In the circuit of the figure 8 = 3.20 kV, C = 7.80 µF, R1 = R2 = R3 = 1.03 MQ. With C completely uncharged, switch S is suddenly closed (at t= 0). At t = 0, what are (a) current ig in resistor 1, (b) current iz in resistor 2, and (c) current iz in resistor 3? Att= 0 (that is, after many time constants), what are (d)i, (e)i2, and (f)ig? What is the potential difference V2 across resistor 2 at (g)t = 0 and (h)t = 0?

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Chapter1: Units, Trigonometry. And Vectors
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In the circuit of the figure 8 = 3.20 kV, C = 7.80 µF, R1 = R2 = R3 = 1.03 MQ. With C completely uncharged, switch S is suddenly closed
(at t = 0). At t = 0, what are (a) current i in resistor 1, (b) current iz in resistor 2, and (c) current iz in resistor 3? At t = (that is, after
many time constants), what are (d)i. (e)i2, and (f)ig? What is the potential difference V2 across resistor 2 at (g)t = 0 and (h)t = o?
R
Rg
(a) Number
i 2.07
Units
mA
(b) Number
i 1.035
Units
mA
(c) Number
i 1.035
Units
mA
(d) Number
i 1.553
Units
mA
(e) Number
i 1.553
Units
(f) Number
i o
Units
mA
(g) Number
Units
(h) Number
i
Units
>
>
>
>
>
ww
Transcribed Image Text:In the circuit of the figure 8 = 3.20 kV, C = 7.80 µF, R1 = R2 = R3 = 1.03 MQ. With C completely uncharged, switch S is suddenly closed (at t = 0). At t = 0, what are (a) current i in resistor 1, (b) current iz in resistor 2, and (c) current iz in resistor 3? At t = (that is, after many time constants), what are (d)i. (e)i2, and (f)ig? What is the potential difference V2 across resistor 2 at (g)t = 0 and (h)t = o? R Rg (a) Number i 2.07 Units mA (b) Number i 1.035 Units mA (c) Number i 1.035 Units mA (d) Number i 1.553 Units mA (e) Number i 1.553 Units (f) Number i o Units mA (g) Number Units (h) Number i Units > > > > > ww
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