W1 W2 H X A B L1 L2 rectangular cross-section beam is subjected to a distributed load as shown in figure above. Assume that elasticity modulus of the material is 90 GPa, H=269 mm, B=213 mm, L1=2,3 m, L2=3,2 m, Pg=21 kN, Pc=47 kN, w1=55 kN/m and w2=22 kN/m; etermine the reaction moment (kN.m) at A. Use - sign if it has clockwise direction. termine the deflection (mm) of the beam at B. Use - sign if it has downward direction. etermine the slope (degree) at C. Use – sign if it has clockwise direction.

Steel Design (Activate Learning with these NEW titles from Engineering!)
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Author:Segui, William T.
Publisher:Segui, William T.
Chapter1: Introduction
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Problem 1.5.6P: The data in Table 1.5.3 were obtained from a tensile test of a metal specimen with a rectangular...
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A PB
Pc
W1
B
W2
H
A
B
C
L1
L2
A rectangular cross-section beam is subjected to a distributed load as shown in figure above. Assume that elasticity modulus of the material is
190 GPa, H=269 mm, B=213 mm, L1=2,3 m, L2=3,2 m, Pg=21 kN, Pc=47 kN, w =55 kN/m and w2=22 kN/m;
Determine the reaction moment (kN.m) at A. Use - sign if it has clockwise direction.
Determine the deflection (mm) of the beam at B. Use - sign if it has downward direction.
Determine the slope (degree) at C. Use - sign if it has clockwise direction.
Transcribed Image Text:A PB Pc W1 B W2 H A B C L1 L2 A rectangular cross-section beam is subjected to a distributed load as shown in figure above. Assume that elasticity modulus of the material is 190 GPa, H=269 mm, B=213 mm, L1=2,3 m, L2=3,2 m, Pg=21 kN, Pc=47 kN, w =55 kN/m and w2=22 kN/m; Determine the reaction moment (kN.m) at A. Use - sign if it has clockwise direction. Determine the deflection (mm) of the beam at B. Use - sign if it has downward direction. Determine the slope (degree) at C. Use - sign if it has clockwise direction.
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