e mechanism shown in Figure P8.1 mass of 3.0 lbm and polar mass m tia of 0.04 lb-in-sec2 about its mass ling block 2 has a constant velocity of vard. Determine the instantaneous fo d to produce this motion, assuming th are massless.
e mechanism shown in Figure P8.1 mass of 3.0 lbm and polar mass m tia of 0.04 lb-in-sec2 about its mass ling block 2 has a constant velocity of vard. Determine the instantaneous fo d to produce this motion, assuming th are massless.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Please don't copy from other sites it's wrong... Will give upvote if the answer is right
![P8.19 For the mechanism shown in Figure P8.19, link
@3 has a mass of 3.0 lbm and polar mass moment
of inertia of 0.04 lb-in-sec2 about its mass center
G3. Sliding block 2 has a constant velocity of 10 ft/
sec upward. Determine the instantaneous force F
required to produce this motion, assuming that the
sliders are massless.
rBp = 10.0 in; "BG,
= 2360 in/sec? @180°; Ö, = 392rad/sec2 CW
= 4.0 in
B2
1
G3
3
D4
1
Figure P8.19
ILL](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd4298d57-7e2e-4ecd-aedd-c3f30e33b7ab%2F15d529da-caad-456a-94c5-c2f430fb9167%2Fjb28q7_processed.jpeg&w=3840&q=75)
Transcribed Image Text:P8.19 For the mechanism shown in Figure P8.19, link
@3 has a mass of 3.0 lbm and polar mass moment
of inertia of 0.04 lb-in-sec2 about its mass center
G3. Sliding block 2 has a constant velocity of 10 ft/
sec upward. Determine the instantaneous force F
required to produce this motion, assuming that the
sliders are massless.
rBp = 10.0 in; "BG,
= 2360 in/sec? @180°; Ö, = 392rad/sec2 CW
= 4.0 in
B2
1
G3
3
D4
1
Figure P8.19
ILL
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