The person on roller blades in Figure 4 is pushing on a refrigerator that sits on a cart on a level floor. Assume no force of friction exists on either the person or the refrigerator. The person has a mass of 60.0 kg, and the refrigerator has a mass of 1.2 x 10° kg. The force exerted by the person on the refrigerator is 1.8 x 10 N [forward]. Calculate the refrigerator's acceleration and the person's acceleration.

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Solving Problems Using 3rd Law
The person on roller blades in Figure 4 is pushing on a
refrigerator that sits on a cart on a level floor. Assume no force
of friction exists on either the person or the refrigerator. The
person has a mass of 60.0 kg, and the refrigerator has a mass of
1.2 x 10 kg. The force exerted by the person on the refrigerator
is 1.8 x 10° N [forward]. Calculate the refrigerator's acceleration
and the person's acceleration.
parson
Transcribed Image Text:Solving Problems Using 3rd Law The person on roller blades in Figure 4 is pushing on a refrigerator that sits on a cart on a level floor. Assume no force of friction exists on either the person or the refrigerator. The person has a mass of 60.0 kg, and the refrigerator has a mass of 1.2 x 10 kg. The force exerted by the person on the refrigerator is 1.8 x 10° N [forward]. Calculate the refrigerator's acceleration and the person's acceleration. parson
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