5.37 Prior to t = 0, capacitor C₁ in the circuit of Fig. P5.37 was uncharged. For 10 = 5 mA, R₁ = 2k, R₂ = 50 ks, C₁ = 3μ F, and C₂ = 6μ F, determine: (a) The equivalent circuit involving the capacitors for t≥ 0. Specify v₁(0) and v₂ (0). (b) i(t) for t≥ 0. (c) vi(t) and v2(t) fort ≥ 0. R2 ий t=0 C₂= 02 R₁ C₁: 01 Figure P5.37: Circuit for Problem 5.37.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
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5.37 Prior to t = 0, capacitor C₁ in the circuit of Fig. P5.37
was uncharged. For 10 = 5 mA, R₁ = 2k, R₂ = 50 ks,
C₁ = 3μ F, and C₂ = 6μ F, determine:
(a) The equivalent circuit involving the capacitors for t≥ 0.
Specify v₁(0) and v₂ (0).
(b) i(t) for t≥ 0.
(c) vi(t) and v2(t) fort ≥ 0.
R2
ий
t=0
C₂=
02
R₁
C₁:
01
Figure P5.37: Circuit for Problem 5.37.
Transcribed Image Text:5.37 Prior to t = 0, capacitor C₁ in the circuit of Fig. P5.37 was uncharged. For 10 = 5 mA, R₁ = 2k, R₂ = 50 ks, C₁ = 3μ F, and C₂ = 6μ F, determine: (a) The equivalent circuit involving the capacitors for t≥ 0. Specify v₁(0) and v₂ (0). (b) i(t) for t≥ 0. (c) vi(t) and v2(t) fort ≥ 0. R2 ий t=0 C₂= 02 R₁ C₁: 01 Figure P5.37: Circuit for Problem 5.37.
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