Ex. 170. Given R= 16 Ohms, C= 14 Farads, Henries, V= 11 volts DC, and a switch The switch closes at t=0. All initial values ar L= 6. - all in series. zero. The differential equation for the voltage across the capacitor can be written as: Vc dot_dot + A Vc_dot + B Vc = D, where Vc dot is the first derivative of Vc(t) an Vc_dot_dot is the second derivative of Vc(t). Determine A, B, and D. ans:3

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Ex. 170. Given R= 16 Ohms, C= 14 Farads, L=
Henries,
V= 11 volts DC, and a switch - all in series.
The switch closes at t=0. All initial values are
6.
zero.
The differential equation for the
voltage across the capacitor can be written as:
Vc dot dot + A Vc dot + B Vc = D,
where Vc dot is the first derivative of Vc (t) and
Vc dot dot is the second derivative of Vc(t).
Determine A, B, and D.
ans:3
Transcribed Image Text:Ex. 170. Given R= 16 Ohms, C= 14 Farads, L= Henries, V= 11 volts DC, and a switch - all in series. The switch closes at t=0. All initial values are 6. zero. The differential equation for the voltage across the capacitor can be written as: Vc dot dot + A Vc dot + B Vc = D, where Vc dot is the first derivative of Vc (t) and Vc dot dot is the second derivative of Vc(t). Determine A, B, and D. ans:3
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