EXAMPLE Compute the maximum force P that can be applied to the foot pedal. The 14 inch diameter pin at B is in single shear, and its working shear stress is 40000psi. The cable attached at C has a diameter of 1/8 inch and a working normal stress of 20,000psi. $ 6" 10° T
EXAMPLE Compute the maximum force P that can be applied to the foot pedal. The 14 inch diameter pin at B is in single shear, and its working shear stress is 40000psi. The cable attached at C has a diameter of 1/8 inch and a working normal stress of 20,000psi. $ 6" 10° T
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![EXAMPLE
Compute the maximum force P that can be applied to the foot pedal. The 14 inch diameter
pin at B is in single shear, and its working shear stress is 40000psi. The cable attached at C
has a diameter of 1/8 inch and a working normal stress of 20,000psi.
K.R.R.P.
00
$
6"
10°
T](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F17a2fc5a-fa96-4a6f-a39e-0cd2847315b8%2F12782977-7150-4840-8475-24737dc460f9%2Fdztwo5b_processed.jpeg&w=3840&q=75)
Transcribed Image Text:EXAMPLE
Compute the maximum force P that can be applied to the foot pedal. The 14 inch diameter
pin at B is in single shear, and its working shear stress is 40000psi. The cable attached at C
has a diameter of 1/8 inch and a working normal stress of 20,000psi.
K.R.R.P.
00
$
6"
10°
T
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