Difference between revisions of "Super Tensile Solids"
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− | {{TechInfoBox|desc=Unbreakable materials|military=1|tech=0|infra=5|colonize=2|preq=MatComp|preq2=Space|enables=NanEdit|armor=[[Pulse 8 Armor]]|facility=[[Habitation Dome]]|secret project=[[The Space Elevator]]|quote=Optical computers, genetic catalogs, nanorepair | + | {{TechInfoBox|desc=Unbreakable materials|military=1|tech=0|infra=5|colonize=2|preq=MatComp|preq2=Space|enables=NanEdit|armor=[[Pulse 8 Armor]]|facility=[[Habitation Dome]]|secret project=[[The Space Elevator]]|quote=Optical computers, genetic catalogs, nanorepair modules—forget<br /> |
− | ::: | + | all of that. It’s when you see a megaton of steel suspended over<br /> |
− | :::MorganLink 3DVision Live Interview}} | + | your head by a thread the thickness of a human hair that you<br /> |
+ | really find God in technology.<br /> | ||
+ | <br /> | ||
+ | :::—Anonymous Metagenics Dockworker,<br /> | ||
+ | ::: MorganLink 3DVision Live Interview}} | ||
The requirements of [[Advanced Spaceflight]] and the possibilities inherent in [[Matter Compression]] lead to research in [[Super Tensile Solids]]. These materials possess such strength as to be functionally unbreakable in a natural environment. | The requirements of [[Advanced Spaceflight]] and the possibilities inherent in [[Matter Compression]] lead to research in [[Super Tensile Solids]]. These materials possess such strength as to be functionally unbreakable in a natural environment. |
Revision as of 07:33, 13 March 2013
Super Tensile Solids | |
---|---|
Requires | Matter Compression, Advanced Spaceflight |
Leads to | Matter Editation |
Armor | Pulse 8 Armor |
Facility | Habitation Dome |
Secret Project | The Space Elevator |
all of that. It’s when you see a megaton of steel suspended over
your head by a thread the thickness of a human hair that you
really find God in technology.
- —Anonymous Metagenics Dockworker,
- MorganLink 3DVision Live Interview
- —Anonymous Metagenics Dockworker,
The requirements of Advanced Spaceflight and the possibilities inherent in Matter Compression lead to research in Super Tensile Solids. These materials possess such strength as to be functionally unbreakable in a natural environment.