The drawing shows a uniform horizontal beam attached to a vertical wall by a frictionless hinge and supported from below at an angle 0 = 36° by a brace that is attached toa pin. The beam has a weight of 334 N. Three additional forces keep the beam in equilibrium. The brace applies a force P to the right end of the beam that is directed upward at the angle 0 with respect to the horizontal. The hinge applies a force to the left end of the beam that has a horizontal component H and a vertical component V. Find the magnitudes of these three forces. Beam Hinge Pin Brace (a) V = (b) P = i (c) H =i

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
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The drawing shows a uniform horizontal beam attached to a vertical wall by a frictionless hinge and supported from below at an
angle 0 = 36° by a brace that is attached toa pin. The beam has a weight of 334 N. Three additional forces keep the beam in
equilibrium. The brace applies a force P to the right end of the beam that is directed upward at the angle 0 with respect to the
horizontal. The hinge applies a force to the left end of the beam that has a horizontal component H and a vertical component V.
Find the magnitudes of these three forces.
Hinge Beam
Pin
Brace
(a) V =i
(b) P = i
(c) H =
Transcribed Image Text:The drawing shows a uniform horizontal beam attached to a vertical wall by a frictionless hinge and supported from below at an angle 0 = 36° by a brace that is attached toa pin. The beam has a weight of 334 N. Three additional forces keep the beam in equilibrium. The brace applies a force P to the right end of the beam that is directed upward at the angle 0 with respect to the horizontal. The hinge applies a force to the left end of the beam that has a horizontal component H and a vertical component V. Find the magnitudes of these three forces. Hinge Beam Pin Brace (a) V =i (b) P = i (c) H =
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