6.6 A beam ABCD, 6 m long, is simply-supported at the right-hand end D and at a point B1 m from the left-hand end A. It carries a vertical load of 10 kN at A, a second concentrated load of 20 kN at C, 3 m from D, and a uniformly distributed load of 10 kN/m between C and D. Determine the position and magnitude of the maximum deflection if E = 208 GN/m² and I = 35 × 10-6 m². [3.553 m from A, 11.95 mm]

Steel Design (Activate Learning with these NEW titles from Engineering!)
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Chapter10: Plate Girders
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Problem 10.7.9P
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6.6 A beam ABCD, 6 m long, is simply-supported at the right-hand end D and at a point
B1 m from the left-hand end A. It carries a vertical load of 10 kN at A, a second
concentrated load of 20 kN at C, 3 m from D, and a uniformly distributed load of 10
kN/m between C and D. Determine the position and magnitude of the maximum
deflection if E = 208 GN/m² and I = 35 × 10-6 m². [3.553 m from A, 11.95 mm]
Transcribed Image Text:6.6 A beam ABCD, 6 m long, is simply-supported at the right-hand end D and at a point B1 m from the left-hand end A. It carries a vertical load of 10 kN at A, a second concentrated load of 20 kN at C, 3 m from D, and a uniformly distributed load of 10 kN/m between C and D. Determine the position and magnitude of the maximum deflection if E = 208 GN/m² and I = 35 × 10-6 m². [3.553 m from A, 11.95 mm]
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