CBSE Class 9th Maths Syllabus 2017-2018 Session
CBSE Class 9th Maths Syllabus : Hi friends, today we are going to discuss you about the latest Syllabus of Class 9th Math. As you know very well that Central Board of Secondary Education (CBSE) has its own curriculum and syllabus designed for the students and they hold the supreme authority to change it further for the benefit of students. So its always a wise decision to keep an eye on what happening around with the subject you are going to learn. This year CBSE made little bit changes in class 9th syllabus.
Books for class 9th Math:
- Mathematics Publication:- NCERT
- R.S.Agarwal Bharti Bhawan (Reference Book)
Overview of CBSE Class 9th Maths Syllabus, Chapter wise maths syllabus for class 9, Class 9th maths syllabus for session 2017-2018.
Formative Assessment (FA-1)
Chapter Wise | Marks Per Chapter | |
I | Number System | 17 |
II | Algebra | 25 |
III | Geometry | 37 |
IV | Co-ordinate Geometry | 6 |
V | Mensuration | 5 |
Total | 90 |
Formative Assessment 2 (FA-2)
Chapters | Marks Per Chapter | |
II | Algebra (contd.) | 16 |
III | Geometry (contd.) | 38 |
V | Mensuration (contd.) | 18 |
VI | Statistics | 10 |
VII | Probability | 8 |
Total | 90 |
Contents
‘CBSE Class 9th Maths Syllabus’ Chapter Details in Brief
UNIT first: NUMBER SYSTEMS
1. Topics detail of Real Numbers:
- Review of representation of natural numbers:
– integers
– rational numbers on the number line
– Representation of terminating / non-terminating recurring decimals, on the number line through successive magnification.
– Rational numbers as recurring/terminating decimals. - Examples of non-recurring / non-terminating decimals:
– The existence of non-rational numbers (irrational numbers) such as √2, √3 and their representation on the number line.
– Explaining that every real number is represented by a unique point on the number line and conversely, every point on the number line represents a unique real number. - The existence of √x for a given positive real number x (visual proof to be emphasized).
- Definition of nth root of a real number.
- Recall of laws of exponents with integral powers:
– Rational exponents with positive real bases (to be done by particular cases
– allowing the learner to arrive at the general laws.) - Rationalization (with precise meaning) of real numbers of the type 1/(a+b√x) and 1/(√x+√y) (and their combinations) where x and y are natural numbers and a and b are integers.
UNIT second: ALGEBRA
1.Topics detail of Polynomials
Definition of a polynomial in one variable, with examples and counter examples.
-Coefficients of a polynomial, terms of a polynomial and zero polynomial.
-The degree of a polynomial. Constant, linear, quadratic and cubic polynomials. Monomials, binomials, trinomials.
-Factors and multiples. Zeros of a polynomial.
-Motivate and State the Remainder Theorem with examples.
-Statement and proof of the Factor Theorem.
-Factorization of ax^{2} + bx + c, a ≠ 0 where a, b and c are real numbers, and of cubic polynomials using the Factor Theorem.
Recall of algebraic expressions and identities. Further verification of identities of the type (x + y + z)^{2} = x^{2}+ y^{2} + z^{2} + 2xy + 2yz + 2zx, (x ± y)^{3} = x^{3} ± y^{3} ± 3xy (x ± y), x³ ± y³ = (x ± y) (x² ± xy + y²), x^{3} + y^{3} + z^{3} – 3xyz = (x + y + z) (x^{2} + y^{2} + z^{2} – xy – yz – zx) and their use in factorization of polynomials. Simple expressions reducible to these polynomials.
UNIT third: GEOMETRY
1.Topics detail of Introduction To Euclid’s Geometry
History – Geometry in India and Euclid’s geometry. Euclid’s method of formalizing observed phenomenon into rigorous mathematics with definitions, common/obvious notions, axioms/postulates, and theorems.
-The five postulates of Euclid.
-Equivalent versions of the fifth postulate.
-Showing the relationship between axiom and theorem, for example:
- (Axiom) 1. Given two distinct points, there exists one and only one line through them.
- (Theorem) 2. (Prove) Two distinct lines cannot have more than one point in common.
2.Topics detail of Lines And Angles
- (Motivate) If a ray stands on a line, then the sum of the two adjacent angles so formed is 180° and the converse.
- (Prove) If two lines intersect, vertically opposite angles are equal.
- (Motivate) Results on corresponding angles, alternate angles, interior angles when a transversal intersects two parallel lines.
- (Motivate) Lines which are parallel to a given line are parallel.
- (Prove) The sum of the angles of a triangle is 180°.
- (Motivate) If a side of a triangle is produced, the exterior angle so formed is equal to the sum of the two interior opposite angles.
3.Topics detail of Triangles
- (Motivate) Two triangles are congruent if any two sides and the included angle of one triangle is equal to any two sides and the included angle of the other triangle (SAS Congruence).
- (Prove) Two triangles are congruent if any two angles and the included side of one triangle is equal to any two angles and the included side of the other triangle (ASA Congruence).
- (Motivate) Two triangles are congruent if the three sides of one triangle are equal to three sides of the other triangle (SSS Congruence).
- (Motivate) Two right triangles are congruent if the hypotenuse and a side of one triangle are equal (respectively) to the hypotenuse and a side of the other triangle.
- (Prove) The angles opposite to equal sides of a triangle are equal.
- (Motivate) The sides opposite to equal angles of a triangle are equal.
- (Motivate) Triangle inequalities and relation between ‘angle and facing side’ inequalities in triangles.
UNIT four: COORDINATE GEOMETRY
1.Topics detail of Coordinate Geometry
The Cartesian plane, coordinates of a point, names and terms associated with the coordinate plane, notations, plotting points in the plane.
UNIT five: MENSURATION
1.Topics detail of Areas
Area of a triangle using Heron’s formula (without proof) and its application in finding the area of a quadrilateral.
Summative Assessment 2 (SA-2) Syllabus
The text of OTBA for SA-II will be from Unit – III, Chapter 4, Quadrilaterals
UNIT II: ALGEBRA (Contd.)
2. LINEAR EQUATIONS IN TWO VARIABLES
Recall of linear equations in one variable. Introduction to the equation in two variables. Focus on linear equations of the type ax+by+c=0. Prove that a linear equation in two variables has infinitely many solutions and justify their being written as ordered pairs of real numbers, plotting them and showing that they seem to lie on a line. Examples, problems from real life, including problems on Ratio and Proportion and with algebraic and graphical solutions being done simultaneously.
UNIT III: GEOMETRY (Contd.)
4. QUADRILATERALS
- (Prove) The diagonal divides a parallelogram into two congruent triangles.
- (Motivate) In a parallelogram opposite sides are equal, and conversely.
- (Motivate) In a parallelogram opposite angles are equal, and conversely.
- (Motivate) A quadrilateral is a parallelogram if a pair of its opposite sides is parallel and equal.
- (Motivate) In a parallelogram, the diagonals bisect each other and conversely.
- (Motivate) In a triangle, the line segment joining the midpoints of any two sides is parallel to the third side and (motivate) its converse.
5. AREA
Review concept of area, recall area of a rectangle.
- (Prove) Parallelograms on the same base and between the same parallels have the same area.
- (Motivate) Triangles on the same (or equal base) base and between the same parallels are equal in area.
6. CIRCLES
Through examples, arrive at definitions of circle related concepts, radius, circumference, diameter, chord, arc, secant, sector, segment subtended angle.
- (Prove) Equal chords of a circle subtend equal angles at the center and (motivate) its converse.
- (Motivate) The perpendicular from the center of a circle to a chord bisects the chord and conversely, the line is drawn through the center of a circle to bisect a chord is perpendicular to the chord.
- (Motivate) There is one and only one circle passing through three given non-collinear points.
- (Motivate) Equal chords of a circle (or of congruent circles) are equidistant from the center (or their respective centers) and conversely.
- (Prove) The angle subtended by an arc at the center is double the angle subtended by it at any point on the remaining part of the circle.
- (Motivate) Angles in the same segment of a circle are equal.
- (Motivate) If a line segment joining two points subtends an equal angle at two other points lying on the same side of the line containing the segment, the four points lie on a circle.
- (Motivate) The sum of either of the pair of the opposite angles of a cyclic quadrilateral is 180° and its converse.
7. CONSTRUCTIONS
- Construction of bisectors of line segments and angles of measure 60°, 90°, 45° etc., equilateral triangles.
- Construction of a triangle given its base, sum/difference of the other two sides and one base angle.
- Construction of a triangle of given perimeter and base angles.
UNIT V: MENSURATION (Contd.)
2. SURFACE AREAS AND VOLUMES
Surface areas and volumes of cubes, cuboids, spheres (including hemispheres) and right circular cylinders/cones.
UNIT VI: STATISTICS
Introduction to Statistics: Collection of data, presentation of data – tabular form, ungrouped / grouped, bar graphs, histograms (with varying base lengths), frequency polygons, qualitative analysis of data to choose the correct form of presentation for the collected data. Mean, median, mode of ungrouped data.
UNIT VII: PROBABILITY
History, Repeated experiments and observed frequency approach to probability. The focus is on empirical probability. (A large amount of time to be devoted to group and to individual activities to motivate the concept; the experiments to be drawn from real – life situations, and from examples used in the chapter on statistics).
CBSE Class 9th Maths Syllabus, Maths Syllabus for Class 9th, Mathematics Syllabus for class 9, CBSE Class 9th Maths Syllabus for session 2017-2018