4. The path of the particle P is the ellipse defined by the relation reC 8= nt where r is expressed in metres and t is seconds, 2-Cesnt e in radians. Determine the velocity and acceleration of the particle when t= Os, t= 0.5s.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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proportional to the square of the distance r from the particle to the centre
of the force O'.
Dynamics
Pe 1
Department of mathematics
4. The path of the particle P is the ellipse defined by the relation
2-Cosnt= nt where r is expressed in metres and t is seconds,
8 in
radians. Determine the velocity and acceleration of the particle when t= 0s,
t= 0.5s.
5. Two blocks shown start from rest. The horizontal plane and the pulley are
frictionless. The pulley is assumed to be of negligible mass. Determine the
acceleration of each block and the tension in each chord.
200 kg
600kg
Transcribed Image Text:proportional to the square of the distance r from the particle to the centre of the force O'. Dynamics Pe 1 Department of mathematics 4. The path of the particle P is the ellipse defined by the relation 2-Cosnt= nt where r is expressed in metres and t is seconds, 8 in radians. Determine the velocity and acceleration of the particle when t= 0s, t= 0.5s. 5. Two blocks shown start from rest. The horizontal plane and the pulley are frictionless. The pulley is assumed to be of negligible mass. Determine the acceleration of each block and the tension in each chord. 200 kg 600kg
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