Before solving the question: Consider your 10 digits student number as ##########. Then, assign the last digit as the variable b and the one before it as a such that the variables a and b can be read from your student number as ########ab. mm 65 mm Question 1 The shaft AB is supported by a thrust bearing at A and a journal bearing at B. The length of cable CD is equal to 100 mm and 0 = 30 + 5b degrees. Determine the force in cable CD, and the bearing reactions at A and B caused by the vertical force of P = -(100 + a) k E mm Newtons applied at E. Please neglect the weights. Prioritize the procedure of the mm solution.

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 7.30P: Solve Prob. 7.29 if =0.
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a=0,b=7

Before solving the question: Consider your
10 digits student number as ##########.
Then, assign the last digit as the
variable b and the one before it as a such that
the variables a and b can be read from your
125
mm
student number as ########ab.
65 mm
Question 1
The shaft AB is supported by a thrust bearing
at A and a journal bearing at B. The length of
cable CD is equal to 100 mm and 0 = 30 + 5b
B
degrees. Determine the force in cable CD,
and the bearing reactions at A and B caused
by the vertical force of P =
E
:(100 + a) k
Newtons applied at E. Please neglect the
weights. Prioritize the procedure of the
mm
solution.
mm
P.
Transcribed Image Text:Before solving the question: Consider your 10 digits student number as ##########. Then, assign the last digit as the variable b and the one before it as a such that the variables a and b can be read from your 125 mm student number as ########ab. 65 mm Question 1 The shaft AB is supported by a thrust bearing at A and a journal bearing at B. The length of cable CD is equal to 100 mm and 0 = 30 + 5b B degrees. Determine the force in cable CD, and the bearing reactions at A and B caused by the vertical force of P = E :(100 + a) k Newtons applied at E. Please neglect the weights. Prioritize the procedure of the mm solution. mm P.
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