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Question

An elevator in a building can carry a maximum of 10 persons, with the average mass of each person being 68kg. The mass of the elevator itself is 920kg and it moves with a constant speed of 3m/s. The frictional force opposing the motion is6000N. If the elevator is moving up with its full capacity, the power delivered by the motor to the elevator (g=10m/s2) must be at least


A

66000W

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B

63360W

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C

48000W

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D

56300W

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Solution

The correct option is A

66000W


Step 1. Given data:

Mass of elevator, me=920Kg

Total mass of persons, mo=68×10Kg

mo=680Kg

Speed of elevator, u=3ms

Frictional force, f=6000N

Force applied by the motor, T=?

Step 2. Calculating net force on the motor, Fm

Net force on motor will be,

Now, F=ma

T-f-me+mog=0 a=0,Asspeed=constant

T-6000-(680+920)×10=0T=22000N

Step 3. Calculating the power delivered by motor to the elevator,

Power=Force×SpeedPower=22000×3Power=66000W

So, the required power of the motor =66000W

Hence, correct option is (A),


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