The horizontal motion of the spring-loaded follower E, which is always in contact cylinder F. The follower has a velocity of 2 m/s to the right when angle 9 = 30°. Cam with the cam A is controlled by the air pressure in the horizontal pneumatics Follower 100 200 Figure 2: Follower-cam mechanisms Calculate the downwards velocity of the roller D in the vertical guide and the angular velocity of the link ABD for this position. If the initial velocity of the fallower E is zero when angle e 30° and reaches the final velocity of 2 m/s after 0.5 seconds, calculate the acceleration of the roller D.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The horizontal motion of the spring-loaded follower E, which is always in contact
cylinder F. The follower has a velocity of 2 m/s to the right when angle 9 = 30°.
Cam
with the cam A is controlled by the air pressure in the horizontal pneumatics
Follower
100
200
Figure 2: Follower-cam mechanisms
Calculate the downwards velocity of the roller D in the vertical guide and the
angular velocity of the link ABD for this position.
If the initial velocity of the follower E is zero when angle e 30° and reaches the
final velocity of 2 m/s after 0.5 seconds, calculate the acceleration of the roller D.
Transcribed Image Text:The horizontal motion of the spring-loaded follower E, which is always in contact cylinder F. The follower has a velocity of 2 m/s to the right when angle 9 = 30°. Cam with the cam A is controlled by the air pressure in the horizontal pneumatics Follower 100 200 Figure 2: Follower-cam mechanisms Calculate the downwards velocity of the roller D in the vertical guide and the angular velocity of the link ABD for this position. If the initial velocity of the follower E is zero when angle e 30° and reaches the final velocity of 2 m/s after 0.5 seconds, calculate the acceleration of the roller D.
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