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QUESTION 1 A Your space rover has landed on a new planet. Your task is to develop industries on the plant to begin supporting life

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QUESTION 1 A Your space rover has landed on a new planet. Your task is to develop industries on the plant to begin supporting life in the planetary system where settlements on each planet produces items to trade. Your industrial development plans must make maximum use of the resources available and the industries must be complimentary. You can assume that the industrial equipment readily available on earth can be brought to the plant and used there without issue. Resources Atmosphere consists of 10% propylene (b.p=225.4K, Tiny =940K); 70% nitrogen (80%, b.p. = 77K1 =621K9: 10% unknown gas X2 (b.p.= 85K, Tiny = 790K). It was found gas X2 supports combustion in a similar way to oxygen back on earth. This air liquefies at 78K. Soil is rich in iron oxide (magnetite not hematite) with minute amounts of silica. There are pure limestone deposits in rock formations containing 5% silica. Water-fresh water is not available as all the water on the plant contains a minimum of 25% salt (2:1:1 mixture of NaCl: KCl: MgCl2) Sunlight is abundant and you have a large quantity of solar panels as well as a traditional gas turbine. There are no extractable underground hydrocarbon resources on the planet. QUESTION 1 A Your space rover has landed on a new planet. Your task is to develop industries on the plant to begin supporting life in the planetary system where settlements on each planet produces items to trade. Your industrial development plans must make maximum use of the resources available and the industries must be complimentary. You can assume that the industrial equipment readily available on earth can be brought to the plant and used there without issue. Resources Atmosphere consists of 10% propylene (b.p=225.4K, Tiny =940K); 70% nitrogen (80%, b.p. = 77K1 =621K9: 10% unknown gas X2 (b.p.= 85K, Tiny = 790K). It was found gas X2 supports combustion in a similar way to oxygen back on earth. This air liquefies at 78K. Soil is rich in iron oxide (magnetite not hematite) with minute amounts of silica. There are pure limestone deposits in rock formations containing 5% silica. Water-fresh water is not available as all the water on the plant contains a minimum of 25% salt (2:1:1 mixture of NaCl: KCl: MgCl2) Sunlight is abundant and you have a large quantity of solar panels as well as a traditional gas turbine. There are no extractable underground hydrocarbon resources on the planet

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