= An object of mass m = 4.0 kg, starting from rest, slides down an inclined plane of length 3.0 m. The plane is inclined by an angle of 0 = 30° to the ground. The coefficient of kinetic friction μk = 0.2. At the bottom of the plane, the mass slides along a rough surface with a coefficient of kinetic friction μk = 0.3 until it comes to rest. The goal of this problem is to find out how far the object slides along the rough surface. 0=30° Mx=0.2 M4x=0.3 How far from the bottom of the inclined plane does the object slide along the rough surface? You can ignore the dimensions of the object and assume as a particle/point

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=
An object of mass m = 4.0 kg, starting from rest, slides down an inclined plane of
length 3.0 m. The plane is inclined by an angle of 0 = 30° to the ground. The
coefficient of kinetic friction μk = 0.2. At the bottom of the plane, the mass slides
along a rough surface with a coefficient of kinetic friction μk = 0.3 until it comes to
rest. The goal of this problem is to find out how far the object slides along the rough
surface.
0=30°
Mx=0.2
M4x=0.3
How far from the bottom of the inclined plane does the object slide along the rough surface? You can ignore the dimensions of the object and assume as a particle/point
Transcribed Image Text:= An object of mass m = 4.0 kg, starting from rest, slides down an inclined plane of length 3.0 m. The plane is inclined by an angle of 0 = 30° to the ground. The coefficient of kinetic friction μk = 0.2. At the bottom of the plane, the mass slides along a rough surface with a coefficient of kinetic friction μk = 0.3 until it comes to rest. The goal of this problem is to find out how far the object slides along the rough surface. 0=30° Mx=0.2 M4x=0.3 How far from the bottom of the inclined plane does the object slide along the rough surface? You can ignore the dimensions of the object and assume as a particle/point
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