A simply supported beam with a span 3.75 m is loaded with a uniform load 16 kN/m up to the end of the beam, and two concentrated loads 40 kN located at 1.25 m from each end of the beam. Determine the max deflection and the slope at the right end support of the beam. El is constant. E = 200 GPa, | = 11.7 x 106 mm. Use Double-Integration method.
A simply supported beam with a span 3.75 m is loaded with a uniform load 16 kN/m up to the end of the beam, and two concentrated loads 40 kN located at 1.25 m from each end of the beam. Determine the max deflection and the slope at the right end support of the beam. El is constant. E = 200 GPa, | = 11.7 x 106 mm. Use Double-Integration method.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A simply supported beam with a span 3.75 m is loaded with a uniform load 16 kN/m up to the end of
the beam, and two concentrated loads 40 kN located at 1.25 m from each end of the beam. Determine
the max deflection and the slope at the right end support of the beam. El is constant. E = 200 GPa, I =
11.7 x 10° mm. Use Double-Integration method.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fce9a2f00-2545-4e45-8d70-19de5608e09d%2F1f18d310-8043-4ed5-84ec-51bc94bcc144%2F448tqcn_processed.png&w=3840&q=75)
Transcribed Image Text:A simply supported beam with a span 3.75 m is loaded with a uniform load 16 kN/m up to the end of
the beam, and two concentrated loads 40 kN located at 1.25 m from each end of the beam. Determine
the max deflection and the slope at the right end support of the beam. El is constant. E = 200 GPa, I =
11.7 x 10° mm. Use Double-Integration method.
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