A series combination of two capacitors C1 = 4.0 pF and C2 = 8.0 pF are connected across a 800 V battery. Therefore the equivalent capacitance Ceq, and potential drop across the capacitors V1 and V2, when fully charged, will be : Ceg = 2.44 pF, V1 = 533 V, V2 = 466 V O Ceg = 2.67 pF, V1 = 533 V, V2 = 267 V O Ceg = 0.5 pF, V1 = 680 V, V2 = 430 V O Ceg = 2 pF, V1 = 880 V, V2 = 220 V
A series combination of two capacitors C1 = 4.0 pF and C2 = 8.0 pF are connected across a 800 V battery. Therefore the equivalent capacitance Ceq, and potential drop across the capacitors V1 and V2, when fully charged, will be : Ceg = 2.44 pF, V1 = 533 V, V2 = 466 V O Ceg = 2.67 pF, V1 = 533 V, V2 = 267 V O Ceg = 0.5 pF, V1 = 680 V, V2 = 430 V O Ceg = 2 pF, V1 = 880 V, V2 = 220 V
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![A series combination of two capacitors C1 = 4.0 pF and C2 = 8.0 pF are
connected across a 800 V battery. Therefore the equivalent capacitance Ceqr and
potential drop across the capacitors V1 and V2, when fully charged, will be :
Ceg = 2.44 pF, V1 = 533 V, V2 = 466 V
O Ceg = 2.67 pF, V1 = 533 V, V2 = 267 V
Ceg = 0.5 pF, V1 = 680 V, V2 = 430 V
O Ceg = 2 pF, V1 = 880 V, V2 = 220 V
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Transcribed Image Text:A series combination of two capacitors C1 = 4.0 pF and C2 = 8.0 pF are
connected across a 800 V battery. Therefore the equivalent capacitance Ceqr and
potential drop across the capacitors V1 and V2, when fully charged, will be :
Ceg = 2.44 pF, V1 = 533 V, V2 = 466 V
O Ceg = 2.67 pF, V1 = 533 V, V2 = 267 V
Ceg = 0.5 pF, V1 = 680 V, V2 = 430 V
O Ceg = 2 pF, V1 = 880 V, V2 = 220 V
%3D
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