Desert Planet (Class-G)
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| - | < | + | {{StarMapMenu}} |
| + | <!-- SCROLL DOWN TO EDIT THE ARTICLE --> | ||
| + | {{Infobox-Planets | ||
| + | | Name=Desert Planet | ||
| + | | Planet image=[[Image:Desert.gif]] | ||
| + | | Image description=Orbital view | ||
| + | | Terrain images=[[Image:Desertplain.gif|link=Desert|Desert]] [[Image:Rockfield.gif|link=Rock|Rock]] [[Image:Space.gif|link=Space|Space]] | ||
| + | | Terrain descriptions= | ||
| + | | Atmospheric density=5 | ||
| + | | Attractiveness=15 | ||
| + | | Orbital solar power=7 | ||
| + | | Desert solar power=9 | ||
| + | | Iridium Ore=4 | ||
| + | | Nitrium=2 | ||
| + | | Dilithium=n/a | ||
| + | | Sorium=n/a | ||
| + | }} | ||
| + | '''Desert''' or '''Class G Planets''' are one of the most sought-after planet types because you can produce massive energy very cheaply using [[Solar Satellite]]s and [[Solar Array]]s on them. This makes them ideal for energy-intensive uses, such as [[Antimatter]] production or [[Isolinear Chips|Isolinear Chip]] production using Jupiter stations. However, they can also produce nitrium (although less efficiently than [[Class-La|Lavas]]). | ||
| - | + | {{seealso}} | |
| - | + | * [[Planet Classes]] <br> | |
| - | + | * [[Solar Cells]] <br> | |
| - | + | * [[Solar Array]] <br> | |
| - | + | * [[Solar Satellite]] <br> | |
| - | Solar | + | |
| + | |||
| + | [[Category:Planet Classes]] | ||
| + | [[Category:Stellar Cartography]] | ||
Latest revision as of 11:51, 6 September 2016
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Orbital view | ||
| Desert Planet | ||
|---|---|---|
| Terrain characteristics | ||
| | ||
| General characteristics | ||
| Atmospheric density: | 5 | |
| Attractiveness: | 15 | |
| Orbital solar power: | 7 | |
| Desert solar power: | 9 | |
| Raw material deposits | ||
| Iridium Ore: | 4 | |
| Nitrium: | 2 | |
| Dilithium: | n/a | |
| Sorium: | n/a | |
| Planet class overview | ||
Desert or Class G Planets are one of the most sought-after planet types because you can produce massive energy very cheaply using Solar Satellites and Solar Arrays on them. This makes them ideal for energy-intensive uses, such as Antimatter production or Isolinear Chip production using Jupiter stations. However, they can also produce nitrium (although less efficiently than Lavas).
Also See:
