m diameter is fixed fre m and 2 m from the natural frequency of shaf ig 11 CNm2

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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the
K2
be
W
im
Q9/ A shaft 140 mm diameter is fixed from both end 2.5 m apart. It carries two masses 150 kg and
400 kg at 0.6 m and 2 m from the right hand. Assuming the mass of the shaft 110 kg/m,
determine the natural frequency of the shaft transverse vibrations. Young's modulus for the
W a3 b3
ng
of
in
material of the shaft is 211 GN/m2 and 8:
!!
3 EIL3
C
Q10/ Find the natural frequency of vibration (in rad/sec) for the system shown, when
Ki
K2 = 5 N/mm,
K3 = 15 N/mm,
K4 = 9 N/mm,
K5 = 12 N/mm,
K6 = 6 N/mm, and
W = 200 N.
= 10 N/mm,
%3D
K1
%3D
K6
11-11
1000-
Transcribed Image Text:the K2 be W im Q9/ A shaft 140 mm diameter is fixed from both end 2.5 m apart. It carries two masses 150 kg and 400 kg at 0.6 m and 2 m from the right hand. Assuming the mass of the shaft 110 kg/m, determine the natural frequency of the shaft transverse vibrations. Young's modulus for the W a3 b3 ng of in material of the shaft is 211 GN/m2 and 8: !! 3 EIL3 C Q10/ Find the natural frequency of vibration (in rad/sec) for the system shown, when Ki K2 = 5 N/mm, K3 = 15 N/mm, K4 = 9 N/mm, K5 = 12 N/mm, K6 = 6 N/mm, and W = 200 N. = 10 N/mm, %3D K1 %3D K6 11-11 1000-
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