· dx3 all the above a point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin...

20

Upload: others

Post on 16-Mar-2020

0 views

Category:

Documents


0 download

TRANSCRIPT

Page 1:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 2:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 3:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 4:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 5:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 6:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 7:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 8:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 9:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 10:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 11:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 12:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 13:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 14:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 15:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 16:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 17:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 18:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 19:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,
Page 20:  · dx3 All the above A point moves according to the relation x = 8t2 cos (at), y = —4 t3 sin (at), where x and y are in meters, and t in seconds. If angular velocity 8m rad/sec,