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The graph between the resistive force F acting on a body and the distance covered by the body is shown in the figure. The mass of the body is 25kg and initial velocity is 2m/s. When the distance covered by the body is 4m, its kinetic energy (in Joule) would be :
    Correct answer is '10'. Can you explain this answer?
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    The graph between the resistive forceFacting on a body and the distanc...
    Area under curve 
    W = work done by resistive force F
    The correct answer is: 10
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    The graph between the resistive forceFacting on a body and the distanc...
    Area under curve 
    W = work done by resistive force F
    The correct answer is: 10
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    The graph between the resistive forceFacting on a body and the distance covered by the body is shown in the figure. The mass of the body is 25kgand initial velocity is 2m/s. When the distance covered by the body is 4m, its kinetic energy (inJoule) would be :Correct answer is '10'. Can you explain this answer?
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    The graph between the resistive forceFacting on a body and the distance covered by the body is shown in the figure. The mass of the body is 25kgand initial velocity is 2m/s. When the distance covered by the body is 4m, its kinetic energy (inJoule) would be :Correct answer is '10'. 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 The graph between the resistive forceFacting on a body and the distance covered by the body is shown in the figure. The mass of the body is 25kgand initial velocity is 2m/s. When the distance covered by the body is 4m, its kinetic energy (inJoule) would be :Correct answer is '10'. Can you explain this answer? covers all topics & solutions for Physics 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The graph between the resistive forceFacting on a body and the distance covered by the body is shown in the figure. The mass of the body is 25kgand initial velocity is 2m/s. When the distance covered by the body is 4m, its kinetic energy (inJoule) would be :Correct answer is '10'. Can you explain this answer?.
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