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Q.A raindrop of mass 1 g falling from a height of 1 km hits the ground with a speed of 50 ms^-1. If the resistive force is proportional to the speed of the drop, then the work done by the resistive force is (Take g = 10 ms^-2)

(1) 10 J
(2) -10 J
(3) 8.75 J
(4) -8.75 J
Jharkhand JacJAC Intermediate Board (1st Year) 2023MCQ· 1mImportance★★★★★
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Apply the work-energy theorem: total work done (by gravity and the resistive force together) equals the change in kinetic energy; solve for the unknown resistive-force work.

Given:

Mass, m = 1 g = 0.001 kg

Height fallen, h = 1 km = 1000 m

Final speed, v = 50 m/s

g = 10 m/s^2

Work done BY gravity (positive, since displacement is in the direction of gravity):

W_gravity = mgh = 0.001 x 10 x 1000 = 10 J

Change in kinetic energy (drop starts from rest):

ΔKE = (1/2)mv^2 - 0 = (1/2)(0.001)(50)^2 = (1/2)(0.001)(2500) = 1.25 J

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