make things better:
– Higher throughput of smaller machinery
– Same relative deflections across scales
â€Ķ See: How macroscale style machinery at the nanoscale outperforms its native scale

Scale transposed prototyping

Prototyping cog-n-gear mechanisms at the macroscale for the nanoscale staying aware of the physical changes.

★ Personal projects of this wikis author:
– RepRec pick-and-place robots (GemGum)
– ReChain frame systems (ReChain pages)
– MecCirc project
– ReMec projects (umbrella name for the above)
★ Main Inspirations:
– Moses2014
– Ambots

Physical basics

â€Ķ and building some useful intuition (oversimplification aware).

General nanoscale physics


★ Intuitive feel
★ Intuitively understanding the size of an atom & Magnification theme-park
★ Convenience of size steps of factor 32


★ Log polar mapping – as for – Distorted visualization methods for convergent assembly
â€Ķ (Lagrangian mechanics for nanomechanical circuits)


★ Atomic orbitals (wiki-TODO: d and f orbitals mixing math and geometries)
★ Ligand field theory (Wild idea: Mechanooptical conversion)
★ Energy conversions by nature, today & tomorrow

APM specific physics

★ Force applying mechanosynthesis
★ (Wearless) friction & energy dissipation:
– Friction in gem-gum technology
– Reciprocative dissipation mechanisms in gem-gum technology
– Superlubricity & Infinitesimal bearing
★ VdW suck-in and suck-on & Comparison of mechanical character of different bonds types
★ Intercrystolecular interactions, Intercrystolecular snapping modes, Intercrystolecular levitation

Far term applications

★ Products of gem-gum-tec
★ Concrete example: Gem-gum suit


★ Likely visual appearance of gem-gum products
★ The look of our environment


★ â™ŧïļ Recycling and much faster product avaiability the Global microcomponent redistribution system
★ General concept of a new sphere: Mechanosphere – efforts averting a severe Gem-gum waste crisis


★ Solving biggest civilization problems: Carbon capture buoy scenario

Effects Impacts

★ Story scenarios
★ The look of our environment
★ The idea of an far future beyond far future gaily colored gem gum goo rainforrest world
– See page: Gem-gum goo
– Reproduction hexagon & Grey goo horror fable


★ Unnatural chemistry graphic
★ New non scarce materials graphic
★ Ultra fast production by recycling graphic

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