A mass, m of 22 kg consider one vertical motion only with angular displacement, 0 = wt, with spring coefficient, k of 13 kN/m as shown in Figure Ql. If the system oscillates at free motion y = Y sin(wnt) with amplitude, Y of 19. mm: (i) Determine the natural frequency of the system, 0n. (i1) Solve the time taken to complete one cycle of motion. (iii) Analyze the velocity of the mass, ý at position A.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A mass, m of 22 kg consider one vertical motion only with angular displacement, 0
wt, with spring coefficient, k of 13 kN/m as shown in Figure Ql. If the system
oscillates at free motion y = Y sin(@nt) with amplitude, Y of 19. mm:
(i)
Determine the natural frequency of the system, n.
(ii)
Solve the time taken to complete one cycle of motion.
(iii)
Analyze the velocity of the mass, y at position A.
Transcribed Image Text:A mass, m of 22 kg consider one vertical motion only with angular displacement, 0 wt, with spring coefficient, k of 13 kN/m as shown in Figure Ql. If the system oscillates at free motion y = Y sin(@nt) with amplitude, Y of 19. mm: (i) Determine the natural frequency of the system, n. (ii) Solve the time taken to complete one cycle of motion. (iii) Analyze the velocity of the mass, y at position A.
Ay
Y
Y - 4
B
9 =ot
Figure Q1
Transcribed Image Text:Ay Y Y - 4 B 9 =ot Figure Q1
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