WorksheetsCapacitor in Series and Parallel
Total questions: 20
Worksheet time: 29mins
In capacitor in parallel, the charge in all parts of the circuit is the same.
True
False
In capacitor in parallel, the total voltage is equal to the sum of all the separate drops of potential in the circuit. This is equal to the applied voltage.
True
False
In capacitor in series, the total voltage is equal to the sum of all the separate drops of potential in the circuit. This is equal to the applied voltage.
True
False
In capacitor in series, the charge in all parts of the circuit is the same.
True
False
In capacitor in parallel, the total capacitance is equal to the sum of the individual capacitances.
True
False
In capacitor in series, the reciprocal of the total capacitance is equal to the sum of the reciprocals of the individual capacitance.
True
False
Voltage is the product of charge and capacitance.
True
False
Identify if it is a capacitor in series and parallel.
Capacitor in Series
Capacitor in Parallel
The given charge is 5 Coulombs. Solve for the charge in C1. Provide the value and the unit of your answer.
(a)
Identify if it is a capacitor in series and parallel.
Capacitor in Series
Capacitor in Parallel
The given charge in C2 is 3 Coulombs. Solve for the total charge. Provide the value and the unit of your answer.
(a)
Solve for the voltage in C2. Provide the value and the unit of your answer.
(a)
Solve for the total voltage. Provide the value and the unit of your answer.
(a)
The set up is capacitor in parallel. Compute for the total capacitance if C1 = 2 Farad, C2 = 5 Farad and C3 = 6 Farad.
(a)
Solve for the total capacitance. Provide the value and the unit of your answer.
(a)
Charge is the product of capacitance and voltage.
True
False
The unit for capacitance is _____.
Farad
Volt
Coulomb
Ohm
The unit for potential difference is _____.
Farad
Volt
Coulomb
Ohm
The unit for voltage is _____.
Farad
Volt
Coulomb
Ohm
The unit for charge is _____.
Farad
Volt
Coulomb
Ohm
