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- Identify the zero force members (if any) in the trus P 4 m -3mIf the radius of MG transitioned curve is 875m and the good speed is 50 km/hr and Assume the equilibrium speed to be 80 km/hr, the cant excess will be one of the following options: O Ce+61.4 mm O Ce-65.4 mm O Ce= 37.1 mm O Ce-65 mmDraw the FBD for the bar described in Prob. 5.1 if the bar is homogeneous of mass 50 kg. Count the unknowns.
- asap2m dz - m. None of them اپن For the robot above, please determine Uo (the potential energy of Link #0) OU 9.8 OU = 5.6 OUo = 4,9 OU=19.6 * d₁, d₂ and ₂ are the joint variables m₂ = m₁ = m₂ = m₂ = 1 kg The moment of inertia of the last link is 3 kg.m². The mass centers are located on the middle point of each link.Solve Prob. 7.10 assuming that the pick-up truck has front-wheel drive.
- Please respond as reply as possible, USE THE DATA SHOWN IN THE TABLE. Distances are in centimeters The mechanism shown is used to carry out experimental tests on different industrial springs that are placed between the wall and point A. The rigid reinforcement that holds the spring at A moves through the horizontal beam by means of the 4 frictionless rollers. The piston CD is compressed by stretching the spring at A. For the situation in the position shown the spring is stretched a distance s and has an elongation constant of 2000N / m. The weight of the system can be considered negligible. Determine: 1.The magnitude of compressive force exerted by the piston at the position shown. 2.The magnitude of the force experienced by the bolt at E.A multiple disc clutch is used to operate the speed regulating gears of lathe. If the torque delivered by the clutch is 400 lbs. in.,evaluate the number of discs are necessary and the max. force acting on them while the clutch is in operation. Limit the disc friction surface sizes between 5 in. adn 3 in. Take the factor of safety as 2 , coefficient of friction varies from 0.150 to 0.200, and the pressure as (100-24/100) psi.A. Draw the inertia-force diagram of the systemB. Model the problem using a FOLDE. Express the equation in standard form. Take note of the indicated reference axes in the figure.C. Determine the general solution, velocity as a function of time
- Find the stable equilibrium position of the system described in Prob. 10.56 if m = 2.06 kg.Determine the following : (a) Tension in each cable when at the bottom (b) the minimum angular velocity in rpm to sustain themotion (refer to the image below)The operation of the fuel pump for an automobile depends on the reciprocating action of the rocker arm ABC, which is pinned at B and is spring loaded at A and D. The smooth cam C is in the position shown. The vertical force acting on the rocker arm at A is F₁60 N, and at C it is Fo 155 N (Eigure 1) Figure 50 mm Figure 10 mm 50 mm The operation of the fuel pump for an automobile depends on the reciprocating action of the rocker arm ABC, which is pinned at B and is spring loaded at A and D. The smooth cam C is in the position shown. The vertical force acting on the rocker arm at A is F =60 N. and at C it is Fe=155 N. (Figure 1) 20 mm- 10 mm 1 of 1 mm. 1 of 1 Part A Z Determine the and y components of the reaction force on the rocker arm ABC at the pin for equilib Express your answers using three significant figures separated by a comma. 195] ΑΣΦ | 11 | voc | B₁, B,= Submit Part B Part B Fo Submit Request Answer Determine the magnitude of the force along the spring DF for equilibrium.…