CBSE Class 12 Mathematics Chapter 7: Integrals Notes

These notes for CBSE Class 12 Mathematics Chapter 7, Integrals, explain the fundamental concept of integration as the inverse operation of differentiation. It defines the indefinite integral, the constant of integration, and the components of an integral expression. The geometrical interpretation of indefinite integrals is discussed, illustrating how different constants of integration represent a family of parallel curves. The notes compare differentiation and integration, highlighting their linear operator properties and the existence of non-differentiable and non-integrable functions. Various integration methods are covered, including substitution, trigonometric identities, standard substitutions, special integrals, integration by parts (using the ILATE rule), and integration using partial fractions for rational functions. It also touches upon integrating irrational algebraic functions, hyperbolic functions, and specific forms like (bx^m + bx^n)^p. These notes are designed to aid students in understanding and revising the key concepts of integration for their exams.

Last optimized 10 Aug 2026

Keep studying

Jump to solutions, books, papers, or another subject — without leaving NCERT Help.

NCERT Notes for Class 12 Mathematics

Chapter 7: Integrals

Let f(x) be a function. Then, the collection of all its primitives is called the indefinite

integral of f(x) and is denoted by ?f(x)dx. Integration as inverse operation of differentiation. If

d/dx {?(x)) = f(x), ?f(x)dx = ?(x) + C, where C is called the constant of integration or arbitrary

Symbols f(x) ? Integrand

f(x)dx ? Element of integration

?? Sign of integral

?(x) ? Anti-derivative or primitive or integral of function f(x)

The process of finding functions whose derivative is given, is called anti-differentiation or

integration.

Geometrical Interpretation of Indefinite Integral

If d/dx {?(x)} = f (x), then ?f(x)dx = ?(x) + C. For different values of C, we get different

functions, differing only by a constant. The graphs of these functions give us an infinite family

of curves such that at the points on these curves with the same x-coordinate, the tangents are

parallel as they have the same slope ?’(x) = f(x).

Consider the integral of 1/2?x

i.e., ?1/2?xdx = ?x + C, C ? R

Above figure shows some members of the family of curves given by y = + C for different C ? R.

Comparison between Differentiation and Integration

(i) Both differentiation and integration are linear operator on functions as

d/dx {af(x) ± bg(x)} = a d/dx{f(x) ± d/dx{g(x)} and ?[a.f(x) ± b.g(x)dx = a ?f(x)dx ± b ?g(x)dx

(ii) All functions are not differentiable, similarly there are some function which are not

integrable.

(iii) Integral of a function is always discussed in an interval but derivative of a function can be

(iv) Geometrically derivative of a function represents slope of the tangent to the graph of

function at the point. On the other hand, integral of a function represents an infinite family of

curves placed parallel to each other having parallel tangents at points of intersection of the

curves with a line parallel to Y-axis.

Rules of Integration

Rules of Integration

Method of Substitution

Method of Substitution

Basic Formulae Using Method of Substitution
Basic Formulae Using Method of Substitution

If degree of the numerator of the integrand is equal to or greater than that of denominator divide the numerator by the denominator until the degree of the remainder is less than that of denominator i.e., (Numerator / Denominator) = Quotient + (Remainder / Denominator)

Trigonometric Identities Used for Conversion of Integrals into the Integrable Forms

Trigonometric Identities Used for Conversion of Integrals into the Integrable Forms

Standard Substitution

Standard Substitution

Special Integrals

Special Integrals

Important Forms to be converted into Special Integrals
(i) Form I

Important Forms to be converted into Special Integrals

(ii) Form II

Important Forms to be converted into Special Integrals.

Put px + q = ?d / dx (ax2 + bx + c) + mu; Now, find values of ? and mu; and integrate.

(iii) Form III

when P(x) is a polynomial of degree 2 or more carry out the dimension and express in the form

P(x) / (ax2 + bx + c) = Q(x) + R(x) / (ax2 + bx + c), where R(x) is a linear expression or

constant, then integral reduces to the form discussed earlier.

(iv) Form IV

Important Forms to be converted into Special Integrals

After dividing both numerator and denominator by x2, put x – a2 / x = t or x + (a2 / x) = t.

(v) Form V

To evaluate the above type of integrals, we proceed as follow

(a) Divide numerator and denominator by cos2x.

(b) Rreplace sec2x, if any in denominator by 1 + tan2 x.

(c) Put tan x = t, then sec2xdx = dt

(vi) Form VI

Important Forms to be converted into Special Integrals

(vii) Form VII

Important Forms to be converted into Special Integrals

(viii) Form VIII

Important Forms to be converted into Special Integrals

(ix) Form IX

To evaluate the above type of integrals, we proceed as follows

• Divide numerator and denominator by x2

• Express the denominator of integrands in the form of (x + 1/x)2 ± k2

• Introduce (x + 1/x) or d (x – 1/x) or both in numerator.

• Put x + 1/x = t or x – 1/x = t as the case may be.

• Integral reduced to the form of ? 1 / x2 + a2dx or ? 1 / x2 + a2dx

(x) Form X

Important Forms to be converted into Special Integrals

Integration by Parts

This method is used to integrate the product of two functions. If f(x) and g(x) be two integrable

functions, then

(i) We use the following preferential order for taking the first function. Inverse? Logarithm? Algebraic ? Trigonometric? Exponential. In short we write it HATE.

(ii) If one of the function is not directly integrable, then we take it a the first function.

(iii) If only one function is there, i.e., ?log x dx, then 1 (unity) is taken as second function.

(iv) If both the functions are directly integrable, then the first function is chosen in such a way that its derivative vanishes easily or the function obtained in integral sign is easilY integrable.

Integral of the Form

Integral of the Form

Integration Using Partial Fractions

(i) If f(x) and g(x) are two polynomials, then f(x) / g(x) defines a rational algebraic function of

x. If degree of f(x) < degree of g(x), then f(x) / g(x) is called a proper rational function.

(ii) If degree of f(x) ? degree of g(x), then f(x) /g(x) is called an improper g(x) rational

function.

(iii) If f(x) / g(x) isan improper rational function, then we divide f(x) by g(x) g(x) and convert it into a proper rational function as f(x) / g(x) = ?(x) + h(x) / g(x).

(iv) Any proper rational function f(x) / g(x) can be expressed as the sum of rational functions

each having a simple factor of g(x). Each such fraction is called a partial fraction and the

process of obtaining them, is called the resolution or decomposition of f(x) /g(x) partial

fraction.

Shortcut for Finding Values of A, B and C etc.

Case I. When g(x) is expressible as the product of non-repeated line factors.

Trick To find Ap put x = a in numerator and denominator after P deleting the factor (x — ap).

Case II. When g(x) is expressible as product of repeated linear factors.

Here, all the constant cannot be calculated by using the method in Case I. However, Bl, B2, B3,

… , Bn can be found using the same method i.e., shortcut can be applied only in the case of

non-repeated linear factor.

Integration of Irrational Algebraic Function

Irrational function of the form of (ax + b)1/n and x can be evaluated by substitution (ax + b) = tn,

thus

Integrals of the Type (bxm + bxn)P

Case I. If P ? N (natural number) we expand the binomial theorem and integrate.

Case II. If P ? Z (integers), put x = pk, where k denominator of m and n.

Case III. If (m+1)/n is an integer, we put (a + bxn) = rk, where k is th denominator of the fraction.

Integration of Hyperbolic Functions

• ?sinh x dx = cosh x + C

• ?cosh x dx = sinh x + C

• ?sech2x dx = tanh x + C

• ?cosech2x dx = – coth x + C

• ?sech x tanh x dx = – sech x + C

• ?cosech x coth x dx = – cosech x + C

Case IV If {(m+1)/n} + P is an integer, we put (a + bxn) = rkxn is the denominator of the fraction p.

Frequently asked questions

What is integration in Class 12 Maths?

Integration is defined as the inverse operation of differentiation. It is the process of finding a function whose derivative is given.

What is the constant of integration?

The constant of integration, denoted by 'C', is an arbitrary constant added to the result of an indefinite integral because the derivative of a constant is zero.

What is the geometrical meaning of an indefinite integral?

Geometrically, an indefinite integral represents an infinite family of parallel curves, where each curve corresponds to a different value of the constant of integration.

What are the main methods of integration covered in Class 12 Maths?

The main methods include the method of substitution, integration by parts, and integration using partial fractions.

What is the ILATE rule used for in integration?

The ILATE rule (Inverse, Logarithmic, Algebraic, Trigonometric, Exponential) is a preferential order used to select the first function when applying the integration by parts method.

How are partial fractions used in integration?

Partial fractions are used to decompose complex rational functions into simpler fractions that can be integrated more easily.

Are hyperbolic functions covered in the Integrals chapter?

Yes, the notes cover the basic integrals of hyperbolic functions like sinh x, cosh x, sech2x, etc.