Please determine the support reactions of the given beam with distributed loadings. Distributed loads at A and B is given as 1001 N/m and 1200 N/m, respectively.
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- 700N M-150UNm 2m 3m For the above dlagram, given that F, - 450 N. 0-45 degrees and d-5 m calculate the following (neglect the depth of the beam). Note that there is a pin support at A and a roller support at B. The magnitude of the horizontal component of the reaction force at A, Rar. Please provide the answer in Newtons and report to three significant figures. Please Include the unit ("N") within your answer (eg. If the calculated answer was 55.562 Newtons please Input: 55.6 N). Answer: The magnitude of the vertical component of the reaction force at A, Rar. Please provide the answer in Newtons and report to three significant figures. Please include the unit ("N") within your answer (eg. If the calculated answer was 55.562 Newtons please Input: 55.6 N). Answer: The magnitude of the horizontal component of the reaction force at B. Re. Please provide the answer in Newtons and report to three significant figures. Please Include the unit ("N") within your answer (eg. If the calculated…MA MB= Mc= MD= Required information For the beam shown, find the reactions at the supports and plot the shear-force and bending-moment diagrams. V=50 lbf/in and V2 = 7 in. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. Hinge = 1400 lbf/ A BI AC R₂ R₁ 4 in 4 in 2 in V1 Determine the values of the moments at points A, B, C, and D. lbf.in lbf.in lbf.in Ibf.in V2 D R₂5. Determine the reactions for the beam with both concentrated and distributed loads, as shown in figure below. 10 ft 1200 lb 2000 Ib 100 Ib/ft м N 4 ft 8 ft 6 ft 2 ft
- Use the graphical method to construct the shear-force and bending-moment diagrams for the beam shown. Let a = 5 m, b = 3 m, PB = 55 kN, Pc = 75 kN, and PE = 25 kN. Construct the shear-force and bending-moment diagrams on paper and use the results to answer the questions in the subsequent parts of this GO exercise. a PB Answer: Ay = i BO PB a B Pc a Calculate the reaction forces Ay and Dy acting on the beam. Positive values for the reactions are indicated by the directions of the red arrows shown on the free-body diagram below. (Note: Since Ax = 0, it has been omitted from the free-body diagram.) D Pc D a D₂ PE a PE E kN, Dy= i -x E X kN.Sample Problem: Determine the reactions for the beam loaded as shown in the figure 15 KN/m below. 12 KN 6 KN /m 3m Rz R. 1.5 mFor the beam shown, use only singularity functions. V₁ = 45 lbf/in and V/₂ = 5 in. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. 0 1400 lbf Hinge JA B₁ C R₂ R₁ 4 in 4 in 2 in V1 V2 D R₂ + What is the value of the peak moment between points Cand D? The peak moment between points C and Dis Ibf.in.
- 1 kN 12. A cantilever beam AB, loaded by a uniform load and a 320 N/m concentrated load, is constructed of a channel section. Find the maximum tensile stress o, and maximum compressive stress ac if the cross section has the dimensions indicated and the moment of inertia about the z axis (the neutral axis) is I = 130 cm*. Note: The uniform load represents the weight of the beam. 1.5 m 15 mm [ Ans : a, = 105.8 MPa ; 6e = 28.8 MPa ] 55 mmThe simple beam shown supports the uniformly distributed load with intensity wo = 300 N/m. The span of the beam is 1.2 m. Determine the value of Ely, in N-m³, at midspan. wo 1/2 RoSituation 2 | Beam ABCDEFG below is subjected to multiple loads as show. The total length of the beam is 10m. Analyze the beam completely. 6 kN 10 kN 3 kN/m 2 kN 5 kN-m G 3000mm. 1000mm 1000mm. 2000mm. 1000mm 2000mm.
- The beam shown below is supported by rollers at A and B, and by a pin at C. If EI is constant over the length of the beam, find the reaction forces at A, B, and C. 15 kip AT 6 ft B_ 6 ft 12 ft 3 kip/ft CQ2) Calculate the support reactions at A and B for the beam subjected to the two linearly distributed loads. 0.8 m w = w. + kx³ 6 kN/m 3 kN/m B 3 kN/m 6 kN/m -4 m 1.6 m 2.4 m-A beam is supported and loaded as shown. In the section of the beam between 'A' and 'B', the equation for the resisting bending moment was determined as: Mr = -6.2x²+50x. Determine the magnitude of maximum resisting bending moment (Mcmax) in the section. Note: Do NOT include units in your answer Answer: AY Fun