For capacitors connected in series, the total potential difference of the circuit is equal to the potential difference between the terminals of each capacitor. II. For capacitors connected in parallel, the total charge of the circuit is equal to the charge of each capacitor. III. The equivalent capacitance of capacitors connected in parallel is equal to the sum of the capacitances of each capacitor. Which of the following statements about capacitors is incorrect? A) I and II B) I, II and III C) Only II D) Only III E) Only I
For capacitors connected in series, the total potential difference of the circuit is equal to the potential difference between the terminals of each capacitor. II. For capacitors connected in parallel, the total charge of the circuit is equal to the charge of each capacitor. III. The equivalent capacitance of capacitors connected in parallel is equal to the sum of the capacitances of each capacitor. Which of the following statements about capacitors is incorrect? A) I and II B) I, II and III C) Only II D) Only III E) Only I
College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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I. For capacitors connected in series, the total potential difference of the circuit is equal to the potential difference between the terminals of each capacitor.
II. For capacitors connected in parallel, the total charge of the circuit is equal to the charge of each capacitor.
III. The equivalent capacitance of capacitors connected in parallel is equal to the sum of the capacitances of each capacitor.
Which of the following statements about capacitors is incorrect?
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