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- The electric motor is used to pull a train at a maximum constant speed of 60 km/h. This motor has a power of 340 kW. The train is pulled directly up the inclination of 1 in 180. The tractive resistance against the motion is 80 N.1.Draw the free body diagram representing all forces acting on the train2.Calculate the mass of the train.Three friends ride a Ferris wheel with a diameter of 76m. Their combined mass with each car of the Ferris wheel is 389kg. When their car is at position A, the steel support applies 503N force at the car at an angle of 40degrees with the horizontal. What is the speed of the cars?A 100 pound pipe is at rest vertically, when the cable is connected to B at the force of P=50 pounds. Find the pipes angular velocity and acceleration at A. Please include FBD is necessary. Thank you. 4 ft A 3 ft P = 50 lb В 3 ft
- Q2/ Three blocks having masses of 5 kg , 10 kg and 15 kg are in contact on a fixed smooth inclined plane. calculate the force that will accelerate the block up the incline with acceleration of 16 m/sec² ? 45°Three friends ride a Ferris wheel with a diameter of 79m. Their combined mas with each car of the Ferris wheel is 357kg. When their car is at position A, the steel support applies 581N force at the car at an anggle of 40degrees with the horizontal. What is the speed of the cars?Find the force constant of the spring. Assume that the angle that the ramp makes with the horizontal is 22°. Recall that the mass of the puck is 0.180 kg and q= 9.80 m/s².
- Find the mass of the lighter body m. Take the weight of the plate, the acceleration due to gravity, the mass of the heavier body and the distance of the support from the care (L,g,M,D) to be knownIf the pulleys in the figure are weightless and frictionless, determine the acceleration weight BThe three masses in the figure are different. The planes do not have friction with the masses and the plane of mass 3 corresponds to a quarter of a circumference. All three masses are released at the same time. The masses m2 and m3 travel the same distance. The first mass that will reach the bottom of the ramp will be: m1 m2 m3 m2 and m3 m1 and m2 m1 and m3 they will all arrive at the same time
- The box with mass of 40kg has a velocity of 25 m/s when it is at point A. Calcualte time required for the box to stop. Find the distance travelled during this time.The 5.27 kg collar B rests on the frictionless arm AA! The collar is held in place by the rope attached to drum D and rotates about O in a horizontal plane. The linear velocity of the collar B is increasing according to v = 0.2 t2 where v is in m/s and tis in seconds. Find the tension in the rope and the force of the bar on .the collar if 5 s,r= 0.558 m and 0 = 58° A A' DDetermine the tension in the string and acceleration of the block A and B weighing 1200 N and 400 N connected by a string as shown n figure Assume pulleys are weightless and frictionless. A 400N 1200N (a) m/s ag m/s2 (one decimal place) (absolute value) ANS: T = N, aA =