An RC circuit with components C = 4mF (mili-Farads), R = 2kN (kilo-Ohms) and R2 = 3kN is set as shown in the figure. The capacitor is initially charged to 16V. At t = 0 the switch is thrown to position 1, at t = 4s the switch is turned to position 2. Which of the following expressions correctly gives the charge on the capacitor at t = 10s? 1 O a. Q = (64mC)(1 – e-1/²)e\/3 O b. Q = (24C)(1 – e-3/2)e1/3 O. Q= (32mC)e=/2 O d. Q = (64mC)e! O e. Q= (32mC)e 6/5 2 R2 R1 Of. Q= (16mC)(1 - e/3)e 1/2 Og. Q = (24mC)(1 – e 5/6) O h. Q = (16mC)e-/3

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An RC circuit with components C = 4mF (mili-Farads), R1 = 2kN (kilo-Ohms) and R2 = 3kN is set as shown in the figure. The capacitor is initially charged to 16V. At t =0 the switch is thrown to position 1, at t = 4s the switch
is turned to position 2. Which of the following expressions correctly gives the charge on the capacitor at t = 10s?
О а. Q%3D (64птC)(1 — е 1/2)е 1/3
ОБ. Q3 (24C) (1 — е 3/2)е 1/3
Ос. Q%3 (32тC)e 1/2
R2
O d. Q= (64mC)e¬1
O e. Q = (32mC)e 6/5
R1
O f. Q3 (16тС)(1 — е 1/3)е 1/2
Оg. Q%3D (24mC)(1 — е
5/6)
O h. Q = (16mC)e¬1/3
Transcribed Image Text:An RC circuit with components C = 4mF (mili-Farads), R1 = 2kN (kilo-Ohms) and R2 = 3kN is set as shown in the figure. The capacitor is initially charged to 16V. At t =0 the switch is thrown to position 1, at t = 4s the switch is turned to position 2. Which of the following expressions correctly gives the charge on the capacitor at t = 10s? О а. Q%3D (64птC)(1 — е 1/2)е 1/3 ОБ. Q3 (24C) (1 — е 3/2)е 1/3 Ос. Q%3 (32тC)e 1/2 R2 O d. Q= (64mC)e¬1 O e. Q = (32mC)e 6/5 R1 O f. Q3 (16тС)(1 — е 1/3)е 1/2 Оg. Q%3D (24mC)(1 — е 5/6) O h. Q = (16mC)e¬1/3
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