Q. 2. A spherical object is projected up a slope at angle 0 with initial velocity v. How long will the spherical object take to return to its initial position? Assume frictionless motion. Q. 3. A particle is moving in an elliptical path and its motion is described by the following equations x = a cosha.cose and y = a sinha sin® (a 20 and 0 <0 S 2n) Where a is constant. Find kinetic energy of the particle.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 31P: Figure P3.31 represents the total acceleration of a particle moving clockwise in a circle of radius...
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Q. 2. A spherical object is projected up a slope at angle 0 with initial velocity v. How long will
the spherical object take to return to its initial position? Assume frictionless motion.
Q. 3. A particle is moving in an elliptical path and its motion is described by the following
equations
x = a cosha.cose and y = a sinha sine (a 20 and 0 s 0< 2n)
Where a is constant. Find kinetic energy of the particle.
Transcribed Image Text:Q. 2. A spherical object is projected up a slope at angle 0 with initial velocity v. How long will the spherical object take to return to its initial position? Assume frictionless motion. Q. 3. A particle is moving in an elliptical path and its motion is described by the following equations x = a cosha.cose and y = a sinha sine (a 20 and 0 s 0< 2n) Where a is constant. Find kinetic energy of the particle.
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