Question 2 The trailer with its load has a mass of 200 kg and a center...
The trailer with its load has a mass of 150 kg and a center of mass at G. If it is subjected to a horizontal force of P = 600N, determine the normal force on the pair of wheels (in Newtons) at A. The wheel are free to roll without friction and have a negligible mass. Please answer to four significant figures. Thank you a lot! :) The trailer with its load has a mass of 150 kg and a...
The trailer with its load has a mass of 150 kg and a center of mass at G. If it is subjected to a horizontal force of P = 600N, determine the normal force on the pair of wheels in Newtons) at B. The wheel are free to roll without friction and have a negligible mass. P=600 N 1.25 m 0.25 m 0.25 m 0.5 m B -1.25 m 0.75 m
The trailer with its load has a mass of 150 kg and a center of mass at G. If it is subjected to a horizontal force of P = 600N, determine the normal force on the pair of wheels in Newtons) at B. The wheel are free to roll without friction and have a negligible mass. P=600 N 1.25 m 0.25 m 0.25 m 0.5 m B -1.25 m 0.75 m
QUESTION 11 1.50 m 0.25 m 0.25 m 0.5 m 0.75 m -1.25 m The trailer with its load has a mass of 143.97 kg and at the center of mass G. If it is subjected to a horizontal force of P - 758.61 N, determine the normal force NA (N) at wheel A, if the acceleration (aGk10.55 m/s2 at G. Use the equation of motion for moment EMg - megd. The wheels are free to roll and have negligible...
Problem 3 The mass of the trailer in the figure is 750 kg and is being hitched by a car linked to the trailer at point P. The road is horizontal and the two identical tires can be considered as one, with a single normal reaction and negligible frictional force; the air resistance will also be neglected. (a) Compute the normal force in the tires and the vertical force at point P, when the speed is constant. (b) When the...
4. The car has mass of 2600 kg and center of mass at G. It has front wheel drive and the front wheels at A are slipping. The back wheels at B are free to rotate. Neglect the mass of the wheels. The coefficient of kinetic friction between the wheels and the road is plk = 0.85 Find: a. a, the acceleration of the car b. na, the total normal force on the front wheels C. No, the total normal...
17-87. The tractor has a mass of 900 kg, excluding the rear wheels. The mass center is located at G. Each of the rear wheels has a mass of 50 kg and a radius of gyration A-0.7 m. If the tractor coasts freely down the 10° slope, determine its velocity when -5s starting from rest. For the calculation, neglect the mass of the front wheels B and the effects of friction at these wheels. The rear wheels roll without slipping...
Planar Kinetics of a rigid body- Translation Q5: The dragster has a mass of 1500 kg and a centre of mass at G. If no slipping occurs. Neglect the mass of the wheels and assume that the front wheels are free to roll. a. Determine the frictional force Fa which must be developed at each of the rear drive wheels B in order to create an acceleration of a m/s. 6 b. What are the normal reactions of each wheel...
A box with mass M=10 kg is on the back of a trailer and it has the coefficient of friction μ=0.2 with the back of the trailer. a) What is the maximum possible acceleration a=? of the truck such that the box does not slip on the back of the truck? b) If the truck moves with acceleration A=100 m/s such that the box slips on the back of the truck, with that acceleration will the box move on the...
The sports car has a mass of 1500 kg and a center of mass at G. Determine the shortest time it takes for it to reach a speed of 20 m/s, starting from rest, if the engine only drives the rear wheels, whereas the front wheels are free rolling. The coefficient of friction between the wheels and road is μ 0.2. Neglect the mass of the wheels for the calculation 0.35m 0,33m ZTUrt22.27 g-ru, al. iat 4 k's /ldi suk....