The capacitor with capacitance C₁ initially carries a charge Q (see figure below). While, th capacitor with capacitance C₂ is initially uncharged. The switch S is closed at time t = 0, and th charges begin to flow in the circuit. Find the charge flown through the wires as a function of tim q(t). A) (₂)(1-e-(C₁+C₂)t/RC₁C₂) B) (C₁+C₂) C) (+) (1- e-(C₁+C₂)t/RC₂C₂) D) Q(1 + e-(₁+₂)t/RC₁C₂) E) None of the above. - QC₂₁²) (1 - e-(C₁+C₂)t/RC₁C₂) C₁ +Q R C-

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The capacitor with capacitance C₁ initially carries a charge Q (see figure below). While, the
capacitor with capacitance C₂ is initially uncharged. The switch S is closed at time t = 0, and the
charges begin to flow in the circuit. Find the charge flown through the wires as a function of time,
q(t).
QC₁
A) (0) (1 - e-(C₁+C₂)t/RC₁C₂)
C₁+C₂
B) (02₂) (1 - e-(C₁+C₂)t/RC₁C₂)
C₁+C₂
QC₁ C₂
C) (043) (1 — e¯(C₁+C₂)t/RC₂C₂)
D) Q(1 + e-(₁+₂)t/RC1C₂)
E) None of the above.
+Q
C₁
R
C₂
Transcribed Image Text:The capacitor with capacitance C₁ initially carries a charge Q (see figure below). While, the capacitor with capacitance C₂ is initially uncharged. The switch S is closed at time t = 0, and the charges begin to flow in the circuit. Find the charge flown through the wires as a function of time, q(t). QC₁ A) (0) (1 - e-(C₁+C₂)t/RC₁C₂) C₁+C₂ B) (02₂) (1 - e-(C₁+C₂)t/RC₁C₂) C₁+C₂ QC₁ C₂ C) (043) (1 — e¯(C₁+C₂)t/RC₂C₂) D) Q(1 + e-(₁+₂)t/RC1C₂) E) None of the above. +Q C₁ R C₂
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