Ina the definition C Q/V, ahow that for a SERIES connection of capacitors, 1/C = 1/C1 + 1/C2. What does this equation mean? What happens to C as more and more capacitors are connected in series? Ueina

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what are the answers on the question stated on the photo?
Using the definition C Q/V, ahow that for a SERIES connection of capacitors,
1/C = 1/C1 + 1/C2. What does this equation mean? What happens to C as
more and more capacitors are connected in series?
2. Using the definition C = Q/V, show that for a PARALLEL connection of
capacitors: C = C1 + C2. What does this equation mean? What happens to C
as more and more capacitors are connected in parallel?
What I Have Learned
Direction: Calculate the values asked in the following questions with the given circuit
diagram.
1. Determine the values of the following variables in Circuit A.
100 uf
a. V1
b. V2
Vs
12 V
C2
C. V3
d. Q1
e. Q2
f. Q3
g. Total. Capacitance, CT
h. Total Charge, Qr
200 uf
C3
5 uf
Circuit A
Transcribed Image Text:Using the definition C Q/V, ahow that for a SERIES connection of capacitors, 1/C = 1/C1 + 1/C2. What does this equation mean? What happens to C as more and more capacitors are connected in series? 2. Using the definition C = Q/V, show that for a PARALLEL connection of capacitors: C = C1 + C2. What does this equation mean? What happens to C as more and more capacitors are connected in parallel? What I Have Learned Direction: Calculate the values asked in the following questions with the given circuit diagram. 1. Determine the values of the following variables in Circuit A. 100 uf a. V1 b. V2 Vs 12 V C2 C. V3 d. Q1 e. Q2 f. Q3 g. Total. Capacitance, CT h. Total Charge, Qr 200 uf C3 5 uf Circuit A
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