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Previous year question hub

Electrical Circuits - Biomedical Engineering Previous Year Questions

Practice Electrical Circuits - Biomedical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

7Papers
7Years
22Questions
1Topics

Electrical Circuits question pattern

Every graph below is calculated only from this selection.

Questions by year

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

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 17 77.3%
Easy 5 22.7%

Question type distribution

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

Numerical Answer Type (NAT) 11 50%
MCQ 10 45.5%
MSQ 1 4.5%

Subject weightage

Top subjects by unique question coverage.

Biomedical Engineering
22 Qs

Most asked topics

Top topics across the included previous year papers.

Electrical Circuits
22 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Circuit Elements and Network Theorems
9 Qs
RLC Transients and Resonance
7 Qs
AC Circuit Analysis and Passive Filters
6 Qs

Paper coverage

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

Biomedical Engineering (BM) 2026
1 Qs
Biomedical Engineering (BM) 2025
3 Qs
Biomedical Engineering (BM) 2024
4 Qs
Biomedical Engineering (BM) 2023
5 Qs
Biomedical Engineering (BM) 2022
3 Qs
Biomedical Engineering (BM) 2021
3 Qs
Biomedical Engineering (BM) 2020
3 Qs

Browse by subtopics

Open a focused page built from the same verified paper data.

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Biomedical Engineering (BM) 202620261View paper
Biomedical Engineering (BM) 202520253View paper
Biomedical Engineering (BM) 202420244View paper
Biomedical Engineering (BM) 202320235View paper
Biomedical Engineering (BM) 202220223View paper
Biomedical Engineering (BM) 202120213View paper
Biomedical Engineering (BM) 202020203View paper

Sample previous year questions

A varied preview from the papers represented in this selection, with every available option.

1
2020 · Biomedical Engineering · Electrical Circuits · Circuit Elements and Network Theorems
Biomedical Engineering (BM) 2020
Two inductors with the details given below are wound separately on two identical ring type ferromagnetic cores.
CoilNumber of turnsGauge of wireSelf-Inductance
Coil-1NGL₁
Coil-22NG/2L₂

The ratio L₂/L₁ is ________.
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2
2021 · Biomedical Engineering · Electrical Circuits · Circuit Elements and Network Theorems
Biomedical Engineering (BM) 2021
In the circuit shown below, \(V_s = 100 V\), \(R_1 = 30 \Omega\), \(R_2 = 60 \Omega\), \(R_3 = 90 \Omega\), \(R_4 = 45 \Omega\), and \(R_5 = 30 \Omega\). The current flowing through resistor \(R_3\) is ____ A. (rounded off to two decimal places)

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3
2022 · Biomedical Engineering · Electrical Circuits · RLC Transients and Resonance
Biomedical Engineering (BM) 2022
A series RLC circuit with R = 10 Ω, L = 50 mH and C = 100 μF connected to 200 V, 50 Hz supply consumes power P. The value of L is changed such that this circuit consumes same power P but operates with lagging power factor. The new value of L is ______ mH (rounded off to two decimal places).
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4
2023 · Biomedical Engineering · Electrical Circuits · RLC Transients and Resonance
Biomedical Engineering (BM) 2023
In the following circuit, the switch S is open for \( t < 0 \) and closed for \( t \geq 0 \). What is the steady state voltage (in Volts) across the capacitor when the switch is closed? (Round off the answer to one decimal place.)

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5
2024 · Biomedical Engineering · Electrical Circuits · Circuit Elements and Network Theorems
Biomedical Engineering (BM) 2024
In the circuit below, what is the value of \(I_L\) to transfer the maximum power to load?

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6
2025 · Biomedical Engineering · Electrical Circuits · AC Circuit Analysis and Passive Filters
Biomedical Engineering (BM) 2025
A voltage source \( V_s = 5\sin \left( 100t + \frac{\pi}{2} \right) \) volts is driving a current \( I = 10 \sin \left( 100t + \frac{\pi}{6} \right) \) mA through a circuit.
The average power dissipated in the circuit is __________ mW.
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