Difference between revisions of "Exothermy offloading"

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Similar to [[dissipation sharing]]. <br>
 
Similar to [[dissipation sharing]]. <br>
But instead of only equilibrating between the [[piezochemical mechanosynthesis]] sites on [[molecular mills]]
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But instead of only equilibrating between the [[piezochemical mechanosynthesis]] sites on [[molecular mills]] <br>
 
the idea here is to get the somewhere unconditionally necessary dissipation (increase in microstates)  
 
the idea here is to get the somewhere unconditionally necessary dissipation (increase in microstates)  
 
all the way out to the drive system.
 
all the way out to the drive system.
  
When only happening inside the [[mechanosynthesis core]]s of a [[gem-gum factory]] then it would necessarily need to be an exothermic dissipation process  
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When only happening inside the [[mechanosynthesis core]]s of a [[gem-gum factory]] <br>
since the [[machine phase]] does not allow for an increase in positional disorder which is a prerequisite for endothermy.
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then it would necessarily need to be an exothermic dissipation process since <br>
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the [[machine phase]] does not allow for an increase in positional disorder which is a prerequisite for endothermy.
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== Related ==
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* [[Dissipation sharing]]
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----
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* [[Drive subsystem of a gem-gum factory]]
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* [[Piezochemical mechanosynthesis]]
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* [[Chemomechanical converter]]

Revision as of 14:05, 24 February 2022

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

Similar to dissipation sharing.
But instead of only equilibrating between the piezochemical mechanosynthesis sites on molecular mills
the idea here is to get the somewhere unconditionally necessary dissipation (increase in microstates) all the way out to the drive system.

When only happening inside the mechanosynthesis cores of a gem-gum factory
then it would necessarily need to be an exothermic dissipation process since
the machine phase does not allow for an increase in positional disorder which is a prerequisite for endothermy.

Related