8. A 20 kg uniform beam 10m long is attached to a wall with a cable. The cable is attached to the middle of the beam at 90° to the beam. A box cable 40.0 box of mass 50 kg is suspended from the beam as shown. 500 а. Draw a free body diagram labelling all the forces acting on the beam (include the forces acting on the floor hinge). Choose and label an appropriate pivot point "P". Label all distances from this point. Page 21 of 23 b. Determine the tension in the cable. С. Determine the force acting on the hinge at the bottom.

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
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Chapter8: Rotational Motion
Section: Chapter Questions
Problem 90A
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8. A 20 kg uniform beam 10m long is attached to a wall with a cable. The
cable is attached to the middle of the beam at 90° to the beam. A box
cable
40.0
box
of mass 50 kg is suspended from the beam as shown.
500
а.
Draw a free body diagram labelling all the forces acting on the
beam (include the forces acting on the floor hinge). Choose and
label an appropriate pivot point "P". Label all distances from this point.
Page 21 of 23
b.
Determine the tension in the cable.
С.
Determine the force acting on the hinge at the bottom.
Transcribed Image Text:8. A 20 kg uniform beam 10m long is attached to a wall with a cable. The cable is attached to the middle of the beam at 90° to the beam. A box cable 40.0 box of mass 50 kg is suspended from the beam as shown. 500 а. Draw a free body diagram labelling all the forces acting on the beam (include the forces acting on the floor hinge). Choose and label an appropriate pivot point "P". Label all distances from this point. Page 21 of 23 b. Determine the tension in the cable. С. Determine the force acting on the hinge at the bottom.
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