A cable is attached to a 1.00kg block A, is looped over a fixed peg at C, and is attached to plate B.(Figure 1) The coefficient of static friction between the plate and the block is uA = 0.270, the coefficient of static friction between the plate and the inclined plane is uB = 0.450, and the coefficient of static friction between the cable and the peg is uc = 0.400. If the plane's angle is 30.0 degrees, what is the maximum mass that plate B can have such that it does not slide down the plane? %3D

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A cable is attached to a 1.00kg block A, is looped over a
fixed peg at C, and is attached to plate B.(Figure 1) The
coefficient of static friction between the plate and the block
is uA = 0.270, the coefficient of static friction between the
plate and the inclined plane is uB = 0.450, and the
coefficient of static friction between the cable and the peg
is uC = 0.400. If the plane's angle is 30.0 degrees, what is
the maximum mass that plate B can have such that it does
not slide down the plane?
Transcribed Image Text:A cable is attached to a 1.00kg block A, is looped over a fixed peg at C, and is attached to plate B.(Figure 1) The coefficient of static friction between the plate and the block is uA = 0.270, the coefficient of static friction between the plate and the inclined plane is uB = 0.450, and the coefficient of static friction between the cable and the peg is uC = 0.400. If the plane's angle is 30.0 degrees, what is the maximum mass that plate B can have such that it does not slide down the plane?
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