The circuit shown contains a voltage source with emf = 8.99 V, a resistor with resistance R = 165 kn, and a capacitor with capacitance C = 647 nF. When switch S is set to position a, the three circuit elements are in series. When the switch is in position b, the battery is excluded from the circuit. The switch is initially moved to position a where it remains for a sufficiently long time that the capacitor is fully charged. E A S Part (f) Calculate the current through the resistor, in amperes, at time t = 45.5 ms after the switch is closed in position b. I= 3.56* 10(-6)| R C

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ANSWER PART F

The circuit shown contains a voltage source with emf & = 8.99 V, a resistor with
resistance R = 165 kn, and a capacitor with capacitance C = 647 nF. When switch S is set to position a,
the three circuit elements are in series. When the switch is in position b, the battery is excluded from the
circuit. The switch is initially moved to position a where it remains for a sufficiently long time that the
capacitor is fully charged.
a
I = 3.56*
S
Part (f) Calculate the current through the resistor, in amperes, at time t = 45.5 ms after the switch is closed in position b.
10(-6)|
A
R
му
T
Transcribed Image Text:The circuit shown contains a voltage source with emf & = 8.99 V, a resistor with resistance R = 165 kn, and a capacitor with capacitance C = 647 nF. When switch S is set to position a, the three circuit elements are in series. When the switch is in position b, the battery is excluded from the circuit. The switch is initially moved to position a where it remains for a sufficiently long time that the capacitor is fully charged. a I = 3.56* S Part (f) Calculate the current through the resistor, in amperes, at time t = 45.5 ms after the switch is closed in position b. 10(-6)| A R му T
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