A fixed-end beam of length L is loaded by a distributed load in the form of a cosine curve with maximum intensity qo at A. a) Use the fourth-order differential equation of the deflection curve to solve for reactions at A and B and also the equation of the deflection curve b) Evaluate the rotation at L/3 for L=2 m and qo= 20 kN/m |y Io cos 2L L B
A fixed-end beam of length L is loaded by a distributed load in the form of a cosine curve with maximum intensity qo at A. a) Use the fourth-order differential equation of the deflection curve to solve for reactions at A and B and also the equation of the deflection curve b) Evaluate the rotation at L/3 for L=2 m and qo= 20 kN/m |y Io cos 2L L B
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:A fixed-end beam of length L is loaded by a distributed load in the form of a cosine
curve with maximum intensity qo at A.
a) Use the fourth-order differential equation of the deflection curve to solve for
reactions at A and B and also the equation of the deflection curve
b) Evaluate the rotation at L/3 for L=2 m and qo= 20 kN/m
|y
Io cos
2L
L
B
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