Figure Q1c shows a bracket on rollers that allow the bracket to move along a beam in the horizontal direction. A force F₁ of 2625 N acts at point A where the angle between F, and the x-axis is 100. If force F₂ acts at an angle a = 40° between F2 and the y-axis: (i) Determine the magnitude of F2 necessary to maintain bracket on horizontal equilibrium. (ii) Determine the vertical force at A acting along the y-axis. Give your answers to the nearest newton (N) to 2 decimal places. Assume coplanar forces and assume horizontal rolling is frictionless. F1 y २ Figure Q1c F2

International Edition---engineering Mechanics: Statics, 4th Edition
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Author:Andrew Pytel And Jaan Kiusalaas
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Chapter10: Virtual Work And Potential Energy
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Figure Q1c shows a bracket on rollers that allow the bracket to move along a beam
in the horizontal direction. A force F₁ of 2625 N acts at point A where the angle
between F, and the x-axis is 100. If force F₂ acts at an angle a = 40° between F2
and the y-axis:
(i)
Determine the magnitude of F2 necessary to maintain bracket on horizontal
equilibrium.
(ii) Determine the vertical force at A acting along the y-axis.
Give your answers to the nearest newton (N) to 2 decimal places.
Assume coplanar forces and assume horizontal rolling is frictionless.
F1
y
२
Figure Q1c
F2
Transcribed Image Text:Figure Q1c shows a bracket on rollers that allow the bracket to move along a beam in the horizontal direction. A force F₁ of 2625 N acts at point A where the angle between F, and the x-axis is 100. If force F₂ acts at an angle a = 40° between F2 and the y-axis: (i) Determine the magnitude of F2 necessary to maintain bracket on horizontal equilibrium. (ii) Determine the vertical force at A acting along the y-axis. Give your answers to the nearest newton (N) to 2 decimal places. Assume coplanar forces and assume horizontal rolling is frictionless. F1 y २ Figure Q1c F2
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