Draw the free body diagram and determine all the reation
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Q: Draw the free body diagram of each system
A: Free body diagram of the system 1:
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A: for solution refer below images.
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A: given:
Draw the free body diagram and determine all the reation
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- Determine the extension (m) of the whole system shown if k1 = 14.28 N/m, k2 = 28.89 N/m, k3 = 37.72 N/m, k4 = 41.16 N/m, and k5 - 51.08 N/m and a force of 65.48 N is applied. (Use 4 decimal places for the final answer.) ki ka k3 FFigure (a) shows the cross-sectional dimensions for the structural steel section known as C1020 (channel with a nominal depth of 10 in., weighing 201b/ft). The American Institute of Steel Construction Structural Steel Handbook lists the following properties for the cross section: A=5.88in.2,Ix=78.9in.4, and Iy=2.81in.4. If two of these channels are welded together as shown in Fig. (b), find Ix and Iy for the resulting cross section.Solve Prob. 7.29 if =0.
- Determine the vertical reaction at A in kN for the beam shown below, where L7m L2-2 m 0- 20 degrees P1=6 KN a1-0.5"L1m 3 kNm b2=0 1"L2 m 2-05'L2 m Assume upward is positive and give your answer to one decimal place Le LaPr4-30P) Draw shear force and bending moment diagrams of the beam. Hint : Calculate reaction forces. We suggest to use method of area for the diagrams 20 kN 8 KN/m 56 kN.m 2mDetermine the extension (m) of the whole system shown if k1 = 14.7 N/m, k2 = 21.23 N/m, k3 = 38.22 N/m, k4 = 48.78 N/m, and k5 = 52.73 N/m and a force of 62.11 N is applied. (Use 2 decimal places for the final answer.)
- 01-B- Draw just the Free Body Diagram of the following figures. 30 kN/m Fig. (2) AB -3 m- Fig. (4) 4 kN/m +3m- 8 kN/m 4 m -3 m 10 kN/m 3 m 2 kN/m B Fig. (3) Fig. (5) Nim 3 m -3m- -3 m- 80 kN/mSpecify the location of the single resultant load that can be used to replac A: 400 N/m www....mm 3m -3m- B5. Determine 8g and 03. Let q = 15 kN/m and L = 6m. LA B L 3 3 3
- 39 kN 2.5.5 0 B Sm 1. DRAO the shean and 20 kN/m 4m R. moment diagnomReplace the loading by an equivalent resultant force and specify its location on the beam, measured from point B. Given: N Wj = 12000 m W2 N w2 = 7500 a = 4 m b = 3 m 1D find FCR) ? N 2) Find + nea suye to the right from point ß to Ahe lett from point B meagure メDetermine the reactions at the beam supports for the given loading if F= 200 Ib/ft. (Round the final answer to the nearest whole number.) F1 Parabolas 100 lbvt B 12ft 6ft The reaction at the beam support Ais The moment at the beam support Ais Ib. 1 Ib-ft.