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For the Circuit Shown in the Figure V=20 V,C=10μF,R=0.80MΩV = 20 \mathrm {~V} , C = 10 \mu \mathrm { F } , R = 0.80 \mathrm { M } \Omega

question 269

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For the circuit shown in the figure, V=20 V,C=10μF,R=0.80MΩV = 20 \mathrm {~V} , C = 10 \mu \mathrm { F } , R = 0.80 \mathrm { M } \Omega , and the battery is ideal. Initially the switch S\mathrm { S } is open and the capacitor is uncharged. The switch is then closed at time t=t = 0.00 s0.00 \mathrm {~s} . What is the potential difference across the resistor 20 s20 \mathrm {~s} after closing the switch?
 For the circuit shown in the figure,  V = 20 \mathrm {~V} , C = 10 \mu \mathrm { F } , R = 0.80 \mathrm { M } \Omega , and the battery is ideal. Initially the switch  \mathrm { S }  is open and the capacitor is uncharged. The switch is then closed at time  t =   0.00 \mathrm {~s} . What is the potential difference across the resistor  20 \mathrm {~s}  after closing the switch?    A)   2.3 \mathrm {~V}  B)   3.0 \mathrm {~V}  C)   2.0 \mathrm {~V}  D)   1.6 \mathrm {~V}  E)   2.6 \mathrm {~V}


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An organ that stores urine excreted by the kidneys before elimination from the body.

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The basic structural and functional unit of the kidney, responsible for filtering blood and producing urine.

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Materials that are not wanted or are surplus after the completion of a process or during bodily functions.

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The equilibrium between the fluid intake and fluid loss in the body to maintain health and proper physiological functions.

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