From the upper corner of a ramp with a slope angle of 30 degrees, an object with a velocity of Vo is thrown horizontally on the surface. (See figure). If the length of the surface is Land its width is w: A) What is the maximum velocity Vo so that the object does not move out of the other side before reaching the end of the surface? (Ignore the dimensions of the object compared to the dimensions of the surface. Assume that the friction between the surface and the material is negligible. Take the acceleration of gravity=g). B) Get the equation of motion of the object on the surface.

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From the upper corner of a ramp with a slope angle of 30 degrees, an
object with a velocity of Vo is thrown horizontally on the surface. (See
figure). If the length of the surface is Land its width is w:
A) What is the maximum velocity Vo so that the object does not move
out of the other side before reaching the end of the surface? (Ignore
the dimensions of the object compared to the dimensions of the
surface. Assume that the friction between the surface and the material
is negligible. Take the acceleration of gravity= g).
B) Get the equation of motion of the object on the surface.
Transcribed Image Text:From the upper corner of a ramp with a slope angle of 30 degrees, an object with a velocity of Vo is thrown horizontally on the surface. (See figure). If the length of the surface is Land its width is w: A) What is the maximum velocity Vo so that the object does not move out of the other side before reaching the end of the surface? (Ignore the dimensions of the object compared to the dimensions of the surface. Assume that the friction between the surface and the material is negligible. Take the acceleration of gravity= g). B) Get the equation of motion of the object on the surface.
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