4. In the following figure, a box of m₂=2.0 kg appears on an inclined plane with a coefficient of kinetic friction of 0.15 that makes an angle of 30 degrees. It is connected by a string of negligible mass to a box m₁= 0.5 kg lying on a horizontal friction surface with a coefficient of kinetic friction of 0.15. A force of 2.3 N to the right is applied to the box m₁. Determine: a. b. The acceleration of the boxes and the tension in the string. The value of the force applied so that the boxes move at a constant speed. 11 F m₂

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4. In the following figure, a box of m₂= 2.0 kg appears on an inclined plane with a coefficient of kinetic
friction of 0.15 that makes an angle of 30 degrees. It is connected by a string of negligible mass to a box
m₁= 0.5 kg lying on a horizontal friction surface with a coefficient of kinetic friction of 0.15. A force of 2.3
N to the right is applied to the box m₁. Determine:
a.
b.
The acceleration of the boxes and the tension in the string.
The value of the force applied so that the boxes move at a
constant speed.
111
m₂
Transcribed Image Text:4. In the following figure, a box of m₂= 2.0 kg appears on an inclined plane with a coefficient of kinetic friction of 0.15 that makes an angle of 30 degrees. It is connected by a string of negligible mass to a box m₁= 0.5 kg lying on a horizontal friction surface with a coefficient of kinetic friction of 0.15. A force of 2.3 N to the right is applied to the box m₁. Determine: a. b. The acceleration of the boxes and the tension in the string. The value of the force applied so that the boxes move at a constant speed. 111 m₂
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