Practical 7




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CP9223 INTERNET AND JAVA PROGRAMMING L T P C

3 0 0 3



UNIT I INTRODUCTION 9

Introduction to the Internet and World Wide Web - World Wide Web Consortium (W3C) - History of the Internet History of the World Wide Web - History of SGML -XML Introduction to HyperText Markup Language - Editing HTML - Common Elements – Headers - Linking - Images - Unordered Lists - Nested and Ordered Lists - HTML Tables-Basic HTML Forms


UNIT II DYNAMIC HTML 9

Dynamic HTML Object Model and Collections, Event Model, Filters and Transitions, Data Binding with Tabular Data Control, Dynamic HTML-Structured Graphics ActiveX Controls, Dynamic HTML-Path, Sequencer and Sprite ActiveX Controls.


UNIT III JAVASCRIPT 9

JavaScript, Introduction to Scripting, Control Statements, Functions, Arrays, Objects.


UNIT IV XML 9

Creating Markup with XML -Parsers and Well-formed XML Documents -Parsing an XML Document with msxml - Document Type Definition (DTD) - Document Type Declaration - Element Type Declarations - Attribute Declarations - Document Object Model - DOM Implementations - – DOM Components - path -   XSL: Extensible Stylesheet Language Transformations (XSLT)


UNIT V PERL, CGI AND PHP 9

Perl - String Processing and Regular Expressions - Form Processing and Business Logic - Server-Side Includes - Verifying a Username and Password - Using DBI to Connect to a Database -PHP - Form Processing and Business Logic --Connecting to a Database - Dynamic Content in PHP

TOTAL : 45 PERIODS

REFERENCES:





  1. Deitel & Deitel Internet & World Wide Web How to Program, Pearson Education India -Third Edition -2004

  2. Deitel & Deitel XML How to Program, Pearson Education,2001

  3. Robert W.Sebesta , “ Programming withWorld Wide Web”,Pearson Education ,2009

  4. Negrino and Smith Javascript for the World Wide Web, 5th Edition, Peachpit Press 2003.

  5. Deitel & Deitel Perl How to Program, Pearson Education, 2001

  6. Benoit Marchal, XML by Example, 2nd Edition, Que/Sams 2002.


CP9227 COMPUTER AND COMMUNICATION LAB II L T P C

0 0 4 2


  1. DC characteristics of PIN PD and APD.

  2. P-I characteristics of LED and LASER.

  3. Optical link simulation using simulator packages.

  4. Web design with HTML.

  5. Web design with JAVA.

  6. Simulation of ATM switches.

  7. Simulation and Implementation of ATM congestion control algorithm.

(using free ATM network simulator software)


CU9221 WIRELESS MOBILE COMMUNICATION L T P C

3 0 03


UNIT I THE WIRELESS CHANNEL 9

Overview of wireless systems – Physical modeling for wireless channels – Time and Frequency coherence – Statistical channel models – Capacity of wireless Channel- Capacity of Flat Fading Channel –– Channel Distribution Information known – Channel Side Information at Receiver – Channel Side Information at Transmitter and Receiver – Capacity with Receiver diversity – Capacity comparisons – Capacity of Frequency Selective Fading channels


UNIT II PERFORMANCE OF DIGITAL MODULATION OVER WIRELESS

CHANNELS 8

Fading– Outage Probability– Average Probability of Error –– Combined Outage and Average Error Probability – Doppler Spread – Intersymbol Interference.

UNIT III DIVERSITY 9

Realization of Independent Fading Paths – Receiver Diversity – Selection Combining – Threshold Combining – Maximal-Ratio Combining – Equal - Gain Combining – Transmitter Diversity – Channel known at Transmitter – Channel unknown at Transmitter – The Alamouti Scheme.


UNIT IV MULTICARRIER MODULATION 10

Data Transmission using Multiple Carriers – Multicarrier Modulation with Overlapping Subchannels – Mitigation of Subcarrier Fading – Discrete Implementation of Multicarrier Modulation – Peak to average Power Ratio- Frequency and Timing offset – Case study IEEE 802.11a.


UNIT V SPREAD SPECTRUM 9

Spread Spectrum Principles – Direct Sequence Spread Spectrum – Spreading Codes- Synchronization- RAKE receivers- Frequency Hopping Spread Spectrum – Multiuser DSSS Systems – Multiuser FHSS Systems.

REFERENCES:


  1. Andrea Goldsmith, Wireless Communications, Cambridge University Press, 2005

  2. David Tse and Pramod Viswanath, Fundamentals of Wireless Communication,

Cambridge University Press, 2005.

  1. W.C.Y.Lee, Mobile Communication Engineering, Mc Graw Hill, 2000

  2. A.Paulraj, R.Nabar, D.Gore, Introduction to Space-Time Wireless Communication,

Cambridge University Press, 2003.

  1. T.S. Rappaport, Wireless Communications, Pearson Education, 2003



CP9252 MICROWAVE CIRCUITS L T P C
3 0 0 3



UNIT I CIRCUIT REPRESENTATION AND IMPEDANCE MATCHING 9

Low Frequency Parameters- Impedance matrix, Admittance matrix, ABCD matrix. High Frequency Parameters-S MATRIX, Formulation, Signal Flow Graphs. Smith Chart (ZY), Selection of Matching, Networks, Design of Matching Networks using lumped and distributed elements, using Smith Chart, FOSTERS REACTANCE Theorem.


UNIT II NOISE AND DISTORTION IN MICROWAVE CIRCUITS 9

Review of Random Process - Thermal noise – available noise power and noise voltage – Auto correlation and Power spectral density in linear systems – Gaussian white noise – Mixing of noise – Narrow band representation of noise – probability of error for threshold detection – Noise Temperature, Noise factor and Noise figure, Equivalent noise temperature of non thermal sources. Noise temperature of cascaded networks. Noise figure of passive two port networks. Dynamic range and intermodulation distortion – Gain compression – third order intercept point. Intercept point of cascaded network.


UNIT III FILTERS 9

Filter design by Insertion loss method, Butterworth and Tchebycheff Low pass filters. Impedance and frequency scaling for low pass filters – Band pass and band stop transformation – Design examples – Filters using transmission line stubs – stepped impedance low pass filters – Band pass filters using transmission line resonators – capacitively coupled quarter wave resonators-Micro strip filters-Coupled resonator band pass filters


UNIT IV AMPLIFIERS 9

FET and Bipolar Transistor models, two port power gain. Derivation of stability circles and stability criteria – unconditionally stable configuration and simultaneous conjugate matching – Amplifier design using S parameters – constant Noise figure circles – Design for maximum gain power amplifiers,LNA Design.

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