More actions
Liquid hot MAG-MA! |
Add unavailable planets note |
||
| Line 12: | Line 12: | ||
P2 and P3 products that can be produced on a single planet without importing goods are also listed for each planet. Each planet type has exactly one P3 product it can produce without imports. All P4 products take multiple planets, ranging from 2 to 5. If a product can only be produced on one planet type without importing goods it'll be highlighted in <font color=green>'''green'''</font>. | P2 and P3 products that can be produced on a single planet without importing goods are also listed for each planet. Each planet type has exactly one P3 product it can produce without imports. All P4 products take multiple planets, ranging from 2 to 5. If a product can only be produced on one planet type without importing goods it'll be highlighted in <font color=green>'''green'''</font>. | ||
Note that there are a few select planets that will be unavailable for colonization due to being in heavy traffic or storyline systems. One such example is Jita. | |||
| Line 34: | Line 36: | ||
Barren planets have three resources with little to no pattern in their distribution, and two with a more consistent record. Aqueous Liquids tend to be gathered near the poles in moderate to poor quantity, while Micro Organisms tend to cluster here and there in the "temperate" band (in Earth speak) | Barren planets have three resources with little to no pattern in their distribution, and two with a more consistent record. Aqueous Liquids tend to be gathered near the poles in moderate to poor quantity, while Micro Organisms tend to cluster here and there in the "temperate" band (in Earth speak) | ||
== Gas == | == Gas == | ||
| Line 54: | Line 57: | ||
Resources on a Gas planet will typically be found in narrow bands running east-west at various latitudes. Base metals are generally in bands around the equator, Aqueous Liquids and Ionic Solutions in mid-latitudes bands, with the Noble Gas near the poles. Reactive Gas will be found in small pockets at all latitudes. Gas planets are normally larger than most other types of planets, so connecting links between structures will generally take more power grid and CPU. | Resources on a Gas planet will typically be found in narrow bands running east-west at various latitudes. Base metals are generally in bands around the equator, Aqueous Liquids and Ionic Solutions in mid-latitudes bands, with the Noble Gas near the poles. Reactive Gas will be found in small pockets at all latitudes. Gas planets are normally larger than most other types of planets, so connecting links between structures will generally take more power grid and CPU. | ||
== Ice == | == Ice == | ||
| Line 73: | Line 77: | ||
Ice planets typically have high amounts of Heavy Metals and Aqueous Liquids available. Micro Organisms and Noble Gas are less abundant, with Planktic Colonies being somewhat thin. Aqueous Liquids tends to be found more in the polar regions of Ice planets, Planktic Colonies in the temperate latitudes and Micro Organisms in the equatorial regions. Noble Gas and Heavy Metals are more randomly distributed with Heavy Metals more towards the equator and Noble Gas more towards the poles but with large areas of overlap and intermingling. | Ice planets typically have high amounts of Heavy Metals and Aqueous Liquids available. Micro Organisms and Noble Gas are less abundant, with Planktic Colonies being somewhat thin. Aqueous Liquids tends to be found more in the polar regions of Ice planets, Planktic Colonies in the temperate latitudes and Micro Organisms in the equatorial regions. Noble Gas and Heavy Metals are more randomly distributed with Heavy Metals more towards the equator and Noble Gas more towards the poles but with large areas of overlap and intermingling. | ||
== Lava == | == Lava == | ||
| Line 93: | Line 98: | ||
Resources on Lava planets do not appear to follow any pattern trends and are scattered all over. You'd think the planet was all liquidy and floaty and stuff. | Resources on Lava planets do not appear to follow any pattern trends and are scattered all over. You'd think the planet was all liquidy and floaty and stuff. | ||
== Oceanic == | == Oceanic == | ||
| Line 178: | Line 184: | ||
The physical appearance of these planets also has a high impact upon the resources available. Temperate planets with large amounts of water coverage will have an increased supply of Aqueous Liquids whilst having a reduced supply of Complex Organisms and Micro Organisms, planets with large amounts of land mass coverage show an increase in the supply of Micro Organism (and occasionally Complex Organisms), and a significantly reduced amount of Aqueous Liquids. | The physical appearance of these planets also has a high impact upon the resources available. Temperate planets with large amounts of water coverage will have an increased supply of Aqueous Liquids whilst having a reduced supply of Complex Organisms and Micro Organisms, planets with large amounts of land mass coverage show an increase in the supply of Micro Organism (and occasionally Complex Organisms), and a significantly reduced amount of Aqueous Liquids. | ||
== Shattered == | == Shattered == | ||