Difference between revisions of "Matter Compression"
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− | {{TechInfoBox|desc=Create materials of extremely high density|military=3|tech=1|infra=2|colonize=0|preq=Metal|preq2=NanoMin|enables=Solids|armor=[[Neutronium Armor]]|ability=[[Fuel Nanocells]]|quote=Preliminary analysis indicates that our rivals have developed a safe and reliable method to simulate conditions existing on the interior of a stellar mass. The fabrication and transmutation of materials possible in such an environment guarantees significant industrial and military applications. | + | {{TechInfoBox|desc=Create materials of extremely high density|military=3|tech=1|infra=2|colonize=0|preq=Metal|preq2=NanoMin|enables=Solids|armor=[[Neutronium Armor]]|ability=[[Fuel Nanocells]]|quote=Preliminary analysis indicates that our rivals have developed<br /> |
− | ::: | + | a safe and reliable method to simulate conditions existing on the<br /> |
− | :::Top Secret Report}} | + | interior of a stellar mass. The fabrication and transmutation<br /> |
+ | of materials possible in such an environment guarantees significant<br /> | ||
+ | industrial and military applications.<br /> | ||
+ | <br /> | ||
+ | :::—Probe Team Operations Directorate,<br /> | ||
+ | ::: Top Secret Report}} | ||
Breakthroughs in [[Nanominiaturization]] and [[Nanometallurgy]] lead to complex [[Matter Compression]] techniques. Using these techniques, scientists can create materials as dense as the inside of a star, with significant military and industrial applications. | Breakthroughs in [[Nanominiaturization]] and [[Nanometallurgy]] lead to complex [[Matter Compression]] techniques. Using these techniques, scientists can create materials as dense as the inside of a star, with significant military and industrial applications. |
Revision as of 06:58, 13 March 2013
Matter Compression | |
---|---|
Requires | Nanometallurgy, Nanominiaturization |
Leads to | Super Tensile Solids |
Armor | Neutronium Armor |
Ability | Fuel Nanocells |
a safe and reliable method to simulate conditions existing on the
interior of a stellar mass. The fabrication and transmutation
of materials possible in such an environment guarantees significant
industrial and military applications.
- —Probe Team Operations Directorate,
- Top Secret Report
- —Probe Team Operations Directorate,
Breakthroughs in Nanominiaturization and Nanometallurgy lead to complex Matter Compression techniques. Using these techniques, scientists can create materials as dense as the inside of a star, with significant military and industrial applications.