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(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

… 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:
Positional assembly redundancy blockade &
Thermal driven selfassembly diffusion speed slowdown blockade
(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)
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

… 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.

🪤 Trapdoors

★ 🪤 "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.
… Heck cog-n-gear attachment chain trannsport may become even become more efficient than diffusion when advanced and operated sowly:
… See: Dissipation sharing & Exothermy offloading (in how far these tricks work is highly speculative)


★ 🪤 "Scaling laws make things worse."
– Yes, physics change when going down to the nanoscale, BUT …
– 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.
… See below in section: Physical basics


★ 🪤 "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."
… See: Misleading aspects in animations of diamondoid molecular machine elements
… See: Why MD simulations can't simulate proposed speeds for diamondoid nanomachinery


★ 🪤 "Scaling laws make things worse"
★ … 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
… 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

… 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
(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


★ ♻️ Recycling and much faster product avaiability via a 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 & World building
★ 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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