A rotating shaft carries four masses A, B, C and D which are radially attached to it. The mass centres are 30 mm, 38 mm, 40 mm and 35 mm respectively from the axis of rotation. The masses A, C and D are 8 kg, 6 kg and 5 kg respectively. The axial distances between the planes of rotation of A and B is 400 mm and between B and C is 500 mm. The masses A and C are at right anoles to each other and mass A is positioned at 0°. If the mass are balance calculate the axial distance between the planes of 2.3. rotation of C and D. 2.3. Calculate the magnitude of mass B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A rotating shaft carries four masses A, B, C and D which are radially attached
to it. The mass centres are 30 mm, 38 mm, 40 mm and 35 mm respectively
from the axis of rotation. The masses A, C and D are 8 kg, 6 kg and 5 kg
respectively. The axial distances between the planes of rotation of A and B is
400 mm and between B and C is 500 mm. The masses A and C are at right
anales to each other and mass A is positioned at 0°.
2.3.
If the mass are balance calculate the axial distance between the planes of
rotation of C and D.
2.3.
Calculate the magnitude of mass B.
Transcribed Image Text:A rotating shaft carries four masses A, B, C and D which are radially attached to it. The mass centres are 30 mm, 38 mm, 40 mm and 35 mm respectively from the axis of rotation. The masses A, C and D are 8 kg, 6 kg and 5 kg respectively. The axial distances between the planes of rotation of A and B is 400 mm and between B and C is 500 mm. The masses A and C are at right anales to each other and mass A is positioned at 0°. 2.3. If the mass are balance calculate the axial distance between the planes of rotation of C and D. 2.3. Calculate the magnitude of mass B.
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