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An object of mass 2 kg is sliding with a constant velocity of 4m/s on a frictionaless horizontal table. The force required to keep this object moving with same velocity is:?
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An object of mass 2 kg is sliding with a constant velocity of 4m/s on ...
According to the Newton’s law of inertia (Newton’s First Law of Motion) the body can move with a constant speed only if it is acted upon by the balanced forces.
In this question as the body of 2 kg is sliding with a constant velocity the gravitational pull of the earth on it is balanced by the opposing force (friction). So the force balancing the gravitational pull of the earth is equal to its weight = 2 ⨯9.8 N = 19.6 N
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An object of mass 2 kg is sliding with a constant velocity of 4m/s on a frictionaless horizontal table. The force required to keep this object moving with same velocity is:?
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An object of mass 2 kg is sliding with a constant velocity of 4m/s on a frictionaless horizontal table. The force required to keep this object moving with same velocity is:? for Class 9 2024 is part of Class 9 preparation. The Question and answers have been prepared according to the Class 9 exam syllabus. Information about An object of mass 2 kg is sliding with a constant velocity of 4m/s on a frictionaless horizontal table. The force required to keep this object moving with same velocity is:? covers all topics & solutions for Class 9 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for An object of mass 2 kg is sliding with a constant velocity of 4m/s on a frictionaless horizontal table. The force required to keep this object moving with same velocity is:?.
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