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Syllabus for B.Tech(Electronics & Communication Engineering) Second Year & 3rd Year (Proposed) Revised Syllabus of B.Tech ECE (for the students who were admitted in Academic Session 2010-2011)

ECE SECOND YEAR: THIRD SEMESTER

Sl.No.

Field

A. Theory

THEORY Contact Hours/Week L T P Total 2 1 0 3 3 1 0 4 3 3 3 3 1 0 0 1 0 0 0 0 4 3 3 4 21 0 0 0 0 0 0 0 0 0 0 2 3 3 3 3 2 3 3 3 3 14 35 Cr. Points 2 4 4 3 3 4 20 1 2 2 2 2 9 29

1 2 3 4 5 6 B. 7 8 9 10 11

M(CS)301 Numerical Methods M302 Mathematics-III 1. Circuit Theory & Networks EC301 2. Solid State Device EC302 EC303 1. Signals & Systems EC304 2. Analog Electronic Circuits Total of Theory PRACTICAL Nunerical Lab M(CS)391 Circuit Theory & Network Lab EC391 Solid State Devices EC392 1. Signal System Lab EC393 2. Analog Electronic Circuits Lab EC394 Total of Practical Total of Semester

ECE SECOND YEAR: FOURTH SEMESTER

Sl.No.

Field

1 2 3 4 5 B. 6 7 8 9

HU401 PH401 CH401 EC401 EC402

Contact Cr. Points Hours/Week L T P Total Values & Ethics in Profession 3 0 0 3 3 Physics-II 3 1 0 4 4 Basic Environmental Engineering & Elementary 2+1 0 0 3 3 Biology 1. EM Theory & Transmission Lines 3 1 0 4 4 2. Digital Electronic & Intrgrated Circuits 3 1 0 4 4 Total of Theory 18 18 0 0 0 0 0 0 0 0 3 3 3 3 3 3 3 3 12 30 2 2 2 2 8 26

A. THEORY Theory

PRACTICAL Technical Report Writing & Language Lab HU481 Practice Physics-II Lab PH491 1. EM Theory & Tx Lines Lab EC491 2. Digital Electronic & Integrated Circuits Lab EC492 Total of Practical Total of Semester

1

For B. Tech. 3rd Semester for GR B Streams

Syllabus for B.Tech(Electronics & Communication Engineering) Second Year & 3rd Year (Proposed) Revised Syllabus of B.Tech ECE (for the students who were admitted in Academic Session 2010-2011)

SEMESTER - III Theory
NUMERICAL METHODS Code : M(CS) 301 Contacts : 2L+1T Credits :2 Approximation in numerical computation: Truncation and rounding errors, Fixed and floating-point arithmetic, Propagation of errors. (4) Interpolation: Newton forward/backward interpolation, Lagrange’s and Newton’s divided difference Interpolation. (5) Numerical integration: Trapezoidal rule, Simpson’s 1/3 rule, Expression for corresponding error terms. (3) Numerical solution of a system of linear equations: Gauss elimination method, Matrix inversion, LU Factorization method, Gauss-Seidel iterative method. (6) Numerical solution of Algebraic equation: Bisection method, Regula-Falsi method, Newton-Raphson method. (4)

Numerical solution of ordinary differential equation: Euler’s method, Runge-Kutta methods, Predictor-Corrector methods and Finite Difference method. (6) Text Books: 1. 2. 3. 4. References: 1. 2. 3. 4. 5. C.Xavier: C Language and Numerical Methods. Dutta & Jana: Introductory Numerical Analysis. J.B.Scarborough: Numerical Mathematical Analysis. Jain, Iyengar , & Jain: Numerical Methods (Problems and Solution). Balagurusamy: Numerical Methods, Scitech. Baburam: Numerical Methods, Pearson Education. N. Dutta: Computer Programming & Numerical Analysis, Universities Press. Soumen Guha & Rajesh Srivastava: Numerical Methods, OUP. Srimanta Pal: Numerical Methods, OUP.

MATHEMATICS Code: M 302

Contacts: 3L +1T = 4 Credits: 4 Note 1: The entire syllabus has been divided into four modules. Note 2: Structure of Question Paper There will be two groups in the paper: Group A: Ten questions, each of 2 marks, are to be answered out of a total of 15 questions, covering the entire syllabus. Group B: Five questions, each carrying 10 marks, are to be answered out of (at least) 8 questions. Students should answer at least one question from each module. [At least 2 questions should be set from each of Modules II & IV. At least 1 question should be set from each of Modules I & III. Sufficient questions should be set covering the whole syllabus for alternatives.] Module I: Fourier Series & Fourier Transform [8L] Topic: Fourier Series: Sub-Topics: Introduction, Periodic functions:...
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