Q2: The simply supported beam shown as Figure 5. below is subjected to Loading as shown on the Figure. Using integration method. Find the maximum Lenght (L) so that the max. deflection is not greater than 30mm for the Beam.. The flexural rigidity (El) of Beam section El = 50*10% KN.m? “4m e | Sm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Q2: The simply supported beam shown as Figure 5. below is subjected to Loading as shown on the Figure. Using integration method. Find the maximum Lenght (L) so that the max. deflection is not greater than 30mm for the Beam.. The flexural rigidity (El) of Beam section El = 50*10% KN.m? “4m e | Sm
Q2: The simply supported beam shown as
Figure 5. below is subjected to Loading as
shown on the Figure. Using integration
method. Find the maximum Lenght (L) so
that the max. deflection is not greater than
30mm for the Beam.. The flexural rigidity (EI)
of Beam section El = 50*10³ KN.m²
2KN/m
10 kN
20 kN
5m
L
Transcribed Image Text:Q2: The simply supported beam shown as Figure 5. below is subjected to Loading as shown on the Figure. Using integration method. Find the maximum Lenght (L) so that the max. deflection is not greater than 30mm for the Beam.. The flexural rigidity (EI) of Beam section El = 50*10³ KN.m² 2KN/m 10 kN 20 kN 5m L
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