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Previous year question hub

Capacitor - Electromagnetism - Physics Previous Year Questions

Practice Capacitor - Electromagnetism - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

9Papers
2Years
13Questions
1Topics

Capacitor question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Capacitor. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Not classified 8 61.5%
Medium 3 23.1%
Easy 1 7.7%
Hard 1 7.7%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

Multiple Choices 13 100%

Subject weightage

Top subjects by unique question coverage.

Physics
13 Qs

Most asked topics

Top topics across the included previous year papers.

Electromagnetism
13 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Capacitor
13 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

TG EAPCET 2025 ONLINE 4TH MAY MORNING SHIFT
2 Qs
TG EAPCET 2025 ONLINE 2ND MAY MORNING SHIFT
1 Qs
TG EAPCET 2025 ONLINE 3RD MAY EVENING SHIFT
1 Qs
TG EAPCET 2025 ONLINE 3RD MAY MORNING SHIFT
1 Qs
TG EAPCET 2024 ONLINE 10TH MAY EVENING SHIFT
2 Qs
TG EAPCET 2024 ONLINE 11TH MAY MORNING SHIFT
2 Qs
TG EAPCET 2024 ONLINE 9TH MAY EVENING SHIFT
2 Qs
TG EAPCET 2024 (Online) 9th May Morning Shift
1 Qs
TG EAPCET 2024 ONLINE 10TH MAY MORNING SHIFT
1 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
TG EAPCET 2025 ONLINE 2ND MAY MORNING SHIFT20251View paper
TG EAPCET 2025 ONLINE 3RD MAY EVENING SHIFT20251View paper
TG EAPCET 2025 ONLINE 3RD MAY MORNING SHIFT20251View paper
TG EAPCET 2025 ONLINE 4TH MAY MORNING SHIFT20252View paper
TG EAPCET 2024 (Online) 9th May Morning Shift20241View paper
TG EAPCET 2024 ONLINE 10TH MAY EVENING SHIFT20242View paper
TG EAPCET 2024 ONLINE 10TH MAY MORNING SHIFT20241View paper
TG EAPCET 2024 ONLINE 11TH MAY MORNING SHIFT20242View paper
TG EAPCET 2024 ONLINE 9TH MAY EVENING SHIFT20242View paper

All Capacitor previous year questions

Practice every matching question in batches of 20, with every available option.

1
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 10TH MAY EVENING SHIFT
Two capacitors of capacitances $1 \mu \mathrm{~F}$ and $2 \mu \mathrm{~F}$ can separately withstand potentials of 6 kV and 4 kV respectively. The total potential, they together can withstand when they are connected in series is
A
9 kV
B
4 kV
C
6 kV
D
2 kV
Open complete paper
2
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 10TH MAY EVENING SHIFT
A capacitor of capacitance $(4.0 \pm 0.2) \mu \mathrm{F}$ is charged to a potential of $(10.0 \pm 0 \mathrm{l}) \mathrm{V}$. The charge on the capacitor is
A
$2.5 \mu \mathrm{C} \pm 3 \%$
B
$2.5 \mu \mathrm{C} \pm 6 \%$
C
$40 \mu \mathrm{C} \pm 6 \%$
D
$2.5 \mu \mathrm{C} \pm 3 \%$
Open complete paper
3
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 10TH MAY MORNING SHIFT
A $10 \mu \mathrm{~F}$ capacitor is charged by a 100 V battery. It is disconnected from the battery and is connected to another uncharged capacitor of capacitance $30 \mu \mathrm{~F}$. During this process, the electrostatic energy lost by the first capacitor is
A
$5 \times 10^{-2} \mathrm{~J}$
B
$125 \times 10^{-2} \mathrm{~J}$
C
$2.75 \times 10^{-2} \mathrm{~J}$
D
$375 \times 10^{-2} \mathrm{~J}$
Open complete paper
4
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 11TH MAY MORNING SHIFT
A capacitor of capacitance $C$ is charged to a potential $V$ and disconnected from the battery. Now, if the space between the plates is completely filled with a substance of dielectric constant $K$, the final charge and the final potential on the capacitor are respectively.
A
$K C V$ and $\frac{V}{K}$
B
$C V$ and $\frac{V}{K}$
C
$\frac{C V}{K}$ and $K V$
D
$\frac{C V}{K}$ and $\frac{V}{K}$
Open complete paper
5
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 11TH MAY MORNING SHIFT
For the displacement current through the plates of a parallel plate capacitor of capacitance $30 \mu \mathrm{~F}$ to be $150 \mu \mathrm{~A}$, the potential difference across the plates of the capacitor has to vary at the rate of
A
$10 \mathrm{Vs}^{-1}$
B
$5 \mathrm{Vs}^{-1}$
C
$15 \mathrm{Vs}^{-1}$
D
$20 \mathrm{Vs}^{-1}$
Open complete paper
6
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 9TH MAY EVENING SHIFT
The natural frequency of an $L-C$ circuit is 120 kHz . When the capacitor in the circuit is totally filled dielectric material, the natural frequency of the circuit decreases by 20 kHz . Dielectric constant of material is
A
3.33
B
1.44
C
2.12
D
1.91
Open complete paper
7
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 ONLINE 9TH MAY EVENING SHIFT
If half of the space between the plates of a parallel plate capacitor is filled with a medium of dielectric constant 4 , the capacitance is $C_1$. If one-third of the space between the plates of the capacitor is filled with the medium of dielectric constant 4 , the capacitance is $C_2$. If in both cases, the dielectric is placed parallel to the plated of the capacitor, then $C_1: C_2=$
A
$2: 3$
B
$4: 3$
C
$6: 5$
D
$7: 5$
Open complete paper
8
2025 · Physics · Electromagnetism · Capacitor
TG EAPCET 2025 ONLINE 2ND MAY MORNING SHIFT

As shown in the figure, a dielectric of constant $K$ is placed between the plates of a parallel plate capacitor and is charged to a potential $V$ using a battery. If the dielectric is pulled out after disconnecting the battery from the capacitor, the final potential difference across the plates of the capacitor is

TG EAPCET 2025 (Online) 2nd May Morning Shift Physics - Capacitor Question 16 English
A

$\left(1+\frac{1}{K}\right) 2 V$

B

$2 K V$

C

$\frac{2 V}{\left(1+\frac{1}{K}\right)}$

D

$\frac{V}{2}\left(1+\frac{1}{K}\right)$

Open complete paper
9
2025 · Physics · Electromagnetism · Capacitor
TG EAPCET 2025 ONLINE 3RD MAY EVENING SHIFT

A parallel plate capacitor with air as dielectric has a capacitance of $4 \mu \mathrm{~F}$. The space between the plates of the capacitor is completely filled with a material of dielectric constant 5 and charged to a potential of 100 V . The work done to completely remove the dielectric material after the capacitor is disconnected from the battery is

A

0.1 J

B

0.5 J

C

0.6 J

D

0.4 J

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10
2025 · Physics · Electromagnetism · Capacitor
TG EAPCET 2025 ONLINE 3RD MAY MORNING SHIFT

If the rate of change in electric flux between the plates of a capacitor is $9 \pi \times 10^3 \mathrm{Vms}^{-1}$, then the displacement current inside the capacitor is

A

$0.36 \mu \mathrm{~A}$

B

$0.25 \mu \mathrm{~A}$

C

$3.14 \mu \mathrm{~A}$

D

$4 \mu \mathrm{~A}$

Open complete paper
11
2025 · Physics · Electromagnetism · Capacitor
TG EAPCET 2025 ONLINE 4TH MAY MORNING SHIFT

If the rate of change of electric field across the plates of a parallel plate capacitor is $E$ and the displacement current is $I$, then the area of one plate of the capacitor is ( $\varepsilon_0$ is permittivity of free space)

A

$\frac{1}{2 \varepsilon_0 E}$

B

$\frac{2 I}{\varepsilon_0 E}$

C

$\varepsilon_0 E$

D

$\frac{1}{\varepsilon_0 E}$

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12
2025 · Physics · Electromagnetism · Capacitor
TG EAPCET 2025 ONLINE 4TH MAY MORNING SHIFT

A parallel plate capacitor of capacitance $10 \mu \mathrm{~F}$ is charged by a 220 V supply. The capacitor is then disconnected from the supply and is connected to another uncharged parallel plate capacitor of capacitance $12 \mu \mathrm{~F}$. The loss of electrostatic energy in this process is

A

132 mJ

B

220 mJ

C

66 mJ

D

110 mJ

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13
2024 · Physics · Electromagnetism · Capacitor
TG EAPCET 2024 (Online) 9th May Morning Shift
Three capacitors of capacitances $10 \mu \mathrm{~F}, 5 \mu \mathrm{~F}$ and $20 \mu \mathrm{~F}$ are connected in series with a 14 V DC supply. The charge on $5 \mu \mathrm{~F}$ capacitor is
A
$20 \mu \mathrm{C}$
B
$40 \mu \mathrm{C}$
C
$70 \mu \mathrm{C}$
D
$2.8 \mu \mathrm{C}$
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