Q2: A, B, C and D are four masses carried by a rotating shaft at radii 100, 125, 200 and 150 mm respectively. The planes in which the masses revolve are spaced 600 A B mm apart and the mass of A, B and C are 7kg, 10 kg, and 5 kg respectively. Find +600-+600–→600→ the required mass D and the relative angular settings of the four masses so that the shaft shall be in complete balance.
Q2: A, B, C and D are four masses carried by a rotating shaft at radii 100, 125, 200 and 150 mm respectively. The planes in which the masses revolve are spaced 600 A B mm apart and the mass of A, B and C are 7kg, 10 kg, and 5 kg respectively. Find +600-+600–→600→ the required mass D and the relative angular settings of the four masses so that the shaft shall be in complete balance.
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter6: Beams And Cables
Section: Chapter Questions
Problem 6.78P: The chain OA is 25 ft long and weighs 5 lb/ft. Find the maximum force in the chain and the distance...
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![Q2: A, B, C and D are four masses carried by a rotating shaft at radii 100, 125, 200
and 150 mm respectively. The planes in
which the masses revolve are spaced 600
A
B
mm apart and the mass of A, B and C are
7kg, 10 kg, and 5 kg respectively. Find
+600 -600→+600→
the required mass D and the relative
angular settings of the four masses so that
the shaft shall be in complete balance.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F472d0f66-d7b8-40ec-b3f6-a22ce2008c22%2F89af87c0-b0b1-43bc-b48b-5d99778df5cd%2Fg8v8fdd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q2: A, B, C and D are four masses carried by a rotating shaft at radii 100, 125, 200
and 150 mm respectively. The planes in
which the masses revolve are spaced 600
A
B
mm apart and the mass of A, B and C are
7kg, 10 kg, and 5 kg respectively. Find
+600 -600→+600→
the required mass D and the relative
angular settings of the four masses so that
the shaft shall be in complete balance.
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