2- A 5.00-kg block is set into motion up an inclined plane with an initial speed of 8.00 m/s. The block comes to rest after traveling 3.00 m along the plane, which is inclined at an angle of 30.0° to the horizontal. For this motion determine the hich is inclined at an kinetic energy. V₁ = 8.00 m/s A) 100 J C) -24 J E) - 30.0° B) 160 W D) -160 J 3.00m
2- A 5.00-kg block is set into motion up an inclined plane with an initial speed of 8.00 m/s. The block comes to rest after traveling 3.00 m along the plane, which is inclined at an angle of 30.0° to the horizontal. For this motion determine the hich is inclined at an kinetic energy. V₁ = 8.00 m/s A) 100 J C) -24 J E) - 30.0° B) 160 W D) -160 J 3.00m
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
Transcribed Image Text:2- A 5.00-kg block is set into motion up an inclined plane with an
initial speed of 8.00 m/s. The block comes to rest after traveling
3.00 m along the plane, which is inclined at an angle of 30.0° to
the horizontal. For this motion determine the hich is inclined at an
kinetic energy.
V₁ = 8.00 m/s
A) 100 J
C) -24 J
E) -
30.0°
B) 160 W
D) -160 J
3.00m
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