Difference between revisions of "Planet Steinfurt"

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{{Planet Infobox
 
{{Planet Infobox
 
| name = Planet Steinfurt
 
| name = Planet Steinfurt
| image =  
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| image = Steinfurt.jpg
 
| owner =  
 
| owner =  
 
| system = [[Koeln]]
 
| system = [[Koeln]]

Revision as of 06:14, 26 June 2012

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This article has not been verified to be up to date for the latest version of the Discovery mod. The last edit was made on 26.06.2012 (DD/MM/YYYY). You may help by updating it, often by using the code generator.
Planet Steinfurt
Steinfurt.jpg
Location 6D/6E, Koeln
Flag-rheinland.png Rheinland
Technical information
Docking No
Terrain Desert
Diameter 14,157 km
Mass 8.21 x 10e24 kg
Temperature -31°C to 63°C
Escape velocity 18.74 km/sec

Steinfurt is a major planet in the Koeln system, orbitting closely to the system's young sun. Originally surveyed by a Daumann prospecting expedition in late 750 A.S., the planet has been marked by the company as "scarce in mineable resources". Additional data compiled by automated probes revealed that the system itself was frequented by a large number of comets and orbitting dwarf planets, which were confirmed to regularly hit Steinfurt owing to its large gravitational force. The planet was thus deemed hazardous and uninhabitable and the expedition turned to the asteroid fields on the fringes of the system.

The planet was largely forgotten until late 803, when Kruger Minerals, desperate for new mining grounds, began their own surveys within Koeln. Unlike the preceding Daumann surveyors, the Kruger expedition focused on the planet itself and eventually discovered that the frequent collisions with the planet surface had launched large amounts of metals in large chunks of rock from the planet's surface into its orbit, where the chunks decayed into extensive rings of debris. ALG soon agreed to finance a resource gathering and processing project in return for a share of the profits from the enterprise and planet Steinfurt was soon the first planetary body in Sirius to be mined without the need for atmospheric entry.