KCET SERIES Physics
Combination Of Capacitors
9 previous year questions.
Volume: 9 Ques
Yield: Medium
High-Yield Trend
1
2020 1
2019 1
2018 1
2017 1
2014 1
2013 1
2007 1
2004 1
2002 Chapter Questions 9 MCQs
01
PYQ 2002
medium
physics ID: kcet-200
Two capacitors of capacitance and are charged to a potential of . They are now connected to each other, with the positive plate of each joined to the negative plate of the other. The potential difference across each will be
1
6 V
2
4 V
3
3 V
4
Zero
02
PYQ 2004
medium
physics ID: kcet-200
Effective capacitance between A and B in the figure shown is (all capacitances are in )
1
2
3
4
03
PYQ 2007
easy
physics ID: kcet-200
The equation to two circles which touch the Y-axis at and make an intercept of units on X-axis are
1
2
3
4
04
PYQ 2013
medium
physics ID: kcet-201
See the diagram. Area of each plate is and is given to .Then the potential of becomes
1
13 V
2
10 V
3
6.67 V
4
8.825 V
05
PYQ 2014
medium
physics ID: kcet-201
Two capacitors of and are connected to and sources respectively. If they are connected by the wire, what is the common potential of the capacitors ?
1
133.3 volt
2
150 volt
3
300 volt
4
400 volt
06
PYQ 2017
medium
physics ID: kcet-201
The minimum value of effective capacitance that can be obtained by combining capacitors of capacitances and is
1
2
1 PE
3
4
2 pF
07
PYQ 2018
medium
physics ID: kcet-201
Two capacitors of and are connected in series and a potential difference of 900 V is applied across the combination. They are then disconnected and reconnected in parallel. The potential difference across the combination is
1
Zero
2
100 V
3
200 V
4
400 V
08
PYQ 2019
medium
physics ID: kcet-201
The equivalent capacitance between A and B is,
1
150 pF
2
50 pF
3
300 pF
4
09
PYQ 2020
hard
physics ID: kcet-202
The difference between equivalent capacitances of two identical capacitors connected in parallel to that in series is . The value of capacitance of each capacitor is
1
2
3
4
About Combination Of Capacitors - KCET
Combination Of Capacitors is a vital chapter for KCET 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.
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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 Combination Of Capacitors carry the most weight. Then, tackle the questions iteratively to solidify your understanding.


