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The mass of a body on earth is 100 kg (acceleration due to gravity, g = 10 m/s2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:
  • a)
    2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:
  • b)
    If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:1. 100/6 kg2. 60 kg
  • c)
    100 kg
  • d)
    600 kg
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
The mass of a body on earth is 100 kg (acceleration due to gravity, g ...
Mass of the body remains constant on the earth or on any other planet but the weight of the body changes on other planets as the acceleration due to gravity changes
Community Answer
The mass of a body on earth is 100 kg (acceleration due to gravity, g ...
Mass of the body on the moon is 100 kg, which is the same as its mass on Earth. The acceleration due to gravity on the moon is ge/6, where ge is the acceleration due to gravity on Earth.

To find the mass of the body on the moon, we can use the formula:

Weight = mass x acceleration due to gravity

On Earth, the weight of the body is given by:

Weight on Earth = mass x ge

On the moon, the weight of the body is given by:

Weight on Moon = mass x (ge/6)

Since the mass of the body is the same on both Earth and the moon, we can equate the weights:

mass x ge = mass x (ge/6)

We can cancel out the mass from both sides of the equation:

ge = ge/6

Simplifying the equation, we get:

6 = 1

This implies that ge = 6.

Since the acceleration due to gravity on Earth is ge = 10 m/s^2, we can substitute this value back into the equation to find the mass of the body on the moon:

Weight on Moon = mass x (ge/6)

Weight on Moon = 100 kg x (10/6)

Weight on Moon = 100 kg x (5/3)

Weight on Moon = 500/3 kg

Therefore, the mass of the body on the moon is approximately 500/3 kg, which is equal to 166.67 kg.
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The mass of a body on earth is 100 kg (acceleration due to gravity, g = 10 m/s2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:a)2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:b)If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:1.100/6 kg2.60 kgc)100 kgd)600 kgCorrect answer is option 'C'. Can you explain this answer?
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The mass of a body on earth is 100 kg (acceleration due to gravity, g = 10 m/s2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:a)2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:b)If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:1.100/6 kg2.60 kgc)100 kgd)600 kgCorrect answer is option 'C'. Can you explain this answer? for Defence 2024 is part of Defence preparation. The Question and answers have been prepared according to the Defence exam syllabus. Information about The mass of a body on earth is 100 kg (acceleration due to gravity, g = 10 m/s2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:a)2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:b)If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:1.100/6 kg2.60 kgc)100 kgd)600 kgCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for Defence 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The mass of a body on earth is 100 kg (acceleration due to gravity, g = 10 m/s2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:a)2. If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:b)If acceleration due to gravity on the moon is ge / 6, then the mass of the body on the moon is:1.100/6 kg2.60 kgc)100 kgd)600 kgCorrect answer is option 'C'. Can you explain this answer?.
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