Consider the combination of capacitors in Figure P16.42. (a) Find the equivalent single capacitance of the two capaci- tors in series and redraw the diagram (called diagram 1) with this equivalent capacitance. (b) In diagram 1, find the equiva- lent capacitance of the three capacitors in parallel and redraw the diagram as a single battery and single capacitor in a loop. (c) Compute the charge on the single equivalent capacitor. (d) Returning to diagram 1, compute the charge on each individual capacitor. Does the sum agree with the value found in part (c)? (e) What is the charge on the 24.0-uF capacitor and on the 8.00-µF capacitor? Compute the voltage drop across (f) the 24.0-µF capacitor and (g) the 8.00-µF capacitor. 24.0 µF | 4.00 μF 2.00 μ . 36.0 V 8.00 μF Figure P16.42
Consider the combination of capacitors in Figure P16.42. (a) Find the equivalent single capacitance of the two capaci- tors in series and redraw the diagram (called diagram 1) with this equivalent capacitance. (b) In diagram 1, find the equiva- lent capacitance of the three capacitors in parallel and redraw the diagram as a single battery and single capacitor in a loop. (c) Compute the charge on the single equivalent capacitor. (d) Returning to diagram 1, compute the charge on each individual capacitor. Does the sum agree with the value found in part (c)? (e) What is the charge on the 24.0-uF capacitor and on the 8.00-µF capacitor? Compute the voltage drop across (f) the 24.0-µF capacitor and (g) the 8.00-µF capacitor. 24.0 µF | 4.00 μF 2.00 μ . 36.0 V 8.00 μF Figure P16.42
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Transcribed Image Text:Consider the combination of capacitors in Figure P16.42.
(a) Find the equivalent single capacitance of the two capaci-
tors in series and redraw the diagram (called diagram 1) with
this equivalent capacitance. (b) In diagram 1, find the equiva-
lent capacitance of the three capacitors in parallel and redraw
the diagram as a single battery and single capacitor in a loop.
(c) Compute the charge on the single equivalent capacitor.
(d) Returning to diagram 1, compute the charge on each
individual capacitor. Does the sum agree with the value found
in part (c)? (e) What is the charge on the 24.0-uF capacitor
and on the 8.00-µF capacitor? Compute the voltage drop
across (f) the 24.0-µF capacitor and (g) the 8.00-µF capacitor.
24.0 µF
| 4.00 μF
2.00 μ .
36.0 V
8.00 μF
Figure P16.42
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