Q10: A structural steel wide-flange cross sectional shape with the Young's Modulus "E" =200 GPa and moment of inertia lxx650x106 mm cantilever beam has the loading (uniformly distributed load and moment) shown in the diagram below. Determine the beam deflection at point B due to the loading applied. 80 kN/m A B C 2 m 3 m x 150 kN-m
Q10: A structural steel wide-flange cross sectional shape with the Young's Modulus "E" =200 GPa and moment of inertia lxx650x106 mm cantilever beam has the loading (uniformly distributed load and moment) shown in the diagram below. Determine the beam deflection at point B due to the loading applied. 80 kN/m A B C 2 m 3 m x 150 kN-m
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![Q10: A structural steel wide-flange cross sectional shape with the Young's Modulus "E" =200 GPa and moment of
inertia lxx650x106 mm cantilever beam has the loading (uniformly distributed load and moment) shown in the
diagram below. Determine the beam deflection at point B due to the loading applied.
80 kN/m
A
B
C
2 m
3 m
x
150 kN-m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdd65072c-db4a-4121-bda1-a2ce07df0a4a%2Ff4c13d18-f384-43ef-ae90-81a2c16df5b4%2Fk7rzmh_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q10: A structural steel wide-flange cross sectional shape with the Young's Modulus "E" =200 GPa and moment of
inertia lxx650x106 mm cantilever beam has the loading (uniformly distributed load and moment) shown in the
diagram below. Determine the beam deflection at point B due to the loading applied.
80 kN/m
A
B
C
2 m
3 m
x
150 kN-m
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