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Mechanical Engineering
Mathematics III (PDE, Probability & Statistics)
Other university, Mechanical Engineering , Mathematics III (PDE, Probability & Statistics) Syllabus
Mathematics III (PDE, Probability & Statistics) Lecture notes
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Unit - 2 Probability Spaces
2.1 Probability spaces
2.2 Conditional probability
2.3 Independence Discrete random variables
2.4 The Multinomial distribution
2.5 Poisson approximation to the binomial distribution
2.6 Infinite sequences of Bernoulli trials
2.7 Sums of independent random variables
2.8 Expectation of Discrete Random Variables Moments
2.9 Variance of a sum
2.11 Chebyshevs Inequality
2.12 Continuous random variables and their properties
2.13 Distribution functions and densities
2.14 Normal exponential and gamma densities
2.15 Bivariate distributions and their properties
2.16 Distribution of sums and quotients
2.17 Conditional densities
2.18 Bayes rule
Unit - 3 Basic Statistics
3.1 Basic Statistics
3.2 Measures of Central tendency Moments Skewness and Kurtosis
3.3 Probability distributions – Binomial Poisson and Normal Evaluation of statistical parameters for these three distributions
3.4 Correlation and regression – Rank correlation
3.5 Curve fitting by the method of least squares fitting of straight lines
3.6 Second degree parabolas and more general curves
3.7 Test of significance Large sample test for single proportion
3.8 Difference of proportions
3.9 Test for Sample mean
3.10 Difference of means and difference of standard deviations
3.11 Test for ratio variances – Chi – square test for goodness of fit and independence of attributes
nit - 1 Definition Of Partial Differential Equations
1.1 Definition of Partial Differential Equations
1.2 First order partial differential equations
1.3 Solutions of first order linear PDEs
1.4 Solution to homogenous and nonhomogenous linear partial differential equations of second order by complimentary function and particular integral method.
1.5 Secondorder linear equations and their classification
1.6 Initial and boundary conditions
1.7 DAlemberts solution of the wave equation
1.8 Duhamels principle for one dimensional wave equation
1.9 Heat diffusion and vibration problems
1.10 Separation of variables method to simple problems in Cartesian coordinates
1.11 The Laplacian in plane
1.12 Cylindrical and spherical polar coordinates
1.13 Solutions with Bessel functions and Legendre functions
1.14 One dimensional diffusion equation and its solution by separation of variables
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Other Subjects of second-year
Thermodynamics
Fluid mechanics
Engineering materials
Engineering mechanics
Strength of materials
Applied thermodynamics
Instrumentation & control
Basic electronics engineering
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