2.3. The solution for damped simple harmonic motion is given by -rt/2m(C, eiw't + Cze-iw't) X = e If x = A coso at t= 0, find the values of C, and C2 to show that i = -w'Asin o at t = 0 only if r/m is very small or o = T/2. 2.4. A capacitance C with a charge qo at t = 0 discharges through a resistance R. Use the voltage equation q/C + IR = 0 to find charge and the relaxation time of this process.

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2.3. The solution for damped simple harmonic motion is given by
-rt/2m(C, eiw't
+ Cze-iw't)
X = e
If x = A coso at t= 0, find the values of C, and C2 to show that i = -w'Asin o at t = 0
only if r/m is very small or o = T/2.
2.4. A capacitance C with a charge qo at t = 0 discharges through a resistance R. Use the
voltage equation q/C + IR
= 0 to find charge and the relaxation time of this
process.
Transcribed Image Text:2.3. The solution for damped simple harmonic motion is given by -rt/2m(C, eiw't + Cze-iw't) X = e If x = A coso at t= 0, find the values of C, and C2 to show that i = -w'Asin o at t = 0 only if r/m is very small or o = T/2. 2.4. A capacitance C with a charge qo at t = 0 discharges through a resistance R. Use the voltage equation q/C + IR = 0 to find charge and the relaxation time of this process.
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