A particle is thrown with speed vo from the bottom of an inclined plane that makes an angle with the horizontal. The particle experiences a frictional force and a linear air resistance such that its equation of motion is d²s dt ds degsin (0) Here s is distance from the bottom of the plane, p is the air resistance constant, g is the gravitational acceleration and is the coefficient of friction. Determine the maximum vertical height from the horizontal reached by the particle.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A particle is thrown with speed vo from the bottom of an inclined plane that makes an angle with the
horizontal. The particle experiences a frictional force and a linear air resistance such that its equation of
motion is
d²s
ds
dt
dtugsin(0)
Here s is distance from the bottom of the plane, p is the air resistance constant, g is the gravitational
acceleration and is the coefficient of friction.
Determine the maximum vertical height from the horizontal reached by the particle.
Transcribed Image Text:A particle is thrown with speed vo from the bottom of an inclined plane that makes an angle with the horizontal. The particle experiences a frictional force and a linear air resistance such that its equation of motion is d²s ds dt dtugsin(0) Here s is distance from the bottom of the plane, p is the air resistance constant, g is the gravitational acceleration and is the coefficient of friction. Determine the maximum vertical height from the horizontal reached by the particle.
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