FIG. P3.25 1.5 k/ft -30 ft- Hinge -20 ft- 30 k -20 ft- B
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- Solve Problem 15 .17 for the loading shown in Fig. P15.17 and a settlement of 50 mm at support D. FIG. P15.17, P15.21Determine the pressure at A in psi gage due to the deflection of the mercury, sp gr 13.57, in the U-tube gage shown in Fig.Solve Problem 15.2 for the loading shown in Fig. P15.2 and a settlement of 12 in. at support B. FIG. P15.2, P15.6
- A gable frame is subjected to the loading shown in Fig. 10.15(a). Determine the symmetric and antisymmetric components of the loading with respect to the axis of symmetry of the frameQ) For the frame shown calculate approximate reaction at AWhen the field current in the synchronous motor decreased Select one: a. motor become more stable and PF improved from lagging to leading b. τmax and PF will decreased c. τmax and PF will increased d. τmax and PF will not affected e. motor vibrate and PF changed from leading to unity to lagging
- A 6m beam with a fixed end and supported by a roller in the right end is carrying a concentrated load at its midspan P = 20kN. What is the degree of indeterminacy? Determine the reaction in the roller support. Determine the angle of rotation at the roller support use EI = 2000kN.m2Determine the reactions at A and B when (a) h =0,(b) h=225mmFor the released structure the value of the m2 diagram at A,B,C, D is? Answer in Kip-ft
- The rectangular gate in Fig. B is hinged at B and rests on a smooth floor at A, the horizontal component of the reaction at A therefore being zero. The gate if 5 ft wide perpendicular to the paper. Determine the vertical component of the reaction at A and the horizontal and vertical components of the reaction at B for the following sets of conditions: (a) x = 6 ft, y = 8 ft, z = 0 ft; (b) x = 6 ft, y = 8 ft, z = 4 ft, (c) x = y = 8 ft, z = 10 ft, (d) x = 3 ft, y = 4ft, z = 50 ft. Draw the free body diagram and show complete solution with explanation.Determine the moment of the force with respect to point A for each of the systems shown in fig . P1-26. The 100-Ib force of Fig. P1-26a id vertical and passes through the center of the rec-tangleRequired : 1. Hydrostatic force F1 2.hydrostatic force F2 to keep the gate in vertical position 3. The density of liquid P2=?