A block with mass m is set into motion up an inclined plane with an initial speed of v. The block comes to rest after traveling a distance of d along the plane, which is inclined at an angle of 0° to the horizontal. Note: Parts (b) through (e) will have non-numerical solutions. Your answers are expressions that may contain m, v, 0, d, and g where g is the acceleration due to gravity. (a) Draw a free-body diagram while the block is in motion along the inclined plane and mark all the forces acting on it. 3 5) A block with mass mo is set into motion up an inclined plane with an initial speed of vo. The block comes to rest after traveling a distance of d along the plane, which is inclined at an angle of 0° to the horizontal. Note: Parts (b) through (e) will have non-numerical solutions. Your answers are expressions that may contain mo,vo, 0,d, and g where g is the acceleration due to gravity. (a) Draw a free-body diagram while the block is in motion along the inclined plane and mark all the forces acting on it.
A block with mass m is set into motion up an inclined plane with an initial speed of v. The block comes to rest after traveling a distance of d along the plane, which is inclined at an angle of 0° to the horizontal. Note: Parts (b) through (e) will have non-numerical solutions. Your answers are expressions that may contain m, v, 0, d, and g where g is the acceleration due to gravity. (a) Draw a free-body diagram while the block is in motion along the inclined plane and mark all the forces acting on it. 3 5) A block with mass mo is set into motion up an inclined plane with an initial speed of vo. The block comes to rest after traveling a distance of d along the plane, which is inclined at an angle of 0° to the horizontal. Note: Parts (b) through (e) will have non-numerical solutions. Your answers are expressions that may contain mo,vo, 0,d, and g where g is the acceleration due to gravity. (a) Draw a free-body diagram while the block is in motion along the inclined plane and mark all the forces acting on it.
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
Transcribed Image Text:A block with mass m
is set into motion up an inclined plane with an initial speed of v. The block comes to rest after traveling a distance of d along the
plane, which is inclined at an angle of 0° to the horizontal. Note: Parts (b) through (e) will have non-numerical solutions. Your answers are expressions that
may contain m, v, 0, d, and g where g is the acceleration due to gravity. (a) Draw a free-body diagram while the block is in motion along the inclined
plane and mark all the forces acting on it.
3
5) A block with mass mo is set into motion up an inclined plane with an initial speed of vo. The block comes to rest
after traveling a distance of d along the plane, which is inclined at an angle of 0° to the horizontal.
Note: Parts (b) through (e) will have non-numerical solutions. Your answers are expressions that may
contain mo,vo, 0,d, and g where g is the acceleration due to gravity.
(a) Draw a free-body diagram while the block is in motion along the inclined plane and mark all the forces
acting on it.
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