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 )
AppliedMathematicsforElectricalEngineering-3130908
GTU Exam Papers
1
WINTER-2019
Exam Date : 26-11-2019
Syllabus
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.,