Determine the horizontal and vertical components of reaction at the pin A and the reaction of the rocker B on the beam. 6 m. 4 kN -2 m B 30°
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- Determine the shear force V in the beam at a point located 1.00 m to the right of point B. The ground reactions are provided.By = 300 kNCy = 125 kNDetermine the following: 1. Maximum positive (upward) reaction at B2. Maximum positive moment at C3.Maximum negative shear at C1.) What is the vertical reaction at A and B?2.) What is the horizontal and moment reaction B3.) What is the maximum positive moment in the beam?(kN-m)4.) What is the location of the maximum positive moment from point A? (m) 5.) What is the shear at a point between A and C?6.) What is the moment at a point under the concentrated load?
- Determine the reaction at support A and B?4.What is the minimum bending moment in the loaded beam, in kN m? (aside from zero)5.What is the maximum bending moment in the loaded beam, in kN m?6.What is the vertical reaction at the hinge support, in kN?The pole is subjected to the two forces F1 = 860 N and F2 = 450 N in the direction as shown inFigure 1. On the ground, the pole is supported by two cables CB and ED. (a) Determine the components of reactions at the base of a pole, A assuming it to be aball-and-socket joint.
- Draw the normal force, shear force and moment diagram of the structure AB = 2 m, BC = 1 m, CD = DE = 2 mA 5 m long cantilever beam carries a uniform load of 5 KN/m on the 3 m portion of the beam from the free end and a counterclockwise couple of 60 KN -m acting at 1 m from the fixed support. Which of the following nearly gives the value the vertical reaction at the fixed point in KN and the value of the moment at midspan? Vertical fixed point: a. 15kn b. 20kn c. 5kn d. 10kn moment at midspan a. 22.5kn b. 45kn c. 15knThe largest positive moment occurs at span BC. What is the value of the maximum positive moment? a. 60.79 kN-m b. 54.145 kN-m c. 55.79 kN-m d. 45.79 kN-m The maximum positive moment occurs at span BC. It is located at a distance_______ from the support B. a. 3.224 m b. 3 m c. 3.274 m d. 3.554 m
- In the beam shown, take P1 = 4 kN, P2 = 7 kN, and W1 = 5 kN/m. a) Determine the vertical reaction at "A" b) Determine the vertical reaction at "B" c) Determine the shear at X1 d) Determine the shear at X2 e) Determine the moment at X2determine the moment (m-kN) about point A due to the 3 kN and the two 17 kN forces.Determine the horizontal and vertical components of reaction at pins A, B, and C of the two-member frame.