Two blocks of weights W, and W, are placed or an incline so that they are in contact. Assuming that the coefficient of static friction between block 1 and the surface of the incline is µ, and between block 2 and the surface of the is µ2, calculate the maximum angle a for which the W2 W1 system will remain in equilibrium. Assume: A) H1 = H2 B) 1 > H2 C) 1

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter7: Dry Friction
Section: Chapter Questions
Problem 7.66P: The blocks A and B of weights WA and WB are joined by a rope that passes over the fixed peg C. The...
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Two blocks of weights W, and W, are placed or
an incline so that they are in contact. Assuming
that the coefficient of static friction between
block 1 and the surface of the incline is µ,, and
between block 2 and the surface of the is µ2,
calculate the maximum angle a for which the
system will remain in equilibrium.
W,
Assume:
1
A) H1 = H2
B) 1 > H2
C) H1 < H2
Transcribed Image Text:Two blocks of weights W, and W, are placed or an incline so that they are in contact. Assuming that the coefficient of static friction between block 1 and the surface of the incline is µ,, and between block 2 and the surface of the is µ2, calculate the maximum angle a for which the system will remain in equilibrium. W, Assume: 1 A) H1 = H2 B) 1 > H2 C) H1 < H2
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