Consider three capacitors with capacitances C1 = 10 μF, C2= 20 µF, and C3 = 30 μF connected in series and connected to a voltage source of V-100 V. Note that if your answer is not a whole number, round it off to two decimal places. a. What is the equivalent capacitance of the three capacitors, Ceq - Blank 1 µF Your answers for Q1, Q2 and Q3 should be in scientific notation, the coefficient should be rounded off to two decimal places. Your answers for V1, V2 and V3 are real numbers rounded off to two decimal places. b. Calculate the voltage across each capacitor and the charge stored on each capacitor. Q1-Blank 2 x 10^Blank 3 C Q2-Blank 4 x 10^Blank 5 C Q3-Blank 6 x 10^Blank 7 C V1-Blank 8 V V2 - Blank 9 V V3-Blank 10 V

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Consider three capacitors with capacitances C1 = 10 μF, C2 = 20 μF, and C3 = 30 µF connected in
series and connected to a voltage source of V - 100 V.
Note that if your answer is not a whole number, round it off to two decimal places.
a. What is the equivalent capacitance of the three capacitors, Ceq - Blank 1 µF
Your answers for Q1, Q2 and Q3 should be in scientific notation. the coefficient should be
rounded off to two decimal places. Your answers for V1, V2 and V3 are real numbers
rounded off to two decimal places.
b. Calculate the voltage across each capacitor and the charge stored on each capacitor.
Q1 = Blank 2 x 10^Blank 3 C
Q2 = Blank 4 x 10^Blank 5 C
Q3 = Blank 6 x 10^Blank 7 C
V1 - Blank 8 V
V2 Blank 9 V
V3 - Blank 10 V
Transcribed Image Text:Consider three capacitors with capacitances C1 = 10 μF, C2 = 20 μF, and C3 = 30 µF connected in series and connected to a voltage source of V - 100 V. Note that if your answer is not a whole number, round it off to two decimal places. a. What is the equivalent capacitance of the three capacitors, Ceq - Blank 1 µF Your answers for Q1, Q2 and Q3 should be in scientific notation. the coefficient should be rounded off to two decimal places. Your answers for V1, V2 and V3 are real numbers rounded off to two decimal places. b. Calculate the voltage across each capacitor and the charge stored on each capacitor. Q1 = Blank 2 x 10^Blank 3 C Q2 = Blank 4 x 10^Blank 5 C Q3 = Blank 6 x 10^Blank 7 C V1 - Blank 8 V V2 Blank 9 V V3 - Blank 10 V
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