a) Use the principle of virtual work to determine the rotation at Support B. (The postive direction of a rotation is clockwise. Present the result to 4 decimal places) _______ Radian
a) Use the principle of virtual work to determine the rotation at Support B. (The postive direction of a rotation is clockwise. Present the result to 4 decimal places) _______ Radian
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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I need help on this question:
a) Use the principle of virtual work to determine the rotation at Support B. (The postive direction of a rotation is clockwise. Present the result to 4 decimal places) _______ Radian
![For the beam shown in Fig.Q4, use the principle of virtual work to determine (1) the vertical
deflection at Point C, and (2) the rotation at the right-hand bearing (Point B). The Young's
modulus of the material is E = 200 GPa. The cantilever beam has a circular cross section
with the second moment of area / = 30 x 10-6 m4. The beam is under a uniformly
distributed load q=14 kN/m at the AB span and a point force P=35 kN at Point C. The
length of AB span is L=4 m and the length of BC span is L₁ =1.6 m.
(In this question, we assume (1) the positive direction of a vertical force points upwards;
(2) the positive direction of a horizontal force points to the right; and (3) the postive
direction of an applied moment is clockwise .)
L
АД
Boo
L₁
р
C](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F507f99da-9967-4c1f-a8fd-4e55d78bcba3%2Fa8188cad-ca61-44f0-aa74-52c76081f376%2F1onue47_processed.png&w=3840&q=75)
Transcribed Image Text:For the beam shown in Fig.Q4, use the principle of virtual work to determine (1) the vertical
deflection at Point C, and (2) the rotation at the right-hand bearing (Point B). The Young's
modulus of the material is E = 200 GPa. The cantilever beam has a circular cross section
with the second moment of area / = 30 x 10-6 m4. The beam is under a uniformly
distributed load q=14 kN/m at the AB span and a point force P=35 kN at Point C. The
length of AB span is L=4 m and the length of BC span is L₁ =1.6 m.
(In this question, we assume (1) the positive direction of a vertical force points upwards;
(2) the positive direction of a horizontal force points to the right; and (3) the postive
direction of an applied moment is clockwise .)
L
АД
Boo
L₁
р
C
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