A spacecraft of mass m = 1.5-10³ kg travels in vacuum in the absence of a gravitational field and uses a laser beam of power P = 10 kW mounted in the rear as an engine. Calculate how much the speed of the spacecraft increases in each day of navigation.
A spacecraft of mass m = 1.5-10³ kg travels in vacuum in the absence of a gravitational field and uses a laser beam of power P = 10 kW mounted in the rear as an engine. Calculate how much the speed of the spacecraft increases in each day of navigation.
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absence of a gravitational field and uses a laser beam of power
P = 10 kW mounted in the rear as an engine.
Calculate how much the speed of the spacecraft increases in each
day of navigation.
27/32"
Transcribed Image Text:A spacecraft of mass m = 1.5. 10³ kg travels in vacuum in the
absence of a gravitational field and uses a laser beam of power
P = 10 kW mounted in the rear as an engine.
Calculate how much the speed of the spacecraft increases in each
day of navigation.
27/32
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