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motor car is moving with the velocity of 108 kilometre per hour and it takes us to stop after the breaker applied calculate the force exerted by the brakes on the motor car if its mass along with the passenger is thousand kg
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motor car is moving with the velocity of 108 kilometre per hour and it...
The second laws of motion states that the rate of change of momentum of an object is proportional to applied unbalanceisforce in the direction of force.
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motor car is moving with the velocity of 108 kilometre per hour and it takes us to stop after the breaker applied calculate the force exerted by the brakes on the motor car if its mass along with the passenger is thousand kg Related: Numerical Problems Based on Newton's Second Law of Motion(2) - Force & Laws of Motion?
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motor car is moving with the velocity of 108 kilometre per hour and it takes us to stop after the breaker applied calculate the force exerted by the brakes on the motor car if its mass along with the passenger is thousand kg Related: Numerical Problems Based on Newton's Second Law of Motion(2) - Force & Laws of Motion? 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 motor car is moving with the velocity of 108 kilometre per hour and it takes us to stop after the breaker applied calculate the force exerted by the brakes on the motor car if its mass along with the passenger is thousand kg Related: Numerical Problems Based on Newton's Second Law of Motion(2) - Force & Laws of Motion? covers all topics & solutions for Class 9 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for motor car is moving with the velocity of 108 kilometre per hour and it takes us to stop after the breaker applied calculate the force exerted by the brakes on the motor car if its mass along with the passenger is thousand kg Related: Numerical Problems Based on Newton's Second Law of Motion(2) - Force & Laws of Motion?.
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