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Previous year question hub

Calculus - Engineering Mathematics - Electronics & Communication Engineering Previous Year Questions

Practice Calculus - Engineering Mathematics - Electronics & Communication Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

23Papers
14Years
67Questions
1Topics

Calculus question pattern

Every graph below is calculated only from this selection.

Questions by year

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

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 49 73.1%
Medium 18 26.9%

Question type distribution

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

MCQ 50 74.6%
Numerical Answer Type (NAT) 14 20.9%
MSQ 2 3%
Fill in the blanks 1 1.5%

Subject weightage

Top subjects by unique question coverage.

Electronics & Communication Engineering
67 Qs

Most asked topics

Top topics across the included previous year papers.

Engineering Mathematics
67 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Calculus
67 Qs

Paper coverage

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

Electronics and Communication Engineering (EC) 2026
2 Qs
Electronics & Communication Engineering (EC) 2025
3 Qs
Electronics & Communication Engineering (EC) 2024
1 Qs
Electronics & Communication Engineering (EC) 2023
1 Qs
Electronics & Communication Engineering (EC) 2022
3 Qs
Electronics & Communication Engineering (EC) 2020
1 Qs
Electronics & Communication Engineering (EC) 2019
2 Qs
Electronics & Communication Engineering (EC) 2018
4 Qs
Electronics & Communication Engineering (EC) 2017
4 Qs
Electronics & Communication Engineering (EC) 2016 [Session 1]
5 Qs
Electronics & Communication Engineering (EC) 2016 [Session 2]
2 Qs
Electronics & Communication Engineering (EC) 2016 [Session 3]
2 Qs
Electronics & Communication Engineering (EC) 2015 [Session 1]
1 Qs
Electronics & Communication Engineering (EC) 2015 [Session 3]
1 Qs
Electronics & Communication Engineering (EC) 2014 [Session 4]
3 Qs
Electronics & Communication Engineering (EC) 2014 [Session 1]
2 Qs
Electronics & Communication Engineering (EC) 2014 [Session 2]
2 Qs
Electronics & Communication Engineering (EC) 2014 [Session 3]
2 Qs
Electronics & Communication Engineering (EC) 2013 [Session 1]
6 Qs
Electronics & Communication Engineering (EC) 2013 [Session 2]
6 Qs
Electronics & Communication Engineering (EC) 2013 [Session 3]
6 Qs
Electronics & Communication Engineering (EC) 2013 [Session 4]
6 Qs
Electronics & Communication Engineering (EC) 2012
2 Qs

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Electronics and Communication Engineering (EC) 202620262View paper
Electronics & Communication Engineering (EC) 202520253View paper
Electronics & Communication Engineering (EC) 202420241View paper
Electronics & Communication Engineering (EC) 202320231View paper
Electronics & Communication Engineering (EC) 202220223View paper
Electronics & Communication Engineering (EC) 202020201View paper
Electronics & Communication Engineering (EC) 201920192View paper
Electronics & Communication Engineering (EC) 201820184View paper
Electronics & Communication Engineering (EC) 201720174View paper
Electronics & Communication Engineering (EC) 2016 [Session 1]20165View paper
Electronics & Communication Engineering (EC) 2016 [Session 2]20162View paper
Electronics & Communication Engineering (EC) 2016 [Session 3]20162View paper
Electronics & Communication Engineering (EC) 2015 [Session 1]20151View paper
Electronics & Communication Engineering (EC) 2015 [Session 3]20151View paper
Electronics & Communication Engineering (EC) 2014 [Session 1]20142View paper
Electronics & Communication Engineering (EC) 2014 [Session 2]20142View paper
Electronics & Communication Engineering (EC) 2014 [Session 3]20142View paper
Electronics & Communication Engineering (EC) 2014 [Session 4]20143View paper
Electronics & Communication Engineering (EC) 2013 [Session 1]20136View paper
Electronics & Communication Engineering (EC) 2013 [Session 2]20136View paper
Electronics & Communication Engineering (EC) 2013 [Session 3]20136View paper
Electronics & Communication Engineering (EC) 2013 [Session 4]20136View paper
Electronics & Communication Engineering (EC) 201220122View paper

All Calculus previous year questions

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

1
2012 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2012
The maximum value of \( f(x) = x^3 - 9x^2 + 24x + 5 \) in the interval \( [1, 6] \) is
Open complete paper
2
2012 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2012
If (1.001)^{1259} = 3.52 and (1.001)^{2062} = 7.85, then (1.001)^{3321} =
Open complete paper
3
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 1]
The maximum value of \(\theta\) until which the approximation \(\sin \theta = \theta\) holds to within 10% error is
Open complete paper
4
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 1]
A polynomial \( f(x) = a_4 x^4 + a_3 x^3 + a_2 x^2 + a_1 x - a_0 \) with all coefficients positive has
Open complete paper
5
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 1]
Choose the grammatically CORRECT sentence:
Open complete paper
6
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 1]
Complete the sentence:
Dare _______________ mistakes.
Open complete paper
7
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 1]
Find the sum to \(n\) terms of the series \(10+84+734+.....\)
Open complete paper
8
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 1]
The set of values of \(p\) for which the roots of the equation \(3x^2+2x+p(p-1) = 0\) are of opposite sign is
Open complete paper
9
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 2]
A polynomial \(f(x)=a_4x^4+a_3x^3+a_2x^2+a_1x-a_0\) with all coefficients positive has
Open complete paper
10
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 2]
The maximum value of \(\theta\) until which the approximation \(\sin\theta\approx\theta\) holds to within 10% error is
Open complete paper
11
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 2]
Find the sum to n terms of the series 10+84+734+ .....
Open complete paper
12
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 2]
The set of values of p for which the roots of the equation \(3x^2+2x+p(p-1) = 0\) are of opposite sign is
Open complete paper
13
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 3]
The maximum value of \( \theta \) until which the approximation \( \sin \theta \approx \theta \) holds to within 10% error is
Open complete paper
14
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 3]
A polynomial \(f(x) = a_4 x^4 + a_3 x^3 + a_2 x^2 + a_1 x - a_0\) with all coefficients positive has
Open complete paper
15
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 4]
The maximum value of \(\theta\) until which the approximation \(\sin \theta \approx \theta\) holds to within 10% error is
Open complete paper
16
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 4]
Complete the sentence:
Dare ______ mistakes.
Open complete paper
17
2013 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2013 [Session 4]
The set of values of p for which the roots of the equation \(3x^2+2x+p(p-1)=0\) are of opposite sign is
Open complete paper
18
2014 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2014 [Session 1]
The Taylor series expansion of \(3\sin x + 2\cos x\) is
Open complete paper
19
2014 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2014 [Session 1]
The volume under the surface \(z(x,y) = x + y\) and above the triangle in the x-y plane defined by \(\{0 \leq y \leq x \text{ and } 0 \leq x \leq 12\}\) is ______.
Open complete paper
20
2014 · Electronics & Communication Engineering · Engineering Mathematics · Calculus
Electronics & Communication Engineering (EC) 2014 [Session 2]
Which of the options given below best completes the following sentence?
She will feel much better if she ________________.
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Showing 20 of 58 questions