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A 1000-Kg Car Moving At 10 M/S That Brakes To A Stop In 5 S Has An Average Braking Force Of

A 1000-Kg Car Moving At 10 M/S That Brakes To A Stop In 5 S Has An Average Braking Force Of. The average braking force is? In order to catch a.

Solved A 1000kg car moving at 10 m/s brakes to a stop in 5
Solved A 1000kg car moving at 10 m/s brakes to a stop in 5 from www.chegg.com

Web the car moves 1.5 m before it comes to a complete stop. The average braking force is:a) 3000 n.b) 2000 n.c) 5000 n.d) 1000 n.e0 4000 n.explain the correct choice please;. Web u = 10 m/s is the initial velocity of the car.

When I Work This Out With The Formula That You Gave Me, I Get 2525.


Substituting, where the negative sign means it is a deceleration. 6) a 1000‐kg car moving at 10 m/s brakes to a stop in 5 s. The average braking force is 2000 n.

6) B ) 1000 N.


Web the average braking force is = 2 k n explanation: The average braking force is:a) 3000 n.b) 2000 n.c) 5000 n.d) 1000 n.e0 4000 n.explain the correct choice please;. Time of catch is increased.

In Order To Catch A.


When i work this out with the formula that you gave me, i get 2525. Web u = 10 m/s is the initial velocity of the car. Web the force of an object moving is directly proportional to its acceleration and the proportionality constant is the mass of the object.

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T = 5 s is the time elapsed. The mass of the car is m = 1 0 0 0 k g the initial velocity of the car is u = 1 0 m s − 1 the time is t = 5 s the final velocity of the. The average braking force is a) 2000 n.

If A Charging Rhinoceros Has Momentum, It Must Also Have.


Web the car moves 1.5 m before it comes to a complete stop. The average braking force is? If the car had been moving at 14 m/s, how far would it have continued to move after the brakes were.

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