SHOW COMPLETE SOLUTION PLS VALUES: X = 425
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SHOW COMPLETE SOLUTION PLS
VALUES:
X = 425
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- d. What is the location of the absolute maximum moment from the left end of the beam? (in m) e. What is the moment of inertia (I) about the neutral axis of the section? (in mm^4) f. What is the first moment of an area (Q) about the neutral axis of the section? (in mm^3)Y = 92 A = 9 C = 5 Need answers after the moment reaction at BThe slotted arm OA rotates about a fixed axis through O. At the instant under consideration, θ = 32°, θ˙ = 47 deg/s, and θ¨ = 21 deg/s2. Determine the magnited of the force F applied by arm OA and the magnitude of the force N applied by the sides of the slot to the 0.3-kg slider B. Neglect all friction, and let L = 0.64 m. The motion occurs in a vertical plane.
- Moment Distribution Method Given the continous Beam Determine the following: A. Supports Reaction b. Draw the Shear and Moment Diagram AB=3I BC=10I CD=2ITwo forces act on the screw eye. If F1 = 400 N andF2 = 600 N, determine the angle θ (0° ≤ θ ≤ 180°) betweenthem, so that the resultant force has a magnitude ofFR = 800 N.A continuous beam is loaded as shown 18. Which of the following gives the fixed end moment AB in kN-m? a. 12 kN-m b. 8 kN-m c. 10 kN-m d. 5 kN-m 2. Which of the following gives the distribution factor at B for the member BA in %? a. 33.3% b. 66.6% c. 35.47% d. 45% 3. Which of the following nearly gives the moment at B using moment distribution method in kN.m? a. 12.89 b. 13.2 c. 11.2 d. 14.6
- The force acting at A is F = 10i + 20j − 5k kN. Knowing that the moment of this force about the y-axis is 8j kN · m, determine the distance b and the moment of F about point O.An experimental device imparts a force of magni tude F = 225 N to the front edge of the rim at A to simulate the effect of a slam dunk. Determine the moments of the force F about point 0 and about point B. Finally, locate, from the base at 0, a point C on the ground where the force imparts zero moment.a. Determine the moment of ??? about point O if ??? = 150 ? b. Determine the moment of 100 N force about point D. c. Determine the moment of 20 N force about point D. d. Determine the moment of 20 N force about axis BD.
- Consider the object shown. Suppose that P = 390 N . Follow the sign convention. A) Determine the internal normal force at point C. NC = ? B) Determine the internal shear force at point C. VC = ? C) Determine the internal moment at point C. MC = ?(a) Solve the following indeterminate beam by the moment distribution method. Determine the reactions and draw the bending moment diagram. (b) If support B and support C settle downward by 0.008m and 0.004m, determine the reactions and draw the bending moment diagram. Given E=200*106 , I=10-5 . (Ans : (a) Ay=7.755, By=8.471, Cy=15.101, Dy=28.673, MAB=-6.676, MBA=5.399, MBC=-5.399, MCB=16.118, MCD=-16.118; (b) Ay=10.193, By=11.429, Cy=30.059, Dy=8.319, MAB=-13.298, MBA=-0.165, MBC=0.165, MCB=16.724, MCD=-16.724)Given a 2-D force system with geometry as shown. Find the magnitude of the equivalent couple moment (Nm) acting at O if P = 507 N , Q = 382 N, and T = 451 N . Round off only on the final answer expressed in 3 decimal places. Instead of units, indicate the direction of moment: use CW if clockwise , CCW if counterclockwise.