ent Attempt in Progress me drawing shows a uniform horizontal beam attached to a vertical wall by a frictionless hinge and supported from below at an angle = 40° by a brace that is attached to a pin. The beam has a weight of 340 N. Three additional forces keep the beam in equilibrium. The ace applies a force P, and the hinge applies a force with a horizontal component H and a vertical component V. (a) Draw the free- dy diagram showing the forces that act on the beam. Find the magnitudes of the forces (b) P, (c) H, and (d) V. Hinge Pin Beam 0 Brace

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Step 1
(a) Draw the free-body diagram showing the forces that act on the beam.
Use the checkboxes to select the correct vectors as instructed above. Move the vectors
to the correct starting points and orient them in the correct direction as instructed.
mg
P
T
fs
H
Draw free-body diagram here
-----
Ө
Key to Force Labels
mg -
P = Brace force
V Vertical hinge force
Gravitational force
T
= Tension
fs Static friction force
H = Horizontal hinge force
R
Transcribed Image Text:Step 1 (a) Draw the free-body diagram showing the forces that act on the beam. Use the checkboxes to select the correct vectors as instructed above. Move the vectors to the correct starting points and orient them in the correct direction as instructed. mg P T fs H Draw free-body diagram here ----- Ө Key to Force Labels mg - P = Brace force V Vertical hinge force Gravitational force T = Tension fs Static friction force H = Horizontal hinge force R
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Current Attempt in Progress
The drawing shows a uniform horizontal beam attached to a vertical wall by a frictionless hinge and supported from below at an angle
8= 40° by a brace that is attached to a pin. The beam has a weight of 340 N. Three additional forces keep the beam in equilibrium. The
brace applies a force P, and the hinge applies a force with a horizontal component H and a vertical component V. (a) Draw the free-
body diagram showing the forces that act on the beam. Find the magnitudes of the forces (b) P, (c) H, and (d) V.
Step 1
(*
Beam
Ө
PE
25
Hinge
(a) Draw the free-body diagram showing the forces that act on the beam.
Use the checkboxes to select the correct vectors as instructed above. Move the vectors
to the correct starting points and orient them in the correct direction as instructed.
O
Pin
Brace
MacBook Pro
Transcribed Image Text:View Policies Current Attempt in Progress The drawing shows a uniform horizontal beam attached to a vertical wall by a frictionless hinge and supported from below at an angle 8= 40° by a brace that is attached to a pin. The beam has a weight of 340 N. Three additional forces keep the beam in equilibrium. The brace applies a force P, and the hinge applies a force with a horizontal component H and a vertical component V. (a) Draw the free- body diagram showing the forces that act on the beam. Find the magnitudes of the forces (b) P, (c) H, and (d) V. Step 1 (* Beam Ө PE 25 Hinge (a) Draw the free-body diagram showing the forces that act on the beam. Use the checkboxes to select the correct vectors as instructed above. Move the vectors to the correct starting points and orient them in the correct direction as instructed. O Pin Brace MacBook Pro
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