upuuiturJ ale Connecleu in parallel? AND ERNRICHMENT (Circuit Diagrams and Calculation Problems): 1. Consider two capacitors C1 = 200µF and C2 = 600µF connected in series across a source of voltage V = 4 volts. Draw the circuit diagram for this situation. Determine: (a) C, (b) Q, (c) Q1 and Q2. and

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What does this equation mean? What happens to C as more and more capacitors are connected in parallel?
EVALUATION AND ENRICHMENT
(Circuit Diagrams and Calculation Problems):
1. Consider two capacitors C1 = 200µF and C2 = 600µF connected in series across a source of voltage V = 4
volts. Draw the circuit diagram for this situation. Determine:
(a) C, (b) Q, (c) Q1 and Q2, and (d) V1 and V2.
2. Consider two capacitors C1 = 200µF and C2 = 600µF connected in parallel across a source of voltage V =
4 volts. Draw the circuit diagram for this situation. Determine:
(a) C, (b) Q, (c) V1 and V2, and (d) Q1 and Q2.
3. From 1 and 2, why are (c) and (d) swapped in positions in terms of solving the unknowns?
4. Repeat 1 and 2 but this time add a third capacitor C3 = 800µF. Summarize your answers using a C-Q-V
table like below:
Capacitor #
C (in pF)
Q (in µC)
V (in Volts, V)
1
200
600
3
800
Equivalent
Transcribed Image Text:What does this equation mean? What happens to C as more and more capacitors are connected in parallel? EVALUATION AND ENRICHMENT (Circuit Diagrams and Calculation Problems): 1. Consider two capacitors C1 = 200µF and C2 = 600µF connected in series across a source of voltage V = 4 volts. Draw the circuit diagram for this situation. Determine: (a) C, (b) Q, (c) Q1 and Q2, and (d) V1 and V2. 2. Consider two capacitors C1 = 200µF and C2 = 600µF connected in parallel across a source of voltage V = 4 volts. Draw the circuit diagram for this situation. Determine: (a) C, (b) Q, (c) V1 and V2, and (d) Q1 and Q2. 3. From 1 and 2, why are (c) and (d) swapped in positions in terms of solving the unknowns? 4. Repeat 1 and 2 but this time add a third capacitor C3 = 800µF. Summarize your answers using a C-Q-V table like below: Capacitor # C (in pF) Q (in µC) V (in Volts, V) 1 200 600 3 800 Equivalent
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