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For the Circuit Shown in the Figure C=12μFC = 12 \mu \mathrm { F }

question 308

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For the circuit shown in the figure, C=12μFC = 12 \mu \mathrm { F } and R=8.5MΩR = 8.5 \mathrm { M } \Omega . Initially the switch S\mathrm { S } is open with the capacitor charged to a voltage of 80 V80 \mathrm {~V} . The switch is then closed at time t=0.00 st = 0.00 \mathrm {~s} . What is the charge on the capacitor, when the current in the circuit is 3.3μA3.3 \mu \mathrm { A } ?
 For the circuit shown in the figure,  C = 12 \mu \mathrm { F }  and  R = 8.5 \mathrm { M } \Omega . Initially the switch  \mathrm { S }  is open with the capacitor charged to a voltage of  80 \mathrm {~V} . The switch is then closed at time  t = 0.00 \mathrm {~s} . What is the charge on the capacitor, when the current in the circuit is  3.3 \mu \mathrm { A }  ?    A)   620 \mu \mathrm { C }  B)   340 \mu \mathrm { C }  C)   480 \mu \mathrm { C }  D)   700 \mu \mathrm { C }  Е)   350 \mu \mathrm { C }


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Linear Equations

Equations where the highest exponent of the variable(s) is one, resulting in a straight line when graphed.

Method Of Elimination

A technique for solving systems of equations by eliminating variables to solve for the others.

Fractions

Mathematical expressions representing the division of one integer by another, comprising a numerator and a denominator.

Linear Equations

Equations of the first degree, meaning they involve only linear terms and constant terms.

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