1. An electric rocket is to be designed to provide a Aus of 5.7 km/s. Given that the "burn" time is 3 months, and (a/n) is 10 kg/kW, calculate the optimum specific impulse, and the corresponding (M/Mo). Show table of values of (M/Mo) and Isp that supports your conclusion and highlight the necessary information in it. It is sufficient to provide the portion of the table around the highlighted region.{Ans.: 3700s, 0.7316}
1. An electric rocket is to be designed to provide a Aus of 5.7 km/s. Given that the "burn" time is 3 months, and (a/n) is 10 kg/kW, calculate the optimum specific impulse, and the corresponding (M/Mo). Show table of values of (M/Mo) and Isp that supports your conclusion and highlight the necessary information in it. It is sufficient to provide the portion of the table around the highlighted region.{Ans.: 3700s, 0.7316}
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
Transcribed Image Text:1. An electric rocket is to be designed to provide a Aub of 5.7 km/s. Given that the "burn" time
is 3 months, and (an) is 10 kg/kW, calculate the optimum specific impulse, and the
corresponding (ML/Mo). Show table of values of (ML/Mo) and Isp that supports your
conclusion and highlight the necessary information in it. It is sufficient to provide the portion
of the table around the highlighted region. {Ans.: 3700s, 0.7316}
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