Difference between revisions of "Component (gem-gum factory)"

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m (Apm moved page Components to Component: plural => singular)
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* [[molecule fragment|Molecule fragments aka moieties]] – (~0.2nm for carbon atoms) <small>and some atoms like hydrogen and halogen atoms</small>
 
* [[molecule fragment|Molecule fragments aka moieties]] – (~0.2nm for carbon atoms) <small>and some atoms like hydrogen and halogen atoms</small>
* [[Crystolecule]]s – ~32nm (varying a lot)
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* [[Crystolecule]]s – ~2nm (varying a lot) – built in ~32nm chambers
* [[Microcomponent]]s – 1000nm = 1µm
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* [[Crystolecular element]]s – ~64nm – built in ~1µm chambers
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* [[Microcomponent]]s – ~2000nm = ~2µm – built in ~32µm chambers
 
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* [[Mesocomponent]]s – ~32µm
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* [[Mesocomponent]]s – ~64µm – built in ~1mm chambers
* [[Millimetre sized components]] – 1000µm = 1mm
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* [[Millimeter sized components]] – ~2000µm = 2mm – built in ~32mm chambers
* [[32mm sized components]]
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* [[64mm sized components]]
* [[Metre sized components]]
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* [[Meter sized components]]
 
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Gravity becomes relevant. <br>
 
Gravity becomes relevant. <br>
 
Structures increasingly become sparse trussworks.
 
Structures increasingly become sparse trussworks.
 
* [[32m sized components]]
 
* [[32m sized components]]
* [[Kilometre sized components]]
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* [[Kilometer sized components]]
 
* [[32km sized components]]
 
* [[32km sized components]]
* [[Megametre sized components]]
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* [[Megameter sized components]]
  
 
At some point tidal forces, self gravity and the <br>  
 
At some point tidal forces, self gravity and the <br>  

Revision as of 23:53, 8 June 2021

This is about components (building parts) that are expectable to be handeled by future advanced gemstone metamaterial on-chip factories.
Listed are components on all size scales starting with the smallest the mallest ones. The Molecule fragments aka moieties.
The size steps here are (by convention for the whole wiki) chosen to be of size ~x32. Two steps make exactly x1000.

List of the hierarchy of components




Gravity becomes relevant.
Structures increasingly become sparse trussworks.

At some point tidal forces, self gravity and the
limits of the solar systems resources become relevant.
See: Asteroid belt.

About standard components and size scales

Smaller components are generally more fundamental and reusable than bigger ones. The smallest components though have

in their assembly process. This is hampering reusability. So the sweet spot of reusability may lie in the middle size scales with microcomponents.

Most of the basic mechanical circuit elements will likely be components at the smallest scale that allows for nontrivial geometries (crystolecules). But bigger mechanical circuit elements at the microcomponent scale may be of use as well.

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