To determine the reaction forces at supports on a horizontal beam by using the equations of equilibrium for a static application. As shown, beam ABC is supported by the roller at A and pin at C. The geometry of the beam is given by a=4.5a=4.5 ftft, b=6.5b=6.5 ftft, and c=10.0c=10.0 ftft. The applied forces are F1=1.40F1=1.40 kipkip and F2=2.00F2=2.00 kipkip. Force F1F1 is applied at an angle θ=60∘θ=60∘ with the horizontal. Neglect the weight of the beam.(Figure 1) 1. Determine the vertical reaction at A. 2. Determine the horizontal component of the pin reaction at C. 3. Determine the vertical component of the pin reaction at C.

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter8: Engineering Materials
Section: Chapter Questions
Problem 85CQ
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To determine the reaction forces at supports on a horizontal beam by using the equations of equilibrium for a static application.
As shown, beam ABC is supported by the roller at A and pin at C. The geometry of the beam is given by a=4.5a=4.5 ftft, b=6.5b=6.5 ftft, and c=10.0c=10.0 ftft. The applied forces are F1=1.40F1=1.40 kipkip and F2=2.00F2=2.00 kipkip. Force F1F1 is applied at an angle θ=60∘θ=60∘ with the horizontal. Neglect the weight of the beam.(Figure 1)
1. Determine the vertical reaction at A.
2. Determine the horizontal component of the pin reaction at C.
3. Determine the vertical component of the pin reaction at C.
 
y
F1
A
В
a-
F2
Transcribed Image Text:y F1 A В a- F2
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ISBN:
9781111988609
Author:
Charles Gilmore
Publisher:
Cengage Learning