The uniform thin pole in the Figure Q6 has a weight of 300N and a length h 28 m. If it is placed against the smooth wall and on the rough floor in the position d= 12 m. The coefficient of static friction is us = 0.3. B. Figure Q6: Pole Against a Wall (a) Sketch the corresponding free body diagram of the system. (b) Solve the equation of equilibrium for EMA, EF, and F (c) Evaluate the position when it is released. Justify your answer.
The uniform thin pole in the Figure Q6 has a weight of 300N and a length h 28 m. If it is placed against the smooth wall and on the rough floor in the position d= 12 m. The coefficient of static friction is us = 0.3. B. Figure Q6: Pole Against a Wall (a) Sketch the corresponding free body diagram of the system. (b) Solve the equation of equilibrium for EMA, EF, and F (c) Evaluate the position when it is released. Justify your answer.
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![The uniform thin pole in the Figure Q6 has a weight of 300N and a length h 28 m. If it is
placed against the smooth wall and on the rough floor in the position d= 12 m. The coefficient
of static friction is us = 0.3.
B.
Figure Q6: Pole Against a Wall
(a)
Sketch the corresponding free body diagram of the system.
(b)
Solve the equation of equilibrium for EMA, EF, and F
(c)
Evaluate the position when it is released. Justify your answer.
(6)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fccf6a21f-a20e-4d1c-9f50-847c6034a65d%2Fd3528653-b0b9-49a3-a63d-6802cf64bda2%2Fg8cjmtn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The uniform thin pole in the Figure Q6 has a weight of 300N and a length h 28 m. If it is
placed against the smooth wall and on the rough floor in the position d= 12 m. The coefficient
of static friction is us = 0.3.
B.
Figure Q6: Pole Against a Wall
(a)
Sketch the corresponding free body diagram of the system.
(b)
Solve the equation of equilibrium for EMA, EF, and F
(c)
Evaluate the position when it is released. Justify your answer.
(6)
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