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Contents: Introduction to the Course and Basic Concepts - Signals & their Transportation - Elementary Signals in the Discrete Time Domain - Characterisation of Signals - Basi
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Contents: Introduction : Role of Probability in Civil Engineering Problems; Examples. Random Events : Definition of basic random events; Application of set theory in definit
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Contents: Basic Fluid Mechanics : Conservation of mass and momentum, Euler Equation, Bernoullis equation, potential flow, stream function. Waves : Classification of water wa
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Contents: Introduction : Scope and objective; Nature and types of dynamic loading; Importance of soil dynamics Vibration theory : Vibration of elementary systems; Degrees
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Contents: Overview of electronic systems packaging : Introduction and Objectives of the course - Definition of a system and history of semiconductors - Products and levels of
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Contents: Introduction : Types of dynamic loads - Basic background of methods available and motivation for structural dynamics. Dynamics of Single Degree-of-Freedom Structur
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Solution of Systems of Linear Equations:Introduction - Basic Ideas of Applied Linear Algebra - Systems of Linear Equations - Square Non-Singular Systems - Ill-Conditioned and
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Approximate solution of boundary value problems-Methods of weighted residuals, Approximate solution using variational method, Modified Galerkin method, Boundary conditions and
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Introduction to Power System Stability : Power System Operation and Control - Stability Problems faced by Power Systems - Impact on Power System Operation and Control - Analys
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Introduction to control problem - Basic Feedback Structure - Introduction to Control Problem - Dynamic Systems and Dynamic Response - Models of Industrial Control Devices and
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Generalized theory and Kron�s primitive machine model - Modeling of dc machines - Modeling of induction machine - Modeling of synchronous machine - Reference frame theory and
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Contents: Introduction - ideal and viscous incompressible fluid; Kinematics of fluid; Lagrangian and Eulerian methods of description, velocity, acceleration, streamlines, pat
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Contents: Introduction : Glimpses of Microsystems; scaling effects - Smart materials and systems: an overview - Microsensors: some examples - Microactuators: some examples -
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Contents: Wireless Communications and Diversity : Fast Fading Wireless Channel Modeling - Rayleigh/Ricean Fading Channels - BER Performance in Fading Channels - Diversity mod
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INTRODUCTION : Hydrologic cycle, water budget equation, world water quantities, residence time, systems concept, transfer function operators, hydrologic model classification -
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