Chapter 19: Q21CQ (page 695)
If you wish to store a large amount of energy in a capacitor bank, would you connect capacitors in series or parallel? Explain
Short Answer
The capacitors should be connected in parallel.
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Chapter 19: Q21CQ (page 695)
If you wish to store a large amount of energy in a capacitor bank, would you connect capacitors in series or parallel? Explain
The capacitors should be connected in parallel.
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Find the total capacitance of the combination of capacitors shown in Figure 19.34 .

Sketch the equipotential lines surrounding the two conducting plates shown in Figure \({\rm{19}}{\rm{.30}}\), given the top plate is positive and the bottom plate has an equal amount of negative charge. Be certain to indicate the distribution of charge on the plates. Is the field strongest where the plates are closest? Why should it be?

Give the reason why a dielectric material increases capacitance compared with what it would be with air between the plates of a capacitor. What is the independent reason that a dielectric material also allows a greater voltage to be applied to a capacitor? (The dielectric thus increases \(C\) and permits a greater \(V\).
Voltages are always measured between two points. Why?
Suppose you want a capacitor bank with a total capacitance of 0.750Fand you possess numerous 1.50mFcapacitors. What is the smallest number you could hook together to achieve your goal, and how would you connect them?
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