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A satellite revolves around a planet in circular orbit of radius (much larger than the radius of the planet) with a time period of revolution T. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).
  • a)
    It cannot fall on the planet so time of fall of the satellite is meaningless
  • b)
    The time of fall of the satellite on the planet is nearly 
  • c)
    It will fall on the planet 
  • d)
    The time of fall of the satellite is nearly
Correct answer is option 'B,C'. Can you explain this answer?
Verified Answer
A satellite revolves around a planet in circular orbit of radiusR(much...
It will fall because mg is acting on it towards the centre of planet and initial velocity is zero. It’ll move in straight line.

 By energy conservation

using this we get  V = f(r)
Now use 

R' = radius of the planet.
In the final expression (on in the beginning itself)



The correct answers are: It will fall on the planet, The time of fall of the satellite on the planet is nearly 
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Most Upvoted Answer
A satellite revolves around a planet in circular orbit of radiusR(much...
It will fall because mg is acting on it towards the centre of planet and initial velocity is zero. It’ll move in straight line.

 By energy conservation

using this we get  V = f(r)
Now use 

R' = radius of the planet.
In the final expression (on in the beginning itself)



The correct answers are: It will fall on the planet, The time of fall of the satellite on the planet is nearly 
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Community Answer
A satellite revolves around a planet in circular orbit of radiusR(much...
It will fall because mg is acting on it towards the centre of planet and initial velocity is zero. It’ll move in straight line.

 By energy conservation

using this we get  V = f(r)
Now use 

R' = radius of the planet.
In the final expression (on in the beginning itself)



The correct answers are: It will fall on the planet, The time of fall of the satellite on the planet is nearly 
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A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer?
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A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? for Physics 2024 is part of Physics preparation. The Question and answers have been prepared according to the Physics exam syllabus. Information about A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? covers all topics & solutions for Physics 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer?.
Solutions for A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? in English & in Hindi are available as part of our courses for Physics. Download more important topics, notes, lectures and mock test series for Physics Exam by signing up for free.
Here you can find the meaning of A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer?, a detailed solution for A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? has been provided alongside types of A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice A satellite revolves around a planet in circular orbit of radiusR(much larger than the radius of the planet) with a time period of revolutionT. If the satellite is stopped and then released in its orbits (Assume that the satellite experiences gravitational force due to the planet only).a)It cannot fall on the planet so time of fall of the satellite is meaninglessb)The time of fall of the satellite on the planet is nearlyc)It will fall on the planetd)The time of fall of the satellite is nearlyCorrect answer is option 'B,C'. Can you explain this answer? tests, examples and also practice Physics tests.
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