needs complete detailing. take N=70 b=20 a) The figure shows an oscillatory system where the mass 'M’ is required to remain stationary even if an oscillatory force "F. cos ot" acts on this mass *M'. This mass 'M° is a part of a simple harmonic system of stiffness 'k' and also connected to mass 'm' by a spring of stiffness 's'. If all oscillations are along the x-axis, find the value of frequency 'o' with which the small mass 'm' should oscillate to keep the mass 'M' stationary? Consider the following numerical values for calculations: M=100 kg, Fo cos ot k=5 N/m, m='B' kg, s='N' N/m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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needs complete detailing. take N=70 b=20
a) The figure shows an oscillatory system where the
mass 'M' is required to remain stationary even if
an oscillatory force "Fo cos ot" acts on this mass
'M’. This mass 'M’ is a part of a simple harmonic
system of stiffness 'k' and also connected to
mass 'm' by a spring of stiffness 's'. If all oscillations are along the x-axis, find the
value of frequency 'o' with which the small mass 'm' should oscillate to keep the mass
'M' stationary?
Consider the following numerical values for calculations:
M=100 kg,
Fo cos ot
m
k=5 N/m,
m='B’ kg,
s='N' N/m
Transcribed Image Text:needs complete detailing. take N=70 b=20 a) The figure shows an oscillatory system where the mass 'M' is required to remain stationary even if an oscillatory force "Fo cos ot" acts on this mass 'M’. This mass 'M’ is a part of a simple harmonic system of stiffness 'k' and also connected to mass 'm' by a spring of stiffness 's'. If all oscillations are along the x-axis, find the value of frequency 'o' with which the small mass 'm' should oscillate to keep the mass 'M' stationary? Consider the following numerical values for calculations: M=100 kg, Fo cos ot m k=5 N/m, m='B’ kg, s='N' N/m
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