uniform horizontal strut weighs 340.0 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 vall. Assume that the entire weight of the sign is attached at the very end of the strut. 30° Restaurant ind the tension in the cable (in N). 380 XN ind 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.)

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A uniform horizontal strut weighs 340.0 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.
Find the tension in the cable (in N).
980
XN
30°
Restaurant
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.)
862.1
magnitude
direction
10.02
X N
X °counterclockwise from the +x-axis
Transcribed Image Text:A uniform horizontal strut weighs 340.0 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. Find the tension in the cable (in N). 980 XN 30° Restaurant 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.) 862.1 magnitude direction 10.02 X N X °counterclockwise from the +x-axis
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