The wagon and its contents weigh a total of W KN with the center of gravity at point G. Given the coefficients of static friction #s-0.4 and kinematic friction K-0.35 when the wheels are locked. For a traction load P-10 kN, find the weight W (in kN) at which the entire wagon (remains horizontal and) is at the onset of sliding.
The wagon and its contents weigh a total of W KN with the center of gravity at point G. Given the coefficients of static friction #s-0.4 and kinematic friction K-0.35 when the wheels are locked. For a traction load P-10 kN, find the weight W (in kN) at which the entire wagon (remains horizontal and) is at the onset of sliding.
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
Transcribed Image Text:The wagon and its contents weigh a total of W KN with the center of gravity at point G.
Given the coefficients of static friction μs-0.4 and kinematic friction #x-0.35 when the
wheels are locked. For a traction load P-10 kN, find the weight W (in kN) at which the
entire wagon (remains horizontal and) is at the onset of sliding.
радорот
0.9m
-G
-15 m
40.15 m
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