The force vector F has a magnitude of F = 385 lb and acts at point A at an angle 0 = 7.7° with respect to vertical as shown. The force F is balanced by the tension forces parallel to the two rods AC and AB such that the vector equation F + FAC + F AB = 0 is satisfied. Determine the tension forces in the two rods in Cartesian components. b B, a A BY NC SA 2013 Michael Swanbom Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 5.2 ft b 2.3 ft 3.8 ft For the component notation, use an 'xy' coordinate system with 'y' poining up and 'x' pointing to the right. F AC = j) lb F i + j) lb %3D AB =
The force vector F has a magnitude of F = 385 lb and acts at point A at an angle 0 = 7.7° with respect to vertical as shown. The force F is balanced by the tension forces parallel to the two rods AC and AB such that the vector equation F + FAC + F AB = 0 is satisfied. Determine the tension forces in the two rods in Cartesian components. b B, a A BY NC SA 2013 Michael Swanbom Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 5.2 ft b 2.3 ft 3.8 ft For the component notation, use an 'xy' coordinate system with 'y' poining up and 'x' pointing to the right. F AC = j) lb F i + j) lb %3D AB =
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Transcribed Image Text:The force vector F has a magnitude of F = 385 lb and acts at point A at an angle 0 = 7.7° with
respect to vertical as shown. The force F is balanced by the tension forces parallel to the two rods AC
O is satisfied. Determine the tension forces
and AB such that the vector equation F + F AC + F AB =
in the two rods in Cartesian components.
a
B,
A
Cc O O
BY NC SA
2013 Michael Swanbom
NF
Values for dimensions on the figure are given in the following table. Note the figure may not be to scale.
Variable Value
a
5.2 ft
b
2.3 ft
3.8 ft
For the component notation, use an 'xy' coordinate system with 'y' poining up and 'x' pointing to the right.
F AC =
j) lb
+
F AB =
j) lb
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