The collar C is fixed to rod AB using a glued bond that allows a maximum force of 405 N parallel to the axis of the rod. The collar has weight W acting in the negative z direction. Determine the weight W in N of the collar that will cause the glued bond to break as shown in figure.

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.27P: Determine the smallest horizontal force P that would push the homogeneous cylinder of weight W over...
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The collar C is fixed to rod AB using a glued bond that allows a maximum force of 405 N parallel to the axis of the rod. The collar has weight W acting in the negative z direction. Determine the weight W in N of the collar that will cause the glued bond to break as shown in figure.
X
40 cm
B
C
W
A
Z
40 cm
70 cm
The collar C is fixed to rod AB using a glued
bond that allows a maximum force of 405 N
parallel to the axis of the rod. The collar has
weight W acting in the negative z direction.
Determine the weight W in N of the collar that
will cause the glued bond to break as shown in
figure.
Transcribed Image Text:X 40 cm B C W A Z 40 cm 70 cm The collar C is fixed to rod AB using a glued bond that allows a maximum force of 405 N parallel to the axis of the rod. The collar has weight W acting in the negative z direction. Determine the weight W in N of the collar that will cause the glued bond to break as shown in figure.
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