Difference between revisions of "Object:Thor I XL"
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| categoria=Fission reactor | | categoria=Fission reactor | ||
| descripcionCategoria=Fission reactors use radioisotopes whose atomic core collide with one another to generate immense amounts of energy. | | descripcionCategoria=Fission reactors use radioisotopes whose atomic core collide with one another to generate immense amounts of energy. | ||
− | | | + | | tecnologia=Thor I reactors |
| volumen = 400 | | volumen = 400 | ||
| valor = 5080 | | valor = 5080 | ||
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}} | }} | ||
{{Installation requirements | {{Installation requirements | ||
− | | | + | | Power = 0 |
− | | | + | | Personnel = 80 |
− | | | + | | Space = 100 |
}} | }} | ||
{{Object resources | {{Object resources | ||
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| Carbon compounds=160 | | Carbon compounds=160 | ||
}} | }} | ||
− | |||
[[es:Object:Thor I XL]] | [[es:Object:Thor I XL]] | ||
+ | [[Category:Objets]] |
Latest revision as of 12:26, 14 April 2021
Thor I XL | |
Characteristics | |
Category | Fission reactor |
Tecnology | Thor I reactors |
Mass | 1000 |
Value | 5080 |
Volumen | 400 |
Fission reactors use radioisotopes whose atomic core collide with one another to generate immense amounts of energy.
Installation requirements
Power | {{{power}}} |
Personnel | {{{personnel}}} |
Space | {{{space}}} |
Resources needed
Metals | 160 | |
Silicates | 120 | |
Carbon compounds | 160 | |
Inert gases | 80 | |
Water | 60 | |
Radioisotopes | 240 |