Which of the hypothesis developed above is/are true? * 1. Individual capacitor branched in series or parallel connection stores the same number of electric charge (Q) on its plate surface regardless of the amount of capacitance. II. The electric charge (Q) of individual capacitor branched in series connection is decreased as the total capacitance increases. III. The total capacitance of capacitors branched in parallel connection increased as the electric charge (Q) of an individual capacitor increases. IV. There is no significant relationship between the total capacitance and the number of charges of individual capacitors branched in: a. Series connection b. Parallel connection

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Which of the hypothesis
developed above is/are true? *
1. Individual capacitor branched in series or parallel connection stores the same
number of electric charge (Q) on its plate surface regardless of the amount of
capacitance.
II. The electric charge (Q) of individual capacitor branched in series connection is
decreased as the total capacitance increases.
III. The total capacitance of capacitors branched in parallel connection increased as
the electric charge (Q) of an individual capacitor increases.
IV. There is no significant relationship between the total capacitance and the number
of charges of individual capacitors branched in:
a. Series connection
b. Parallel connection
O I and IV
I, II, III, and IV.
O I only
IV only
Transcribed Image Text:Which of the hypothesis developed above is/are true? * 1. Individual capacitor branched in series or parallel connection stores the same number of electric charge (Q) on its plate surface regardless of the amount of capacitance. II. The electric charge (Q) of individual capacitor branched in series connection is decreased as the total capacitance increases. III. The total capacitance of capacitors branched in parallel connection increased as the electric charge (Q) of an individual capacitor increases. IV. There is no significant relationship between the total capacitance and the number of charges of individual capacitors branched in: a. Series connection b. Parallel connection O I and IV I, II, III, and IV. O I only IV only
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