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Practice Capacitor - Electromagnetism - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.
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| Paper | Year / session | Questions in this view | Open |
|---|---|---|---|
| MHT CET 2026 11th April Evening Shift | 2026 | 3 | View paper |
| MHT CET 2026 11th April Morning Shift | 2026 | 1 | View paper |
| MHT CET 2026 13th April Evening Shift | 2026 | 1 | View paper |
| MHT CET 2026 13th April Morning Shift | 2026 | 3 | View paper |
| MHT CET 2026 15th April Evening Shift | 2026 | 2 | View paper |
| MHT CET 2026 15th April Morning Shift | 2026 | 3 | View paper |
| MHT CET 2026 16th April Evening Shift | 2026 | 1 | View paper |
| MHT CET 2026 16th April Morning Shift | 2026 | 2 | View paper |
| MHT CET 2026 17th April Evening Shift | 2026 | 2 | View paper |
| MHT CET 2026 17th April Morning Shift | 2026 | 2 | View paper |
| MHT CET 2026 18th April Evening Shift | 2026 | 2 | View paper |
| MHT CET 2026 18th April Morning Shift | 2026 | 2 | View paper |
| MHT CET 2026 19th April Evening Shift | 2026 | 1 | View paper |
| MHT CET 2026 19th April Morning Shift | 2026 | 2 | View paper |
| MHT CET 2026 20th April Morning Shift | 2026 | 2 | View paper |
| MHT CET (PCB) 2025 9th April Evening Shift | 2025 | 2 | View paper |
| MHT CET (PCB) 2025 9th April Morning Shift | 2025 | 1 | View paper |
| MHT CET 2025 19TH APRIL EVENING SHIFT | 2025 | 1 | View paper |
| MHT CET 2025 19TH APRIL MORNING SHIFT | 2025 | 1 | View paper |
| MHT CET 2025 20TH APRIL EVENING SHIFT | 2025 | 2 | View paper |
| MHT CET 2025 21ST APRIL EVENING SHIFT | 2025 | 3 | View paper |
| MHT CET 2025 21ST APRIL MORNING SHIFT | 2025 | 2 | View paper |
| MHT CET 2025 22ND APRIL EVENING SHIFT | 2025 | 1 | View paper |
| MHT CET 2025 22ND APRIL MORNING SHIFT | 2025 | 3 | View paper |
| MHT CET 2025 23RD APRIL EVENING SHIFT | 2025 | 2 | View paper |
| MHT CET 2025 23RD APRIL MORNING SHIFT | 2025 | 1 | View paper |
| MHT CET 2025 25TH APRIL EVENING SHIFT | 2025 | 2 | View paper |
| MHT CET 2025 25TH APRIL MORNING SHIFT | 2025 | 1 | View paper |
| MHT CET 2025 26TH APRIL EVENING SHIFT | 2025 | 3 | View paper |
| MHT CET 2025 26TH APRIL MORNING SHIFT | 2025 | 2 | View paper |
| MHT CET 2025 5TH MAY EVENING SHIFT | 2025 | 1 | View paper |
| MHT CET (PCB) 2024 22th April Morning Shift | 2024 | 2 | View paper |
| MHT CET 2024 10TH MAY MORNING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 11TH MAY MORNING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 15TH MAY EVENING SHIFT | 2024 | 1 | View paper |
| MHT CET 2024 15TH MAY MORNING SHIFT | 2024 | 1 | View paper |
| MHT CET 2024 16TH MAY EVENING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 16TH MAY MORNING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 2ND MAY EVENING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 2ND MAY MORNING SHIFT | 2024 | 1 | View paper |
| MHT CET 2024 3RD MAY EVENING SHIFT | 2024 | 1 | View paper |
| MHT CET 2024 3RD MAY MORNING SHIFT | 2024 | 1 | View paper |
| MHT CET 2024 4TH MAY MORNING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 9TH MAY EVENING SHIFT | 2024 | 2 | View paper |
| MHT CET 2024 9TH MAY MORNING SHIFT | 2024 | 3 | View paper |
| MHT CET 2023 10TH MAY EVENING SHIFT | 2023 | 2 | View paper |
| MHT CET 2023 10TH MAY MORNING SHIFT | 2023 | 3 | View paper |
| MHT CET 2023 11TH MAY EVENING SHIFT | 2023 | 3 | View paper |
| MHT CET 2023 11TH MAY MORNING SHIFT | 2023 | 1 | View paper |
| MHT CET 2023 12TH MAY EVENING SHIFT | 2023 | 1 | View paper |
| MHT CET 2023 12TH MAY MORNING SHIFT | 2023 | 3 | View paper |
| MHT CET 2023 13TH MAY EVENING SHIFT | 2023 | 2 | View paper |
| MHT CET 2023 14TH MAY EVENING SHIFT | 2023 | 2 | View paper |
| MHT CET 2023 14TH MAY MORNING SHIFT | 2023 | 1 | View paper |
| MHT CET 2023 9TH MAY EVENING SHIFT | 2023 | 1 | View paper |
| MHT CET 2023 9TH MAY MORNING SHIFT | 2023 | 3 | View paper |
| MHT CET 2022 11TH AUGUST EVENING SHIFT | 2022 | 3 | View paper |
| MHT CET 2021 20TH SEPTEMBER EVENING SHIFT | 2021 | 2 | View paper |
| MHT CET 2021 20TH SEPTEMBER MORNING SHIFT | 2021 | 1 | View paper |
| MHT CET 2021 21TH SEPTEMBER EVENING SHIFT | 2021 | 2 | View paper |
| MHT CET 2021 21TH SEPTEMBER MORNING SHIFT | 2021 | 2 | View paper |
| MHT CET 2021 22TH SEPTEMBER EVENING SHIFT | 2021 | 1 | View paper |
| MHT CET 2021 22TH SEPTEMBER MORNING SHIFT | 2021 | 3 | View paper |
| MHT CET 2021 23RD SEPTEMBER EVENING SHIFT | 2021 | 2 | View paper |
| MHT CET 2021 23th September Morning Shift | 2021 | 1 | View paper |
| MHT CET 2021 24TH SEPTEMBER EVENING SHIFT | 2021 | 2 | View paper |
| MHT CET 2021 24TH SEPTEMBER MORNING SHIFT | 2021 | 2 | View paper |
| MHT CET 2020 16TH OCTOBER EVENING SHIFT | 2020 | 1 | View paper |
| MHT CET 2020 16TH OCTOBER MORNING SHIFT | 2020 | 1 | View paper |
| MHT CET 2020 19TH OCTOBER EVENING SHIFT | 2020 | 1 | View paper |
| MHT CET 2019 2ND MAY EVENING SHIFT | 2019 | 1 | View paper |
| MHT CET 2019 2ND MAY MORNING SHIFT | 2019 | 1 | View paper |
Practice every matching question in batches of 20, with every available option.
In a parallel plate air capacitor the distance between plates is reduced to one fourth and the space between them is filled with a dielectric medium of constant 2 . If the initial capacity of the capacitor is $4 \mu \mathrm{~F}$. then its new capacity is
Which of the following combinations of 7 identical capacitors each of $2 \mu \mathrm{~F}$ gives a resultant capacitance of $10 / 11 \mu \mathrm{~F}$ ?
Five capacitors each of capacity \(C\) are connected as shown in figure. If their resultant capacity is \(2 \mu \mathrm{F}\), then the capacity of each condenser is

The capacitance of a parallel plate capacitor with air as medium is \(3 \mu \mathrm{F}\). With the introduction of a dielectric medium between the plates, the capacitance becomes \(15 \mu \mathrm{F}\). The permittivity of the medium in \(\mathrm{SI}\) unit is \([\varepsilon_0=8.85 \times 10^{-12} \mathrm{SI}\) unit]
Two capacitors of capacities $2 \mu \mathrm{~F}$ and $4 \mu \mathrm{~F}$ are connected in parallel. A third capacitor of $6 \mu \mathrm{~F}$ capacity is connected in series with this combination. A battery of 12 V is connected across this combination. The charge on $2 \mu \mathrm{~F}$ capacitor is
In the arrangement of the capacitors as shown in figure, each capacitor is of 6 \(\mu\)F, then equivalent capacity between points A and B is

A parallel plate air capacitor is charged upto 100 V. A plate 2 mm thick is inserted between the plates. Then to maintain the same potential difference, the distance between the plates is increased by 1.6 mm. The dielectric constant of the thick plate is
A parallel plate capacitor filled with oil of a dielectric constant 3 between the plates has capacitance 'C'. If the oil is removed, then the capacitance of the capacitor will be
Two identical parallel plate air capacitors are connected in series to a battery of emf '\(\mathrm{V}\)'. If one of the capacitor is inserted in liquid of dielectric constant '\(\mathrm{K}\)' then, potential difference of the other capacitor will become
A condenser of capacity '\(\mathrm{C}_1\)' is charged to potential '\(\mathrm{V}_1\)' and then disconnected. Uncharged capacitor of capacity '\(\mathrm{C}_2\)' is connected in parallel with '\(\mathrm{C}_1\)'. The resultant potential '\(\mathrm{V}_2\)' is
An air filled parallel plate capacitor has a capacity \(2 \mathrm{~pF}\). The sepeartion of the plates is doubled and the interspace between the plates is filled with dielectric material, then the capacity is increased to \(6 ~\mathrm{pF}\). The dielectric constant of the material is
The resultant capacity between points A and B in the given circuit is

In parallel plate capacitor, electric field between the plates is '\(E\)'. If the charge on the plates is '\(Q\)' then the force on each plate is
If the charge on the capacitor is increased by 2 C the energy stored in it increased by 21%. Total original charge on the capacitor is
When the battery across the plates of a charged condenser is disconnected and a dielectric slab is introduced between its plates then the energy stored
In the given figure potential at point 'A' is 900 volt and point 'B' is earthed. What will be the potential at point 'P' ?

If the potential difference across a capacitor is increased from \(5 \mathrm{~V}\) to \(15 \mathrm{~V}\), then the ratio of final energy to initial energy stored in the capacitor is
The charge on each capacitor when a voltage source os 15 V is connected in the circuit as shown, is

A battery is used to charge a parallel plate capacitor till the potential difference between the plates becomes equal to the e.m.f. of the battery. The ratio of the energy stored int he capacitor to the work done by the battery will be
Capacitors of capacities \(\mathrm{C}_1, \mathrm{C}_2\) and \(\mathrm{C}_3\) are connected in series. If the combination is connected to a supply of '\(\mathrm{V}\)' volt, then potential difference across capacitor '\(\mathrm{C}_1\)' is
Showing 20 of 129 questions