1.23. Let the signal input to a galvanometer be xş(t) = 0 t≤ 0 x(t) = Kt t> 0 in which K is a constant. (a) Find the expression for galvanometer response x,(t), assuming that the galvanometer is calibrated for static readings. (b) Show that the error î‚ — ï§ approaches a constant value. S (c) What would you estimate to be the optimum damping ratio in this galvanom- eter operation?

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1.23. Let the signal input to a galvanometer be
xş(t) = 0
t≤ 0
x(t) = Kt
t> 0
in which K is a constant.
(a) Find the expression for galvanometer response x,(t), assuming that the
galvanometer is calibrated for static readings.
-
(b) Show that the error ¤, — ¤¸ approaches a constant value.
(c) What would you estimate to be the optimum damping ratio in this galvanom-
eter operation?
Transcribed Image Text:1.23. Let the signal input to a galvanometer be xş(t) = 0 t≤ 0 x(t) = Kt t> 0 in which K is a constant. (a) Find the expression for galvanometer response x,(t), assuming that the galvanometer is calibrated for static readings. - (b) Show that the error ¤, — ¤¸ approaches a constant value. (c) What would you estimate to be the optimum damping ratio in this galvanom- eter operation?
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