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THIAGARAJAR COLLEGE OF ENGINEERING: MADURAI – 625 015 ...

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<strong>–</strong> inverse interpolation - Numerical differentiation - Newton’s forward and backward differentiation<br />

formula <strong>–</strong> Numerical Integration<strong>–</strong> The trapezoidal rule <strong>–</strong> Simpson’s 1/3 rd and 3/8 th rule <strong>–</strong> Difference<br />

equations <strong>–</strong> Solution of Linear homogeneous difference equation with constant coefficients.<br />

(10 periods)<br />

UNIT V: Numerical solution of differential equation: Numerical solutions of ordinary differential<br />

equations <strong>–</strong>Taylor series method <strong>–</strong> Picards method <strong>–</strong> Euler’s methods <strong>–</strong> Fourth order Runge Kutta method<br />

<strong>–</strong>Milne’s and Adam’s Predictor <strong>–</strong> Corrector methods <strong>–</strong> Numerical solution of partial differential equations<br />

<strong>–</strong> classification of partial differential equations <strong>–</strong> Solution of elliptic equation by Leibmann’s method <strong>–</strong><br />

Solution of parabolic equation by Bender- Schmidt method <strong>–</strong> Solution of hyperbolic equation.<br />

(10 periods)<br />

MATLAB : Tool Kits-The course content will be augmented by the usage of Mat Lab tool box.<br />

Text Book :<br />

• Curtis F. Gerald, Patrick O. Wheatly, “Applied Numerical Analysis”, Sixth Edition, Pearson<br />

Education, New Delhi, 2002.<br />

Reference Books:<br />

1. John H. Mathews, Kurtis D.Fink., “Numerical Methods using MATLAB”, Prentice Hall, 1998.<br />

2. Rober J. Schilling, Sandra L. Harries, “Applied Numerical Methods for Engineers using<br />

MATLAB and C”, Thomson Brooks / Cole, 1999.<br />

3. Jain. M.K, Iyengar, S.R.K, Jain, R.K, “Numerical Methods for Scientific and Engineering<br />

Computation”, Fourth Edition, New Age International Publishers, New Delhi, 2003.<br />

4. Sastry, S.S, “Introductory Methods of Numerical Analysis”, Prentice Hall of India, 2001.<br />

5. Kandasamy. P, Thilagavathy. K and Gunavathy.K, “Numerical Methods”, S.Chand and<br />

Company Ltd, New Delhi, 2003.<br />

D52 EMBEDDED MICROCONTROLLERS<br />

Unit-I: Introduction: The 8051 architecture-8051 microcontroller hardware-Input/output-ports and<br />

circuits-External memory-counters and timers-serial input/output-Interrupts.<br />

(10 periods)<br />

Unit-II: Moving Data & Instruction: Moving data-introduction - Addressing modes-external data movescode<br />

memory-Read only data moves-Push& pop coding <strong>–</strong>Data exchange <strong>–</strong> logical operation-Arithmetic<br />

operation-Jump& call instructions.<br />

(10 periods)<br />

Unit-III: 8051 microcontroller design/application: A Microcontroller design-Testing the design-Timing<br />

subroutines-lookup tables for the 8051.Lead per key keyboard interfacing- LCD interfacing-Multiple<br />

interrupts.<br />

(10 periods)<br />

Unit-IV: PIC Microcontroller: CPU architecture and instruction sets: Hardware architecture and<br />

pipelining <strong>–</strong>program memory consideration - Register file structure and Addressing modes-CPU register<br />

-Instruction set-Loop time subroutine, Timer2 and Interrupts: Timer2 use-interrupt logic-Timer2 Scalar<br />

Initialization. External interrupts and Timers: Timer0 Compare/capture mode -Timer1/CCP

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