(B) The 1400 kg coal car with load is being pulled by the weight E as shown in the figure. If the mass of E is 100 kg, determine the corresponding reactions at wheel supports A and B. The wheels are rolling without sliding (i.e. there is no friction force at the wheels). Pulley at D is smooth. 1400 kg 0.4 m 1m E 0.6 m

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter7: Dry Friction
Section: Chapter Questions
Problem 7.36P: The coeffient of static friction between the uniform bar AB of weight W and the ground is 0.45. Find...
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(B) The 1400 kg coal car with load is being pulled by the weight E as shown in the figure. If the
mass of E is 100 kg, determine the corresponding reactions at wheel supports A and B. The
wheels are rolling without sliding (i.e. there is no friction force at the wheels). Pulley at D is
smooth.
1400 kg
0.4 m
1m
E
0.6 m
Transcribed Image Text:(B) The 1400 kg coal car with load is being pulled by the weight E as shown in the figure. If the mass of E is 100 kg, determine the corresponding reactions at wheel supports A and B. The wheels are rolling without sliding (i.e. there is no friction force at the wheels). Pulley at D is smooth. 1400 kg 0.4 m 1m E 0.6 m
Expert Solution
Step 1

Given data:

The mass of the coal car is M=1400 kg

The mass of block E is m=100 kg

Step 2

The free body diagram of block E is as follows:

Mechanical Engineering homework question answer, step 2, image 1

Apply the Newton's second law on the block E is as follows:

981-T=ma981-T=100aT=981-100a1

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