Given: Four masses m, m, m, and m, are 300 kg, 400 kg, 320 kg, and 340 kg respectively. The corresponding radii of rotation are 0.3 m, 0.22 m, 0.35 m, and 0.4 m respectively and the angle of rotation between successive masses are 30°, 85°, 145°. m. = 340 kg 0.4 m m, = 300 kg 0.3 m 80 180° 30 65 0.22 m 0.35 m m, = 400 kg m, = 320 kg Find the magnitude of the balance mass required, if its radius of rotation is 0.3 m Note: Moment of Centrifugal Force (Fe m(r).

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Given:
Four masses m, m2, ms, and mą are 300 kg, 400 kg. 320 kg, and 340 kg respectively.
The corresponding radii of rotation are 0.3 m, 0.22 m, 0.35 m, and 0.4 m respectively and
the angle of rotation between successive masses are 30°, 85", 145°.
m, = 340 kg
0.4 m
m, = 300 kg
0.3 m
80
180°
30°
65°
0.22 m
0.35 m
m, = 400 kg
m3 = 320 kg
Find the magnitude of the balance mass required, if its radius of rotation is 0.3 m
Note: Moment of Centrifugal Force (Fe m(r).
Transcribed Image Text:Given: Four masses m, m2, ms, and mą are 300 kg, 400 kg. 320 kg, and 340 kg respectively. The corresponding radii of rotation are 0.3 m, 0.22 m, 0.35 m, and 0.4 m respectively and the angle of rotation between successive masses are 30°, 85", 145°. m, = 340 kg 0.4 m m, = 300 kg 0.3 m 80 180° 30° 65° 0.22 m 0.35 m m, = 400 kg m3 = 320 kg Find the magnitude of the balance mass required, if its radius of rotation is 0.3 m Note: Moment of Centrifugal Force (Fe m(r).
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