Beam AB is a simply supported beam shown below. Where, P = 10 kN a = 2 meter b = 4 meter El = 6 x 10¹2 Nmm² A K K a L b B Based on the information presented, answer the following questions: . Using direct integration method, derive the general deflection equation for the beam AB. • Identify the position of maximum deflection on the beam AB. • Determine the maximum deflection on the beam AB (in mm).
Beam AB is a simply supported beam shown below. Where, P = 10 kN a = 2 meter b = 4 meter El = 6 x 10¹2 Nmm² A K K a L b B Based on the information presented, answer the following questions: . Using direct integration method, derive the general deflection equation for the beam AB. • Identify the position of maximum deflection on the beam AB. • Determine the maximum deflection on the beam AB (in mm).
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:Beam AB is a simply supported beam shown below.
Where,
P = 10 KN
a = 2 meter
b = 4 meter
El = 6 x 10¹2 Nmm²
A
K
K
a
*
L
b
B
Based on the information presented, answer the following questions:
. Using direct integration method, derive the general deflection equation for the beam AB.
• Identify the position of maximum deflection on the beam AB.
• Determine the maximum deflection on the beam AB (in mm).
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