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Previous year question hub

Vector Calculus - General Aptitude - General Aptitude (GA) Previous Year Questions

Practice Vector Calculus - General Aptitude - General Aptitude (GA) previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

2Papers
1Years
2Questions
1Topics

Vector Calculus question pattern

Every graph below is calculated only from this selection.

Questions by year

Compare question counts across years.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 2 100%

Question type distribution

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

MCQ 1 50%
Numerical Answer Type (NAT) 1 50%

Subject weightage

Top subjects by unique question coverage.

General Aptitude (GA)
2 Qs

Most asked topics

Top topics across the included previous year papers.

General Aptitude
2 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Vector Calculus
2 Qs

Paper coverage

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

Electronics & Communication Engineering (EC) 2015 [Session 1]
1 Qs
Electronics & Communication Engineering (EC) 2015 [Session 3]
1 Qs

Included previous year papers

Newest papers appear first. Search these papers or sort by year and name.

Paper nameYearPDFAttempt
Electronics & Communication Engineering (EC) 2015 [Session 1]2015
1 questions in this view
2015
Electronics & Communication Engineering (EC) 2015 [Session 3]2015
1 questions in this view
2015

All Vector Calculus previous year questions

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

1
2015 · General Aptitude (GA) · General Aptitude · Vector Calculus
Electronics & Communication Engineering (EC) 2015 [Session 1]
A vector \(\vec{P}\) is given by \(\vec{P} = x^3 y \hat{a}_x - x^2 y^2 \hat{a}_y - x^2 y z \hat{a}_z\). Which one of the following statements is TRUE?
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2
2015 · General Aptitude (GA) · General Aptitude · Vector Calculus
Electronics & Communication Engineering (EC) 2015 [Session 3]
A vector field D = 2ρ^2 a_ρ + z a_z exists inside a cylindrical region enclosed by the surfaces ρ = 1, z = 0 and z = 5. Let S be the surface bounding this cylindrical region. The surface integral of this field on S (∯_S D · ds) is ______.
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