The pipe is stuck in the ground so that when it is pulled upward the frictional force along its length varies linearly from zero at B to fmaz (force/length) at C. The pipe has a length L, cross-sectional area Ă, and the material from which it is made has a modulus of elasticity E. fma C Part A Determine the initial force P required to pull the pipe out.

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter7: Dry Friction
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Problem 7.35P: The weight of the cylindrical tank is negligible in comparison to the weight of water it contains...
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The pipe is stuck in the ground so that when it is pulled upward the frictional force along its length varies linearly from zero at B to fmax (force/length) at C. The pipe has a length L, cross-sectional area A, and the material from which it is made has a modulus of elasticity E. Determine the initial force P required to pull the pipe out. Express your answer as an expression in terms of the variables f, L, A and E and any necessary constants.

The pipe is stuck in the ground so that when it is pulled
upward the frictional force along its length varies linearly
from zero at B to fmaz (force/length) at C. The pipe has
a length L, cross-sectional area Ã,
and the material from which it is
P
made has a modulus of elasticity
E.
B
fmex C
Part A
Determine the initial force P required to pull the pipe
out.
Express your answer as an expression in terms
of the variables f, L, A, and E and any
necessary constants.
Transcribed Image Text:The pipe is stuck in the ground so that when it is pulled upward the frictional force along its length varies linearly from zero at B to fmaz (force/length) at C. The pipe has a length L, cross-sectional area Ã, and the material from which it is P made has a modulus of elasticity E. B fmex C Part A Determine the initial force P required to pull the pipe out. Express your answer as an expression in terms of the variables f, L, A, and E and any necessary constants.
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