QUESTION 2 The shaft carries four masses A, B C and D respectively. Magnitude of masses A and D respectively are 15 kg and 8 kg. The radius of A is 100 mm, B is 120 mm, 200 mm and D is 150 mm. Planes at every mass arranged 0.5 m from each other and angle between masses A and D is 90° as shown in figure. Find the magnitude and position of the masses B and C relative to the masses A in order to produce complete balance of the system. D

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.38P: The equation of the catenary shown is y = 100 cosh (x/100) where x and y are measured in feet (the...
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QUESTION 2
The shaft carries four masses A, B C and D respectively. Magnitude of masses A and D
respectively are 15 kg and 8 kg. The radius of A is 100 mm, B is 120 mm, 200 mm and D is 150
mm. Planes at every mass arranged 0.5 m from each other and angle between masses A and D is
90° as shown in figure. Find the magnitude and position of the masses B and C relative to the
masses A in order to produce complete balance of the system.
D
Transcribed Image Text:QUESTION 2 The shaft carries four masses A, B C and D respectively. Magnitude of masses A and D respectively are 15 kg and 8 kg. The radius of A is 100 mm, B is 120 mm, 200 mm and D is 150 mm. Planes at every mass arranged 0.5 m from each other and angle between masses A and D is 90° as shown in figure. Find the magnitude and position of the masses B and C relative to the masses A in order to produce complete balance of the system. D
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