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A horizontal force of 159 N is used to push a 37.0 kg packing crate a distance of 6.00 m on a rough horizontal surface. The acceleration due to gravity is 9.81 m/s\(^2\). If the crate moves with constant velocity, calculate the work done by the force.

Answer :

Final answer:

The work done in physics on the crate is calculated as the product of the applied force and the distance moved, which yields a value of 954 Joules.

Explanation:

The work done by a force on an object can be calculated using the formula: Work = Force x Distance. In this case, we know that the force used to push the crate is 159 N, and the distance over which this force is applied is 6.00 m.

Because the crate is moving at a constant velocity, we can also assume that this force is the net force. Therefore, we can apply the formula as follows: Work = 159 N x 6.00 m = 954 Joules. This is the work done by the force on the crate as it moves it along a rough horizontal surface.

To calculate the work done by a force, we can use the equation: work = force x distance. In this case, the force is the horizontal force of 159 N and the distance is 6.00 m. So, the work done by the force is 159 N x 6.00 m = 954 J.

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