Problem 4.6 Consider the uniform, horizontal cantilever beam shown in Fig. 4.54. The beam is fixed at point A and a force that makes an angle ß = 63° with the horizontal is applied at point B. The magnitude of the applied force is P = 80 N. Point C is the center of gravity of the beam and the beam weighs W = 40N and has a length l= 2 m. Determine the reactions generated at the fixed end of the beam. Answers: RAX= 182.3 N-m(ccw) 36.3 N(+x), RAY= 111.3 N(+y), MA %3D A Fig 4 54

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nly to prevent modification.
Ena
Fig. 4.53 Problem 4.5
Problem 4.6 Consider the uniform, horizontal cantilever
beam shown in Fig. 4.54. The beam is fixed at point A and
nts
a force that makes an angle B= 63° with the horizontal is
ain
applied at point B. The magnitude of the applied force is
ied
P 80N. Point C is the center of gravity of the beam and
the beam weighs W = 40N and has a length /= 2 m.
Determine the reactions generated at the fixed end of the
beam.
Answers.
RAX 36.3 N(+x), RAy
= 111.3 N(+y), MA
182.3 N-m(ecw)
Fig. 4.54 Problem 4.6
Problem 4.7 Consider the L-shaped beam illustrated in
Fig. 4.55. The beam is welded to the wall at point A. the
arm AB extends in the positive direction, and the arm BC
Transcribed Image Text:nly to prevent modification. Ena Fig. 4.53 Problem 4.5 Problem 4.6 Consider the uniform, horizontal cantilever beam shown in Fig. 4.54. The beam is fixed at point A and nts a force that makes an angle B= 63° with the horizontal is ain applied at point B. The magnitude of the applied force is ied P 80N. Point C is the center of gravity of the beam and the beam weighs W = 40N and has a length /= 2 m. Determine the reactions generated at the fixed end of the beam. Answers. RAX 36.3 N(+x), RAy = 111.3 N(+y), MA 182.3 N-m(ecw) Fig. 4.54 Problem 4.6 Problem 4.7 Consider the L-shaped beam illustrated in Fig. 4.55. The beam is welded to the wall at point A. the arm AB extends in the positive direction, and the arm BC
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