A force P of magnitude 1,100 N is applied to the pedal shown satisfies a shearing stress in the pin is 42 MPa. a. Determine the reaction (in N) at the hinge at C. b. Determine the diameter of the pin at C in mm. c. Determine the corresponding bearing stress in the pedal at C in MPa. d. Determine the corresponding bearing stress in each support bracket at C in MPa. 9 mm H 11€ |||| 5 mm A 75 mm 125 mm B C 300 mm PI D
A force P of magnitude 1,100 N is applied to the pedal shown satisfies a shearing stress in the pin is 42 MPa. a. Determine the reaction (in N) at the hinge at C. b. Determine the diameter of the pin at C in mm. c. Determine the corresponding bearing stress in the pedal at C in MPa. d. Determine the corresponding bearing stress in each support bracket at C in MPa. 9 mm H 11€ |||| 5 mm A 75 mm 125 mm B C 300 mm PI D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:A force P of magnitude 1,100 N is applied to the pedal shown satisfies a shearing stress in the pin is 42 MPa.
a. Determine the reaction (in N) at the hinge at C.
b. Determine the diameter of the pin at C in mm.
c. Determine the corresponding bearing stress in the pedal at C in MPa.
d. Determine the corresponding bearing stress in each support bracket at C in MPa.
9 mm
H
11€
||||
5 mm
A
75 mm
125 mm
B
C
300 mm
PI
D
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