QI) 28 N.m torque is needed to turn the bolt around its axis as shown in the Figure (1) below. Find the force F and the forces between the wrench's smooth face jaws and the hexagonal bolt head's corners A and B. Suppose the wrench fits on the bolt simply such that connection is only formed at corners A and B. 150 mm 14 mm Figure (1) Q2) Three cables are joined at the junction ring C. Determine the tension in cables AC and BC caused by the weight of the 30-kg cylinder. A 45 15 30 kg 20

International Edition---engineering Mechanics: Statics, 4th Edition
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Author:Andrew Pytel And Jaan Kiusalaas
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Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.97P: The figure shows a wire cutter. Determine the cutting force on the wire at A when the 75-N forces...
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H.W no. 2
Q1) 28 N.m torque is needed to turn the bolt around its axis as shown in
the Figure (1) below. Find the force F and the forces between the
wrench's smooth face jaws and the hexagonal bolt head's corners A
and B. Suppose the wrench fits on the bolt simply such that
connection is only formed at corners A and B.
150 mm
14 mm
Figure (1)
Q2) Three cables are joined at the junction ring C. Determine the tension
in cables AC and BC caused by the weight of the 30-kg cylinder.
45
15
30
30 kg
B
Figure (2)
Q3) A beam is loaded and supported as shown in Figure (3). The beam
has a uniform cross section and a mass of 20 kg. Determine the
reaction at support A and the tension T in the cable.
Transcribed Image Text:H.W no. 2 Q1) 28 N.m torque is needed to turn the bolt around its axis as shown in the Figure (1) below. Find the force F and the forces between the wrench's smooth face jaws and the hexagonal bolt head's corners A and B. Suppose the wrench fits on the bolt simply such that connection is only formed at corners A and B. 150 mm 14 mm Figure (1) Q2) Three cables are joined at the junction ring C. Determine the tension in cables AC and BC caused by the weight of the 30-kg cylinder. 45 15 30 30 kg B Figure (2) Q3) A beam is loaded and supported as shown in Figure (3). The beam has a uniform cross section and a mass of 20 kg. Determine the reaction at support A and the tension T in the cable.
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