The two blocks shown are originally at rest. Block A has a weight of 2501b and Block B has a weight of 4001b. Neglecting the masses of the pulleys and the effect of friction in the pulleys and between block A and the incline. a. Determine the acceleration of Block A in ft/s². b. Determine the acceleration of Block B in ft/s². c. Determine the tension force in of Block A in lb. d. Determine the tension force in of Block A in lb. 30⁰ B

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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The two blocks shown are originally at rest. Block A has a weight of 2501b and Block B has a
weight of 4001b. Neglecting the masses of the pulleys and the effect of friction in the pulleys and
between block A and the incline.
a. Determine the acceleration of Block A in ft/s².
b. Determine the acceleration of Block B in ft/s².
c. Determine the tension force in of Block A in lb.
d. Determine the tension force in of Block A in lb.
30⁰
B
Transcribed Image Text:The two blocks shown are originally at rest. Block A has a weight of 2501b and Block B has a weight of 4001b. Neglecting the masses of the pulleys and the effect of friction in the pulleys and between block A and the incline. a. Determine the acceleration of Block A in ft/s². b. Determine the acceleration of Block B in ft/s². c. Determine the tension force in of Block A in lb. d. Determine the tension force in of Block A in lb. 30⁰ B
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