Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- Determine the magnitude and direction of the resultant of the two forces acting on the plate shown below.arrow_forwardThe bolt in (Figure 1) is fixed to its support at C. Figure B in. A 6 inarrow_forward22:39 The beam is constructed using 2 boards and 3 rows of nails spaced equally. A shear force is applied to the board. d3 d3 Variable Values for the figure are given in the following table. Note the figure may not be to scale. d₁ d₂ d3 d4 d₁ V Value 0.2 m 0.2 m wamap.org 0.08 m 0.5 m 630 N a. Determine the Qat where the boards meet. b. Determine the moment of inertia, I. c. Determine the shear flow for each nail, q. d. Determine the shear force resisted by each nail, F. Round your final answers to 3 significant digits/figures. Q = 0.07 xm³arrow_forward
- In the truss system shown in the figure below, there are totally nine bars. Pick any six of them and calculate the forces they are bearing. Put your answers in the table below. Show your analysis. E Force Compression/ Bar magnitude Tension 4 m 45° АВ AC A 7 m AD 90 BD 3 m 90° CD CF B F CE 4 m 4 m DF 30 N FEarrow_forwardFind the forces in members CK and KJ using the method of joints. Find the forces in members DE, EI, and IH using the method of sections. Each member is 10 feet long. Hint: Knowing the interior angles in a regular triangle might simplify your solution process. Report the forces to 3 significant figures. FCK magnitude only FKj magnitude only FDE magnitude only FEI magnitude only FIH magnitude only B C E A G K I H 1000 Jb 800 lb 1800 lb 600 lbarrow_forwardTwo 12 in 20.7 lb channels are latticed together to form the section in the figure. Determine how far apart the channels should be placed so as to make Ixo equal to Iyo for the section. Neglect the lattice bars which are indicated by the dashed lines. [1] Prop of 12 in. 20.7 lb channel A = 6.03 in y = 3.9 in4 X = 0.70 Ixo x = 128.1 in4 Yo Yo 0.70 q ----Xo 0.70 k -xoarrow_forward
- 4....2 Suppose that P=101lbs. What will the force Q be in this case?arrow_forwardI WOULD LIKE TO KNOW HOW TO SOLVE THE TWO PROBLEMS STEP BY STEP IN THE IMAGE ATTACHEDarrow_forwardH.W 1 A 6 m long hollow bar of circular section has 140 mm diameter for a length of 4 m, while it has 120 mm diameter for a length of 2 m. The bore diameter is 80 mm throughout as shown in Fig. 140 80 300 kN + 300 kN 80 120 4 m 2 m Find the elongation of the bar, when it is subjected to an axial tensile force of 300 kN. Take modulus of elasticity for the bar material as 200 GPa.arrow_forward
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