A 5000 kg lorry gradually accelerates from rest. There is a box of mass 200 kg on the back of the lorry. The box is not tied to the lorry. The lorry accelerates from rest to a speed of 15 m/s over a certain distance. The maximum frictional force between the lorry and the box is 630 N. The maximum acceleration (in m/s^2) that the lorry can have without the box falling off is:

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Chapter1: Units, Trigonometry. And Vectors
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A 5000 kg lorry gradually accelerates from rest. There is a box of mass 200 kg on the back of the lorry. The box is not
tied to the lorry.
The lorry accelerates from rest to a speed of 15 m/s over a certain distance.
The maximum frictional force between the lorry and the box is 630 N.
The maximum acceleration (in m/s^2) that the lorry can have without the box falling off is:
Transcribed Image Text:A 5000 kg lorry gradually accelerates from rest. There is a box of mass 200 kg on the back of the lorry. The box is not tied to the lorry. The lorry accelerates from rest to a speed of 15 m/s over a certain distance. The maximum frictional force between the lorry and the box is 630 N. The maximum acceleration (in m/s^2) that the lorry can have without the box falling off is:
A 5000 kg lorry gradually accelerates from rest. There is a box of mass 200 kg on the back of the lorry. The box is not
tied to the lorry.
The lorry accelerates from rest to a speed of 15 m/s over a certain distance.
The maximum frictional force between the lorry and the box is 630 N.
The maximum acceleration (in m/s^2) that the lorry can have without the box falling off is:
Transcribed Image Text:A 5000 kg lorry gradually accelerates from rest. There is a box of mass 200 kg on the back of the lorry. The box is not tied to the lorry. The lorry accelerates from rest to a speed of 15 m/s over a certain distance. The maximum frictional force between the lorry and the box is 630 N. The maximum acceleration (in m/s^2) that the lorry can have without the box falling off is:
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