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Maths - UP Board Class 12th

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Maths - UP Board Class 12th

Online classes offering a complete and NCERT-based syllabus for UP Board Class 12th Maths.

  • No Rating
  • (0 Reviews)
  • 0 students enrolled
  • ₹499.00
  • ₹4500.00
  • Course Includes
  • Anytime, Anywhere
  • Previous Year Papers
  • Q&A doubts forum
  • Access till exam is over


Description

Discover in-depth UP Board Class 12th Maths online video classes designed to improve your understanding of maths subject concepts. Get access to detailed and engaging video lessons, interactive discussions, expert guidance, and previous year question papers, all designed to help you excel in your studies and crack your board exams with high grade marks. Learn at your own pace with convenient access anytime, anywhere. Start your journey to academic success with our top-notch online maths classes today!

Unit I : Relations and Functions - Marks : 10

1) Relations and Functions

Types of relations: Reflexive, symmetric, transitive and equivalence relations. One to one and onto functions.

2) Inverse Trigonometric Functions

Definition, range, domain, principal value branches.

Unit-II: Algebra - Marks : 13

1) Matrices

Concept, notation, order, equality, types of matrices, zero and identity matrix, transpose of a matrix, symmetric and skew symmetric matrices. Operation on matrices: Addition and multiplication and multiplication with a scalar. Simple properties of addition, multiplication and scalar multiplication.

Non- commutativity of multiplication of matrices and existence of nonzero matrices whose product is the zero matrix (restrict to square matrices of order 2) Concept of elementary row and column operations. Invertible matrices and proof of the uniqueness of inverse, if it exists; (Here all matrices will have real entries).

2) Determinants

Determinant of a square matrix (up to 3 x 3 matrices), properties of determinants, minors, co-factors and applications of determinants in finding the area of a triangle. Adjoint and inverse of a square matrix. Consistency, inconsistency and number of solutions of system of linear equations by examples, solving system of linear equations in two or three variables (having unique solution) using inverse of a matrix.

Unit-III: Calculus - Marks : 44

1) Continuity and Differentiability

Continuity and differentiability, derivative of composite functions, chain rule, derivative of inverse trigonometric functions, derivative of implicit functions. Concept of exponential and logarithmic functions.

Derivatives of logarithmic and exponential functions.Logarithmic differentiation, derivative of functions expressed in parametric forms. Second order derivatives.

 

2) Applications of Derivatives

Applications of derivatives: rate of change of bodies, increasing/decreasing functions, tangents and normals, use of derivatives in approximation, maxima and minima (first derivative test motivated geometrically and second derivative test given as a provable tool). Simple problems (that illustrate basic principles and understanding of the subject as well as real-life situations).

3) Integrals

Integration as inverse process of differentiation.Integration of a variety of functions by substitution, by partial fractions and by parts, Evaluation of simple integrals of the following types and problems based on them.

Definite integrals as a limit of a sum. Fundamental Theorem of Calculus (without proof). Basic properties of definite integrals and evaluation of definite integrals.

4) Applications of the Integrals

Applications in finding the area under simple curves, especially lines, circles/ parabolas/ellipses (in standard form only), Area between any of the two above said curves (the region should be clearly identifiable).

5) Differential Equations

Definition, order and degree, general and particular solutions of a differential equation.formation of differential equation whose general solution is given.Solution of differential equations by method of separation of variables, solutions of homogeneous differential equations of first order and first degree.

Solutions of linear differential equation of the type:

(dy/dx) + py = q, where p and q are functions of x or constants.

(dx/dy) + px = q, where p and q are functions of y or constants.

Unit-IV: Vectors and Three-Dimensional Geometry - Marks : 17

1) Vectors

Vectors and scalars, magnitude and direction of a vector.Direction cosines and direction ratios of a vector. Types of vectors (equal, unit, zero, parallel and collinear vectors), position vector of a point, negative of a vector, components of a vector, addition of vectors, multiplication of a vector by a scalar, position vector of a point dividing a line segment in a given ratio. Definition, Geometrical Interpretation, properties and application of scalar (dot) product of vectors, vector (cross) product of vectors.

2) Three - dimensional Geometry

Direction cosines and direction ratios of a line joining two points.Cartesian equation and vector equation of a line, coplanar and skew lines, shortest distance between two lines.Cartesian and vector equation of a plane. Distance of a point from a plane.

Unit-V: Linear Programming - Marks : 06

1) Linear Programming

Introduction, related terminology such as constraints, objective function, optimization, different types of linear programming (L.P.) problems, mathematical formulation of L.P. problems, graphical method of solution for problems in two variables, feasible and infeasible regions (bounded or unbounded), feasible and infeasible solutions, optimal feasible solutions (up to three non-trivial constraints).

Unit-VI: Probability - Marks : 10

Probability

Conditional probability, multiplication theorem on probability, independent events, total probability, Bayes’ theorem. Random Variable and its probability distribution.


Previous Year Papers

Course Content

6 sections • 7 lectures • 03h 55m total length
Relations and Functions
64:07min
Relations and Functions - Part 2
35:51min
Relations and Functions - Part 3
09:37min
Functions
57:56min
Functions - Part 2
19:54min
Compositions of Two Functions
11:41min
Invertible Function
40:36min

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