Ph.D. (in areas of Mathematics and Computer Science)

The aim of the PhD programme is to produce students with high quality research capability and independent thinking in various areas of Mathematics, Statistics and Computer Science.

Computer ScienceMathematicsStatistics
  • Algorithms
  • Approximation Algorithms
  • Computational Geometry
  • Distributed Computing
  • Formal Languages and Automata Theory
  • Theoretical Computer Science
  • Wireless Networks
  • Wireless Sensor Networks
  • Algebraic Combinatorics
  • Algebraic Geometry
  • Combinatorial Matrix Theory
  • Combinatories
  • Complex Dynamics and Fractals
  • Computational Fluid Dynamics
  • Flow through porous media
  • Functional Analysis
  • General Algebra
  • Graph Theory
  • Harmonic Analysis
  • Hydrodynamic Loading
  • Hyperbolic 3-manifolds
  • Low Dimensional Topology
  • Mathematical Biology
  • Matrices & Graphs
  • Number Theory
  • Numerical Analysis
  • Numerical Functional Analysis
  • Numerical Homogenization
  • Numerical Linear Algebra
  • Numerical Methods for PDEs
  • Numerical solution to Differential Equations
  • Optimal Control Theory
  • Optimization Techniques
  • River mechanics
  • Sloshing dynamics
  • Special Functions
  • Spectral Graph Theory
  • Two-phase Flows
  • Water Wave Mechanics
  • Distributions models and its applications
  • Financial Mathematics
  • Operations Research
  • Queueing Theory
  • Stochastic Modelling
  • Survival Analysis

Courses for Ph.D.

MA615 Programming and Data Structures3028MA617 Design and Analysis of Algorithms3006
MA618 Mathematics for Computer Science3006MA619 Data Structures Lab0226
MA625 Linear Algebra - 13108MA642 Real Analysis - 13108
MA662 Differential Equations3108MA683 Probability Theory3108
MA684 Advanced Probability3006MA719 Linear Algebra - II4008
MA721 Introduction to Analytic Number Theory and Algebraic Number Fields4008MA722 Topological Groups and Advanced Algebra4008
MA723 Permutation Groups and Group Actions4008MA724 Combinatorial Group Theory4008
MA725 Non-Negative Matrix Theory4008MA726 Number Theory4008
MA727 Modern Algebra and Number Theory4008MA728 Universal Algebra4008
MA731 Functional Analysis4008MA732 Spectral perturbation theory for bounded
linear operators
MA733 Spectral perturbation theory for matrices and
matrix pencils
4008MA741 Complex Analysis4008
MA742 Iteration Theory4008MA745 Theory of Distribution and Sobolev Spaces4008
MA746 Fourier Analysis4008MA747 Measure Theory4008
MA748 Advanced Complex Analysis4008MA751 Differential Equations and Boundary Value Problems4008
MA752 Theory of Partial Differential Equations4008MA753 Perturbation Techniques4008
MA754 Homogenization4008MA761 Advanced Fluid Mechanics4008
MA762 Potential Flow of Fluids and water-wave Theory4008MA763 Introduction to Environmental Diffusion4008
MA764 Mathematical Fluid Mechanics4008MA765 Wave Structure Interaction4008
MA766 Computational Fluid Dynamics4008MA771 Advanced Numerical Analysis4008
MA772 Numerics of Singuarlarly Perturbed Differential Equations4008MA773 Finite Element Methods4008
MA781 Probability Theory4008MA786 Stochastic Processes and Queueing Theory4008
MA793 Data Structures and Algorithms3028

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