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Question

A bullet of mass 10g is fired horizontally with a velocity 1000ms-1 from a rifle situated at a height 50m above the ground. If the bullet reaches the ground with a velocity500ms-1, the work done against air resistance in the trajectory of the bullet is (take g=10m-2).


A

5005J

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B

3755J

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C

3750J

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D

17.5J

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Solution

The correct option is B

3755J


Step 1: Given data

Mass of bullet, m=10g

1g=10-3Kgm=10×10-3Kgm=10-2Kg

The initial velocity of the bullet, u=1000m/s

The final velocity of the bullet, v=500m/s

Height of riffle, h=50m

Step 2: Find the work done against air resistance

Work done against the air resistance is the energy lost

W=mgh+12mu2-12mv2W=10m/s2x10-2Kgx50m+12×10-2Kg×(1000m/s)2-(500m/s)2W=3755J

Hence, option B is correct.


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