The beam in the figure below is perpendicular to the wall and supported at the wall by a hinge at point A. The beam is also supported by a cable with an attachement point on the beam at distance "m" from the wall. The cable is attached to the wall at a distance "l" above point A. The beam is subject to an applied load "W" at point B as well as the beam's own weight "Wb" which acts at the mid-point between points A and B. The beam is also subject to an applied moment Mc with direction as shown on the figure. length AB = 20 meters, length m = 4 meters, length l = 10 meters; weight W = 100 Newtons, weight Wb = 10 Newtons; applied moment Mc = 200 Newton*meters
The beam in the figure below is perpendicular to the wall and supported at the wall by a hinge at point A. The beam is also supported by a cable with an attachement point on the beam at distance "m" from the wall. The cable is attached to the wall at a distance "l" above point A. The beam is subject to an applied load "W" at point B as well as the beam's own weight "Wb" which acts at the mid-point between points A and B. The beam is also subject to an applied moment Mc with direction as shown on the figure.
length AB = 20 meters, length m = 4 meters, length l = 10 meters; weight W = 100 Newtons, weight Wb = 10 Newtons; applied moment Mc = 200 Newton*meters
What is the magnitude and direction of the vertical support force exerted by the hinge support on the beam?
![B
A
Km->
hinge Support
cable](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc618d345-2f4b-4ba3-b2cb-33f4f1942e28%2Fe19bc479-ad00-4a02-bc7f-e9d7b116fa18%2Flhp75cp_processed.png&w=3840&q=75)
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