Q3) Determine the reactions at the supports pin at B and roller at A. 6 kN/m A 3 m 6 m B
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The load is triangular, with a maximum intensity of 6 kN/m and a base of 6 m. The total load is given by the area of the triangle: $Total Load = \frac{1}{2} \times base \times height = \frac{1}{2} \times 6 m \times 6 kN/m = 18 kN$ Show more…
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Bcrypt_Sha256$$2B$12$We1Wwocamog01O5I.V2Tkouxdh4Ofnmgpwkor7Leaonfpu0Ubfpua Bcrypt_Sha256$$2B$12$We1Wwocamog01O5I.V2Tkokttmmj7Lscvwvlptp4Rlhbswcdg9.Wy and 55 other Physics 101 Mechanics educators are ready to help you.
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5-17. Determine the reactions at the roller A and pin B.
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Determine the reactions at the roller support at A and pin support at B.
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Calculate the reactions at the supports A and B. Roller support at A and pin support at B. 40 kN 6m B 8m 12m a) RA=40 kN, Bx=66.67 kN and By=-40 kN b) RA=36.67 kN, Bx=46.67 kN and By=-40 kN c) RA=26.67 kN, Bx=26.67 kN and By=-40 kN d) RA=66.67 kN, Bx=36.67 kN and By=-40 kN
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