dz in the figure. A load F1 6.92 N is applied and the operator applies a load P to counter. The system is in dz. equilibrium and all of the bearings d1 are perfectly aligned such that they do not produce moments on the F1 rotating crank. The geometry is given by, w = 4.96 [m], d1

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter7: Analysis Of Stress And Strain
Section: Chapter Questions
Problem 7.7.14P: Solve the preceding problem for the following data: x=1120106,y=430106,xy=780106,and=45.
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A crank shaft is operated as shown
in the figure. A load F1 = 6.92 [N]
is applied and the operator applies a
load P to counter. The system is in
equilibrium and all of the bearings
are perfectly aligned such that they
do not produce moments on the
F2
rotating crank. The geometry is
F1
given by, w = 4.96 [m], d1 =
5.55 (m), d2 = 8.11 [m], d3 =
%3D
4.59 (m), d4 = 8.03 [m], d5 =
5.85 (m], and h1 = 7.88 [m], find
the following:
Part 1. Express the reaction forces
exerted on the bar by the journal bearing
at point B. Use the coordinate system
shown in the diagram.
10
5%
100%
Submit
[N]
Part 2. Express the reaction forces
exerted on the bar by the journal bearing
at Point A. Use the coordinate system
shown in the diagram.
10
5%
100%
Submit
[N]
Please correctly solve otherwise please skip it I
don't need wrong answers
Transcribed Image Text:A crank shaft is operated as shown in the figure. A load F1 = 6.92 [N] is applied and the operator applies a load P to counter. The system is in equilibrium and all of the bearings are perfectly aligned such that they do not produce moments on the F2 rotating crank. The geometry is F1 given by, w = 4.96 [m], d1 = 5.55 (m), d2 = 8.11 [m], d3 = %3D 4.59 (m), d4 = 8.03 [m], d5 = 5.85 (m], and h1 = 7.88 [m], find the following: Part 1. Express the reaction forces exerted on the bar by the journal bearing at point B. Use the coordinate system shown in the diagram. 10 5% 100% Submit [N] Part 2. Express the reaction forces exerted on the bar by the journal bearing at Point A. Use the coordinate system shown in the diagram. 10 5% 100% Submit [N] Please correctly solve otherwise please skip it I don't need wrong answers
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