The shaft shown in Fig. 18.43 carries two masses. The mass A is 300 kg with a radius of gyration of 0.75 m and the mass B is 500 kg with a radius of gyration of 0.9 m. Determine the frequency of the torsional vibrations. It is desired to have the node at the mid-section of the shaft of 120-mm diameter by changing the diameter of the section having a 90-mm diameter. What will be the new diameter? BI A 100 150 06 160 +300 - 125 400 (mm) Fig. 18.43 120

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The shaft shown in Fig. 18.43
carries two masses. The mass
A is 300 kg with a radius
of gyration of 0.75 m and
the mass B is 500 kg with a radius of gyration of
0.9 m. Determine the frequency of the torsional
vibrations. It is desired to have the node at the
mid-section of the shaft of 120-mm diameter by
changing the diameter of the section having a
90-mm diameter. What will be the new
diameter?
BI
A
100
150
06
160
+300 - 125 400
(mm)
Fig. 18.43
120
Transcribed Image Text:The shaft shown in Fig. 18.43 carries two masses. The mass A is 300 kg with a radius of gyration of 0.75 m and the mass B is 500 kg with a radius of gyration of 0.9 m. Determine the frequency of the torsional vibrations. It is desired to have the node at the mid-section of the shaft of 120-mm diameter by changing the diameter of the section having a 90-mm diameter. What will be the new diameter? BI A 100 150 06 160 +300 - 125 400 (mm) Fig. 18.43 120
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