he mechanism below has a crank that revolves clockwise at point O at a speed of 2000 rpm. B 1.2 kg 200 mm 60 mm 30° 0 Using vector diagrams, determine: a. The linear velocity of the piston and the angular velocity of the link AB about A. b. The angular acceleration of the link AB about A and the inertial resistance produced by the piston. c. Using trigonometry, confirm your results for the velocity in parts (i), explain your reasons behind which method is preferable, and identify the error margin for your velocity answers.
he mechanism below has a crank that revolves clockwise at point O at a speed of 2000 rpm. B 1.2 kg 200 mm 60 mm 30° 0 Using vector diagrams, determine: a. The linear velocity of the piston and the angular velocity of the link AB about A. b. The angular acceleration of the link AB about A and the inertial resistance produced by the piston. c. Using trigonometry, confirm your results for the velocity in parts (i), explain your reasons behind which method is preferable, and identify the error margin for your velocity answers.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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
Transcribed Image Text:The mechanism below has a crank that revolves clockwise at point O at a speed of 2000 rpm.
B
1.2 kg
200 mm
60 mm
30°
0
Using vector diagrams, determine:
a. The linear velocity of the piston and the angular velocity of the link AB about A.
b. The angular acceleration of the link AB about A and the inertial resistance produced by the
piston.
c. Using trigonometry, confirm your results for the velocity in parts (i), explain your reasons
behind which method is preferable, and identify the error margin for your velocity answers.
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