Part B. Short questions. Steps and explanations are required. 1. As shown in the figure, one end of a uniform beam of weight 250 N leans against a wall with coefficient static friction 0.50. The other end is supported by a wire that makes angles 0-23° with both wall and beam. [Answer in 3 significant figures] a) b) Construct a rigid body force diagram of the beam with appropriate labels for all forces and the distance. (Indicate the pivot point you are going to use) Find the tension in the cable,

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Chapter1: Units, Trigonometry. And Vectors
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Part B. Short questions. Steps and explanations are required.
1.
As shown in the figure, one end of a uniform beam of weight
250 N leans against a wall with coefficient static friction 0.50. The
other end is supported by a wire that makes angles 0-23° with both
wall and beam. [Answer in 3 significant figures]
a)
b)
Construct a rigid body force diagram of the beam with
appropriate labels for all forces and the distance. (Indicate the
pivot point you are going to use)
Find the tension in the cable,
Transcribed Image Text:Part B. Short questions. Steps and explanations are required. 1. As shown in the figure, one end of a uniform beam of weight 250 N leans against a wall with coefficient static friction 0.50. The other end is supported by a wire that makes angles 0-23° with both wall and beam. [Answer in 3 significant figures] a) b) Construct a rigid body force diagram of the beam with appropriate labels for all forces and the distance. (Indicate the pivot point you are going to use) Find the tension in the cable,
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