A uniform horizontal strut weighs 290.0 N. One end of the strut is attached to a hinged support at the wall, and the other end of the strut is attached to a sign that weighs 150.0 N. The strut is also supported by a cable attached between the end of the strut and the wall. Assume that the entire weight of the sign is attached at the very end of the strut. 30° Restaurant Find the tension in the cable (in N). Find the force (in N) at the hinge of the strut. (Give the direction in degrees counterclockwise from the +x-axis. Assume that the +x-axis is to the right.) magnitude direction °counterclockwise from the +x-axis

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Chapter1: Units, Trigonometry. And Vectors
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A uniform horizontal strut weighs 290.0 N. One end of the strut is attached to a hinged support at the wall, and the other end of the strut is attached
by a cable attached between the end of the strut and the wall. Assume that the entire weight of the sign is attached at the very end of the strut.
a sign that weighs 150.0 N. The strut is also supported
30°
Restaurant
Find the tension in the cable (in N).
Find the force (in N) at the hinge of the strut. (Give the direction in degrees counterclockwise from the +x-axis. Assume that the +x-axis is to the right.)
magnitude
direction
°counterclockwise from the +x-axis
Transcribed Image Text:A uniform horizontal strut weighs 290.0 N. One end of the strut is attached to a hinged support at the wall, and the other end of the strut is attached by a cable attached between the end of the strut and the wall. Assume that the entire weight of the sign is attached at the very end of the strut. a sign that weighs 150.0 N. The strut is also supported 30° Restaurant Find the tension in the cable (in N). Find the force (in N) at the hinge of the strut. (Give the direction in degrees counterclockwise from the +x-axis. Assume that the +x-axis is to the right.) magnitude direction °counterclockwise from the +x-axis
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