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The maximum vertical distance through which a fully dressed astronaut can jump on earth is 0.5m. Estimate the maximum vertical distance thrugh which he can jump on the moon which has mean density 2/3 that of earth and a radius 1/4 that of earth.?
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The maximum vertical distance through which a fully dressed astronaut ...
The gravitational acceleration on a planet
=g=GM/R^2,
=Gp4/3ΠR^3/R^2=G4/3ΠPR is directly proportional to PR,
hence the value of g on moon =gm=ge/3,
since, the astronaut has energy to jump only 0.5 on moon-->
energy=mge he =mgm hm,
=hm=ge/gm=6×he=3m
*(NOTE Π=pie)
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The maximum vertical distance through which a fully dressed astronaut can jump on earth is 0.5m. Estimate the maximum vertical distance thrugh which he can jump on the moon which has mean density 2/3 that of earth and a radius 1/4 that of earth.?
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The maximum vertical distance through which a fully dressed astronaut can jump on earth is 0.5m. Estimate the maximum vertical distance thrugh which he can jump on the moon which has mean density 2/3 that of earth and a radius 1/4 that of earth.? for Class 10 2024 is part of Class 10 preparation. The Question and answers have been prepared according to the Class 10 exam syllabus. Information about The maximum vertical distance through which a fully dressed astronaut can jump on earth is 0.5m. Estimate the maximum vertical distance thrugh which he can jump on the moon which has mean density 2/3 that of earth and a radius 1/4 that of earth.? covers all topics & solutions for Class 10 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The maximum vertical distance through which a fully dressed astronaut can jump on earth is 0.5m. Estimate the maximum vertical distance thrugh which he can jump on the moon which has mean density 2/3 that of earth and a radius 1/4 that of earth.?.
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