A 1 m B -1 m C 600 N/m
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Determine the reactions at A and the forces in the pin at B.
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1 m
B
-1 m
C
600 N/m"
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- The pipe assembly of the figure is supported by a fixed support at point A. A couple-moment and a force are applied at points B and C, respectively. In Cartesian coordinates, the applied couple-moment is MB = -150 k N-m, and the applied force is Fc = + 200ĵ Newtons. You may neglect the weight of the pipe assembly. 1. Draw a FBD which is suitable for solution of this problem, when seeking the unknown force and moment reactions at the fixed support, Point A. You may use the existing drawing given below. Your FBD must clearly/correctly show the force and moment reaction vectors. Use double arrowheads to distinguish moment vectors from force vectors. 2. Calculate F°MA, which is the moment generated at A due to the force applied at Point C. 3. Write the equations of equilibrium and solve to find the reactions at Point A. Specifically, find the force-reaction vector, A and the moment-reaction vector, *MA-Perform unit conversion. 1432 cm^3 to L1-The magnitude of N2 (normal force on Surface-2) is _____N 2-The magnitude of F2 (friction force on Surface-2) is _____N. 3- Consider the FBD of the Wedge: The direction of N2 (normal force on Surface-2) is _____degrees. Please need help. use that fig to respond to questions 1, 2, 3
- |20 kN 15 kN/m A 2 m 4 m B.1. The car engine has a torque of 0.4 kNm at 2000 rpm (rev/min). What is the power (kW) at this time?A robotic-wheeled vehicle that contains science instruments is used to study the geology of Mars. The rover weighs 416 lb on Earth. a. In the USCS dimensions of slugs, what is the rover's mass? (Express your answer using four significant figures.) slugs m = In the USCS dimensions of lbm, what is the rover's mass? (Express your answer using three significant figures.) |lbm m = b. What is the weight of the rover as it rolls off the lander's platform (the lander is the protective shell that houses the rover during landing)? The gravitational acceleration on the surface of Mars is 12.3 ft/s?. (Express your answer using four significant figures.) w = lb
- Plz solve it as soon as possibleA differential equation encountered in the vibration of beams is d4ydx4=2D where x = distance measured along the beam; [x]=[L] y = displacement of the beam; [y]=[L] = circular frequency of vibration; []=[T1] = mass of the beam per unit length; []=[ML1] D = bending rigidity of beam; [D]=[FL2] Show that the equation is dimensionally homogeneous. Note that [F]=[MLT2] see Eq. (1.21:).Question 1 Gas, 20 "WC 110" 40" S.G 0.88 50" S.G-1.03 10 A differential pressure transmitter is used for the measurement of liquid level in a process vessel (dry leg), as shown. Determine the transmitter pressure reading in "WC? Blank #1: LT = "WC (Include polarity in the answer, blank for positive, - for negative)
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