For numbers 11-14, refers to the figure below. G- 0.04 µF 47 pF 0.02 uF 150 pF 0.047 µF G= 100 pF (a) (b) 11. Calculate C, for the series-parallel combination of capacitors in both figure a and b. 12. What C must be connected in series with 0.47 µF for an equivalent capacitance of 0.02 µ F2 (Hint. Use formulas for narallel

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For numbers 11-14, refers to the
figure below.
C, -
0.02 „F
G-
0.04 µF
47 pF
150 pF
G= 100 pF
(a)
(b)
11. Calculate C, for the series-parallel
combination of capacitors in both
figure a and b.
12. What C must be connected in
series with 0.47 µF for an
equivalent capacitance of 0.02 µ
F? (Hint: Use formulas for parallel
R).
13. In figure a:
a. Change C3 to 100 pF,
and calculate C, in µF
units
b. Change C, to 10 pF and
calculate C-.
14. In figure b:
a. Change C3 to 100 pF,
and calculate C- in µF
units
b. Change C, to 100 pF
and calculate C, in pF
units.
Transcribed Image Text:For numbers 11-14, refers to the figure below. C, - 0.02 „F G- 0.04 µF 47 pF 150 pF G= 100 pF (a) (b) 11. Calculate C, for the series-parallel combination of capacitors in both figure a and b. 12. What C must be connected in series with 0.47 µF for an equivalent capacitance of 0.02 µ F? (Hint: Use formulas for parallel R). 13. In figure a: a. Change C3 to 100 pF, and calculate C, in µF units b. Change C, to 10 pF and calculate C-. 14. In figure b: a. Change C3 to 100 pF, and calculate C- in µF units b. Change C, to 100 pF and calculate C, in pF units.
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