TAKE, TT =314, 9-9 M=74-8 kg After your strenuous walk to the Rankine building, you decide to take the lift to the sixth floor. You enter the lift at tau 4.8 s with a load corresponding to your total mass (wetthe ellecive hain) if you now consider a force applied due to gravity acting on you, with the spring stiffness of the lift cable being k 79703 N/m, the damping coefficient of the lift c4760 Ns/m and the mass of the lift without any occupents of 811 kg, so that the deflection can be described as - En Ct-T) xe)=張 x(t) = - %3D What is the damped frequency in radians/second) of the lift after you enter it? Answer

Elements Of Electromagnetics
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26
TAKE, TT =314, 9= 9
M=74-8 kg
After your strenuous walk to the Rankine building, you decide to take the lift to the sixth floor. You enter the lift at tau 4,8 s with a load corresponding to your total mass (vettheallective
haine) if you now consider a force applied due to gravity acting on you, with the spring stiffness of the lift cable being k 79703 N/m, the damping coefficient of the lift c 4760 Ns/m
and the mass of the lift without any occupants of 811 kg, so that the deflection can be described as
- 很
(t-7)-tan
x(t) =
What is the damped frequency (in radians/second) of the lift after you enter it?
Answer
Calculate the deflection when
and
walt -r)- tan
Answer
Q8
What would be the deflection at
Transcribed Image Text:26 TAKE, TT =314, 9= 9 M=74-8 kg After your strenuous walk to the Rankine building, you decide to take the lift to the sixth floor. You enter the lift at tau 4,8 s with a load corresponding to your total mass (vettheallective haine) if you now consider a force applied due to gravity acting on you, with the spring stiffness of the lift cable being k 79703 N/m, the damping coefficient of the lift c 4760 Ns/m and the mass of the lift without any occupants of 811 kg, so that the deflection can be described as - 很 (t-7)-tan x(t) = What is the damped frequency (in radians/second) of the lift after you enter it? Answer Calculate the deflection when and walt -r)- tan Answer Q8 What would be the deflection at
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