C4.4 The cantilever beam AB of length L carries a distributed loading w that varies with the distance x. Given L and w(x), construct an algorithm to plot the shear force and bending moment diagrams. Use (a) L=3 m and w = (50 kN/m) sin(xx{2L); and (b) L = 5 m and 20 kN/m if x < 1.0 m W = (20 kN/m) if 1.0 m < x< 4 m 1.0 m if x > 4 m -w(x) A B

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter6: Beams And Cables
Section: Chapter Questions
Problem 6.18P: For the ladder in Prob. 6.17, find the internal force system acting on section 2, assuming that x <...
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C4.4 The cantilever beam AB of length L carries a distributed loading w that
varies with the distance x. Given L and w(x), construct an algorithm to plot
the shear force and bending moment diagrams. Use (a) L= 3 m and w =
(50 kN/m) sin(Tx/2L); and (b) L = 5 m and
20 kN/m
if x < 1.0 m
W =
(20 kN/m)
if 1.0 m < x <4 m
1.0 m
if x >4 m
-w(x)
A
В
Transcribed Image Text:C4.4 The cantilever beam AB of length L carries a distributed loading w that varies with the distance x. Given L and w(x), construct an algorithm to plot the shear force and bending moment diagrams. Use (a) L= 3 m and w = (50 kN/m) sin(Tx/2L); and (b) L = 5 m and 20 kN/m if x < 1.0 m W = (20 kN/m) if 1.0 m < x <4 m 1.0 m if x >4 m -w(x) A В
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