2.3 A truck, mass 4 000 kg, pulls a car, mass 1 100 kg, using a lig rope as shown in the diagram. The inelastic rope for

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2.3 A truck, mass 4 000 kg, pulls a car, mass 1 100 kg, using a lig rope as shown in the diagram. The inelastic rope for

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2 3 A Truck Mass 4 000 Kg Pulls A Car Mass 1 100 Kg Using A Lig Rope As Shown In The Diagram The Inelastic Rope For 1
2 3 A Truck Mass 4 000 Kg Pulls A Car Mass 1 100 Kg Using A Lig Rope As Shown In The Diagram The Inelastic Rope For 1 (159.65 KiB) Viewed 9 times
2 3 A Truck Mass 4 000 Kg Pulls A Car Mass 1 100 Kg Using A Lig Rope As Shown In The Diagram The Inelastic Rope For 2
2 3 A Truck Mass 4 000 Kg Pulls A Car Mass 1 100 Kg Using A Lig Rope As Shown In The Diagram The Inelastic Rope For 2 (41.47 KiB) Viewed 9 times
2.3 A truck, mass 4 000 kg, pulls a car, mass 1 100 kg, using a lig rope as shown in the diagram. The inelastic rope forms an angle of 30° with the horizontal. The two vehicles move to the right on a straight, horizontal road. The truck's engine applies a force F of 18 000 N on the truck. 1 100 kg 4 000 kg 30° F = 18 000 N OO A frictional force of 1 617 N is acting on the car and a frictional force of 5 880 N is acting on the truck.
car. 2.3.3 Calculate the magnitude of the car's acceleration.
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