MHT-CET SERIES
Physics

Electrostatic Potential And Capacitance

7 previous year questions.

Volume: 7 Ques
Yield: Medium

High-Yield Trend

3
2025
1
2022
1
2010
1
2008
1
2007

Chapter Questions
7 MCQs

01
PYQ 2007
medium
physics ID: mht-cet-
If an electron is brought toward another electron, the electric potential energy of the system
1
becomes zero
2
increases
3
remains the same
4
decreases.
02
PYQ 2008
easy
physics ID: mht-cet-
A parallel plate condenser with oil (dielectric constant 2) between the plates has capacitance C. lf oil is removed, the capacitance of capacitor becomes
1
2
2C
3
4
03
PYQ 2010
medium
physics ID: mht-cet-
In a parallel plate capacitor, the capacity increases if
1
area of the plate is decreased
2
distance between the plates increases
3
area of the plate is increased
4
dielectric constant decrease
04
PYQ 2022
easy
physics ID: mht-cet-

Four identical condensers are connected in parallel and then in series equivalent capacitance in series to that in parallel combination is

1
16 : 1
2
4 : 1
3
1 : 4
4
1 : 16
05
PYQ 2025
hard
physics ID: mht-cet-
A 5-ohm resistor is connected to a 10 V battery. Calculate the current flowing through the resistor.
1


2


3

4

06
PYQ 2025
medium
physics ID: mht-cet-
Two point charges and are separated by a distance of 0.3 m in air. What is the magnitude of the electrostatic force between them?
1


2

3


4

07
PYQ 2025
hard
physics ID: mht-cet-
The electric field at a point in space is and the potential at the same point is . What is the potential energy of a charge of placed at that point?
1

2

3

4

About Electrostatic Potential And Capacitance - MHT-CET

Electrostatic Potential And Capacitance is a vital chapter for MHT-CET aspirants. Mastering the concepts covered in this chapter is essential for securing a top rank.

By rigorously practicing the previous year questions associated with this chapter, you can identify high-yield topics, understand the examiner's perspective, and boost your confidence during the actual exam.

Frequently Asked Questions

Why focus on Electrostatic Potential And Capacitance PYQs?

Analyzing PYQs for this specific chapter reveals the most frequently tested concepts and the typical complexity of questions, allowing you to tailor your study plan efficiently.

How to best use this analysis?

Review the topic breakdown to see which sub-topics within Electrostatic Potential And Capacitance carry the most weight. Then, tackle the questions iteratively to solidify your understanding.