A strut is attached to the wall with a pin that allows free rotation about point O in the x-y plane, as shown in the figure below. Two forces F₁ and F2 are applied at points P and Q, respectively. Force ₁ has a magnitude F₁ = 350 lb, an angle 01 85°, and acts L₁ = 7 in from point O. Force F2 has an angle 02 = 33° and acts L2= 25 in from point O. Determine the magnitude of force F2 such that the strut remains stationary. - - у Lox F₂= 4₁ number (rtol=0.01, atol=1e-05) L₂ lb F₁ Q F₂ 02

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HW1.6. 2D Moment balance
A strut is attached to the wall with a pin that allows free rotation about point O in the x-y plane, as shown in
the figure below. Two forces F and F2 are applied at points P and Q, respectively. Force ₁ has a magnitude
F₁ = 350 lb, an angle 0₁ = 85°, and acts L₁ = 7 in from point O. Force F2 has an angle 02 33° and acts
L2= 25 in from point O. Determine the magnitude of force F2 such that the strut remains stationary.
Y
L.
O
X
4₁
F₂ = number (rtol=0.01, atol=1e-05)
L₂2₂
ڈے
P
lb
0₁
1
F₁
1
Q
F₂
02
Transcribed Image Text:HW1.6. 2D Moment balance A strut is attached to the wall with a pin that allows free rotation about point O in the x-y plane, as shown in the figure below. Two forces F and F2 are applied at points P and Q, respectively. Force ₁ has a magnitude F₁ = 350 lb, an angle 0₁ = 85°, and acts L₁ = 7 in from point O. Force F2 has an angle 02 33° and acts L2= 25 in from point O. Determine the magnitude of force F2 such that the strut remains stationary. Y L. O X 4₁ F₂ = number (rtol=0.01, atol=1e-05) L₂2₂ ڈے P lb 0₁ 1 F₁ 1 Q F₂ 02
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