Draw the shear and moment diagrams for the beam. ( Figure 1) Figure 8 kN/m -1.5 m- 1.5 m- 1 of 1 6 kN
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I am trying to find the moment diagram of this beam but I keep getting graphs that don't make any sence how do I correctly do this problem?
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- 3 For the beam shown, find the reactions at the supports and plot the shear-force and bending-moment diagrams. V = 9 kN, V2 = 9 kN, V3 = 200 mm, and V4 = 1100 mm. ATAT-V3 Provide values at all key points shown in the given shear-force and bending-moment diagrams. X (mm) B A = B = C = D = E= F= P = Q = E * KN * KN * KN × KN KN x KN ✩ kN.mm *kN.mm D 0.00 Reaction force R₁ (left) = In the shear-force and bending-moment diagrams given, +V 0.00 X (mm) 6.3 kN and reaction force R2 (right) = P 11.7 kN. Q 0.00Determine the internal normal force and shear force, and the bending moment in the beam at points C and D. Assume the support at B is a roller. Point C is located just to the right of the 8-kip load. For your explanation section, complete a FBD of the other side of the beam from the version you did to solve the problem. 8 kip 40 kip · ft A to to D B- 8 ft 8 ft- -8 ftDraw the shear and moment diagrams and then answer the questions. Assume w = 5.6 kN/m, a = 320 mm, b = 300 mm. A B The distance x is measured from point A to the right. Questions: Atx = 120 mm, V= i N, M= i N-m Atx = 400 mm, V= i N, M= i N•m
- Draw the shear and moment diagram for the figureDRAW THE SHEAR AND MOMENT DIAGRAMS OF THE BEAM SHOWN. SHOW YOUR COMPLETE SOLUTION WITH FIGURES. USE SHEAR AND MOMENT EQUATIONS. 150 kN/m B D 2.2 m - 2.4 m - - 2.2 m -Draw the shear and moment diagrams, then anwer the questions. The distance x is measured from point A to the right. Assume w = 460 Ib/ft, a = 3.5 ft, b = 2.8 ft. B Questions: At x = 1.1 ft, V= i 253.852 Ib, M= i 372.01 Ib-ft At x = 5.4 ft, V = -298.148 Ib, M = 268.334 Ib-ft
- Establish the Shear & Moment Equation and Diagram of the loaded beam shown. Consider the Left Body Diagram of each section in establishing the equations. Draw and label the figure properly. Locate the maximum moment and the point of inflection. Figure: 5 kN/m 5 m 12 kN 50 kN-m n D B 2.5m C 2.5 mDraw the shear and moment diagrams, then answer the questions. The distance x is measured from point A to the right. Assume w 355 lb/ft, a-3.4 ft, b=3.1 ft. Questions: Atx=1.8 ft, V- Atx=4.6 ft, V= B lb, M- lb, M= i lb-ft lb-ftPlease answer in this format. Given: Required: Loading Diagram of the beam • Shear Diagram of the beam • Moment Diagram of the beam • į in mm4 Vmax in kN Qmax in mm3 • Tmax in MPa Solution: (Please answer in detailed (step by step). Indicate labels on what you are doing/performing, for example what formula is used)
- SHEAR AND MOMENT DIAGRAM PROBLEM 2 Use the AREA method to construct the shear-force and bending-moment diagrams for the beam shown. Let a = 6.9 ft, b = 10.4 ft, c = 5.8 ft, and w = 9.5 kips/ft. Label all significant points on each diagram and identify the maximum moments (both positive and negative) along with their respective locations. Clearly differentiate straight-line and curved portions of the diagrams. Determine the maximum shear force and bending moment in the beam. Note that answers may be positive or negative. Here, "maximum" refers to the largest magnitude value, but you should enter your shear force and bending moment with the correct sign, using the sign convention. If the magnitudes of the largest positive and largest negative values are the same, enter a positive number. The roller at point D indicates that motion is restricted both up and down, and the beam will not lift off the roller. a B W b O D XDraw the Shear force and bending moment diagram for the beam as shown in figure.SHEAR AND MOMENT DIAGRAM PROBLEM 2 Use the AREA method to construct the shear-force and bending-moment diagrams for the beam shown. Let a = 6.9 ft, b = 10.4 ft, c = 5.8 ft, and w = 9.5 kips/ft. Label all significant points on each diagram and identify the maximum moments (both positive and negative) along with their respective locations. Clearly differentiate straight-line and curved portions of the diagrams. Determine the maximum shear force and bending moment in the beam. Note that answers may be positive or negative. Here, "maximum" refers to the largest magnitude value, but you should enter your shear force and bending moment with the correct sign, using the sign convention. If the magnitudes of the largest positive and largest negative values are the same, enter a positive number. The roller at point D indicates that motion is restricted both up and down, and the beam will not lift off the roller. a B W b C D X