Determine the moment of the couple acting on the member at point A and D.
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Determine the moment of the couple acting on the member at point A and D.
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- • The length where the shear is zero (x) (jf applicable) The maximum shear load (Vmax) – positive (+) value if upward, negative (-) value if downward The maximum moment (Mmax) – indicate if CW or CCW, BEWARE: - 500 N-m CW = 500 N-m CCW Draw the shear and moment diagram in your solution sheets. Box your final answers and write your final answers on the spaces provided below. Don't forget to include the units. Unable to box your final answers, not writing your final answers on the spaces below, and/or not writing the units will void your solutions and answers.6 m 40 kN -8 m- -12 m- Figure Q3(a)Which of the following has the dimension for force M1L-3 M L -1 T-2 M-1 L1 T 2 M1 L1 T-2
- Q1 -B- Draw just the Free Body Diagram of the following figures. 30 kN/m Fig. (2) A -3 m Fig. (4) 4 kN/m + 3 m 8 kN/m 4 m -3m- 10 kN/m 3 m 2 kN/m B macam? Fig. (3) Fig. (5) N/m 3 m 3 m -3m 3 m- 80 kN/m -3 m-i li. In. O MMecnaniCS / مطلوب Untitled Section F1 F2 a F3 B. d F4 F5 Consider the following values: - a - 25 m; b - 5 m; a - 25 m; d - 5 m; F1 = 6 KN; F2 = 7 kN; F3 = 8 KN; F4 = 9 kN; F5 = 10 KN; a = 60°, 0 = 45°, B== 30° 1] What is the resultant moment of the five forces acting on the rod about point A? a) - 15.8 kN.m b) 74 kN.m c) 88 kN.m d) 59 kN.m e) 241 kN.m 0- 47 kN.m 2] What is the resultant moment of the five forces acting on the rod about point B? a) 218.8 kN.m b) – 117.8 kN.m c) - 131.6 kN.m d) 98.9 kN.m e) 125.4 kN.m f) - 224.2 kN.m 3] What is the resultant moment of the five forces acting on the rod about point C? a) 186.7 kN.m b) - 143.6 kN.m c) 114.6 kN.m d) - 217.9 kN.m e) 224.1 KN.m ) - 135.3 KN.m 4] What is the resultant moment of the five forces acting on the rod about point D? a) 217.8 kN.m b) – 139.5 kN.m c) 111.9 kN.m d) 206.9 kN.m e) - 127.1 kN.m f) 99.1 kN.m Activate 5] What is the moment of the force F2 about point E? Go to Setting f) 321.3 kN.m a) 121.7 kN.m…b. 4 m 25 kN-m B V max M max 4 m 15 kN C 4 m 7 kN/m D 3 m E X
- Q1-B- Draw just the Free Body Diagram of the following figures. 30 kN/m Fig. (2) -3 m- Fig. (4) 4 kN/m -3m- 8 kN/m 4 m -3m- TO kN/m 2 kN/m Fig. (3) Fig. (5) N/m 80 kN/mThe lifting arm shown below needs to lift a weight of 4 (N). Assuming the links are weightless, determine the magnitude of the force being applied by the pin at B on the lifting arm to the nearest hundredth of a newton. 10Em) 6icm- 150 A Servo Horn Arm 4 (W) 'Servoider Replace the three forces acting on the shaft by a single resultant force. Specify where the force acts, measured from end A.
- Find the zero force members 4 kN 3 kN 2 kN A B E 3 m F 2 m G -5 m- -5 m- -5 m-5 m- ВН, НС, DF, FC BH, DF BH, GC, DF BH, GC, DF, GH, GFA 60 mm diameter shaft AB is rigidly attached to the beam CDFH of 30 mm by 40 mm rectangular cross-section as shown in Figure Q4. The beam is pin supported at C and H. A torque of 2 kN.m (moment about z axis) is applied to end B of the shaft. Determine: (a) the reactions at supports Cand H, (b) the rotation about z axis of end B of the shaft by using Castigliano's second theorem, (c) the slope (rotation about z axis) at point C of the beam by using Castigliano's second theorem. The shaft and the beam are made of an aluminum alloy for which E = 72 GPa and G=27 GPa. Assume that the hub DF is rigid and neglect the strain energy due to transverse shear.Ques (a) A small passenger aircraft uses hydraulics to control the movement of the ailerons. master cylinder Ø30mm F slave cylinder Ø100mm Four If a force of 1kN is applied by the pilot to the 30 mm diameter master cylinder and the slave cylinder is 100 mm diameter, what force would be applied to the ailerons? 3 FO T a