2. The block of weight W2 is being held in its position by two cylindrical rollers resting on inclined surfaces. All contact surfaces have a coefficient of static friction, u, = 0.36. W, is given from...


The block of weight W2 is being held in its position by two cylindrical rollers resting on inclined
surfaces. All contact surfaces have a coefficient of static friction, us = 0.36. W1 = 400KN.


a. What maximum value of W2 it can be before slipping of the block happens?
b. Determine the normal force reaction against the inclined surfaces.


2. The block of weight W2 is being held in its position by two cylindrical rollers resting on inclined<br>surfaces. All contact surfaces have a coefficient of static friction, u, = 0.36. W, is given from the table<br>of values.<br>Ms<br>w1 = 400 KN<br>W,<br>W,<br>W2<br>a. What maximum value of W2 it can be before slipping of the block happens?<br>b. Determine the normal force reaction against the inclined surfaces.<br>

Extracted text: 2. The block of weight W2 is being held in its position by two cylindrical rollers resting on inclined surfaces. All contact surfaces have a coefficient of static friction, u, = 0.36. W, is given from the table of values. Ms w1 = 400 KN W, W, W2 a. What maximum value of W2 it can be before slipping of the block happens? b. Determine the normal force reaction against the inclined surfaces.

Jun 11, 2022
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