aB B Figure P3.13 Problem 3.13 ! The crate A of mass m and the wedge B on which it rests are moving together up incline with the acceleration aB as shown. The angle of the incline is 0 = 30° w respect to the horizontal. Given that the coefficient of static friction between the crate the wedge is us slip on the wedge. %3D 0.6, determine the maximum value of a B before the crate start %3D

Principles of Geotechnical Engineering (MindTap Course List)
9th Edition
ISBN:9781305970939
Author:Braja M. Das, Khaled Sobhan
Publisher:Braja M. Das, Khaled Sobhan
Chapter15: Slope Stability
Section: Chapter Questions
Problem 15.28P
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Figure P3.13
Problem 3.13
The crate A of mass m and the wedge B on which it rests are moving together up the
incline with the acceleration aB as shown. The angle of the incline is 0
respect to the horizontal. Given that the coefficient of static friction between the crate and
the wedge is us
slip on the wedge.
30° with
0.6, determine the maximum value of a B before the crate starts to
%3D
Transcribed Image Text:ав Figure P3.13 Problem 3.13 The crate A of mass m and the wedge B on which it rests are moving together up the incline with the acceleration aB as shown. The angle of the incline is 0 respect to the horizontal. Given that the coefficient of static friction between the crate and the wedge is us slip on the wedge. 30° with 0.6, determine the maximum value of a B before the crate starts to %3D
Problem 3.108
Revisit Example 3.13 and determine the expression for the acceleration of A if the load
at P is replaced by a force with magnitude equal to the load's weight, i.e., F = mpg.
E
cable G
cable H
F =mpg
A
Figure P3.108
Transcribed Image Text:Problem 3.108 Revisit Example 3.13 and determine the expression for the acceleration of A if the load at P is replaced by a force with magnitude equal to the load's weight, i.e., F = mpg. E cable G cable H F =mpg A Figure P3.108
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