Subjects
Applied Mathematics for Electrical Engineering - 3130908
Complex Variables and Partial Differential Equations - 3130005
Engineering Graphics and Design - 3110013
Basic Electronics - 3110016
Mathematics-II - 3110015
Basic Civil Engineering - 3110004
Physics Group - II - 3110018
Basic Electrical Engineering - 3110005
Basic Mechanical Engineering - 3110006
Programming for Problem Solving - 3110003
Physics Group - I - 3110011
Mathematics-I - 3110014
English - 3110002
Environmental Science - 3110007
Software Engineering - 2160701
Data Structure - 2130702
Database Management Systems - 2130703
Operating System - 2140702
Advanced Java - 2160707
Compiler Design - 2170701
Data Mining And Business Intelligence - 2170715
Information And Network Security - 2170709
Mobile Computing And Wireless Communication - 2170710
Theory Of Computation - 2160704
Semester
Semester - 1
Semester - 2
Semester - 3
Semester - 4
Semester - 5
Semester - 6
Semester - 7
Semester - 8
Applied Mathematics for Electrical Engineering (3130908)
Applied Mathematics for Electrical Engineering (3130908)
Syllabus of
Applied Mathematics for Electrical Engineering (3130908)
1
Numerical Solutions
4 Questions
Roots of Algebraic and Transcendental Equations:
Bisection method
(1 Question)
false position method
(1 Question)
Secant method
(1 Question)
Newton-Raphson method
(1 Question)
Fixed Point Iteration
Rate of convergence
Applications to electrical engineering problems.
2
Interpolation
5 Questions
Finite Differences
Forward
Backward
Central operator
Interpolation by polynomials :
Newton’s forward interpolation formula
(1 Question)
Newton’s backward interpolation formula
(1 Question)
Newton’s divided formula
(1 Question)
Lagrange’s interpolation formulae for unequal intervals
(1 Question)
Applications to electrical engineering problems.
3
Numerical Integration
4 Questions
Newton-Cotes formula
Trapezoidal formula
(1 Question)
Simpson’s formulae
(2 Question)
error formulae
Gaussian quadrature formulae
(1 Question)
Applications to electrical engineering problems
4
Numerical solution of Ordinary Differential Equations
3 Questions
Picard method
Taylor method
(1 Question)
Euler methods
(1 Question)
and Runge-Kutta methods
(1 Question)
Applications to electrical engineering problems
5
Curve fitting by the numerical method
2 Questions
Curve fitting by of method of least squares
fitting of straight lines
(1 Question)
second degree parabola
(1 Question)
and more general curves.
6
Basic Probability
8 Questions
Experiment
definition of probability
(1 Question)
conditional probability
(3 Question)
independent events
Bayes' rule
(1 Question)
Bernoulli trials
Random variables
discrete random variable
probability mass function
continuous random variable
probability density function
(1 Question)
cumulative distribution function
properties of cumulative distribution function
Applications to electrical engineering problems.
7
Basic Statistics
8 Questions
Measure of central tendency:
(1 Question)
Moments
(1 Question)
Expectation
dispersion
(1 Question)
skewness
(2 Question)
kurtosis
Bounds on probability
Chebyshev‘s Inequality
Applications to electrical engineering problems.