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Showing posts with label EE 4th Semester Syllabus. Show all posts
Showing posts with label EE 4th Semester Syllabus. Show all posts
EE 4th sem syllabus RGTU/RGPV Electrical Engineering  EE 4th sem syllabus

EE 4th sem syllabus RGTU/RGPV Electrical Engineering EE 4th sem syllabus

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 Rajiv Gandhi Technological University, Bhopal (MP)
B.E. Electrical Engineering
(EE) Syllabus
RGPV RGTU FOURTH- IV SEMESTER Syllabus

RGTU/RGPV Electrical Engineering EE 4th Semester Syllabus
EE-401 Electromagnetic Theory (EMT) Syllabus

RGTU/RGPV Electrical Engineering EE 4th Semester Syllabus
EE-402 Electrical Engineering Materials (EEM) Syllabus

RGTU/RGPV Electrical Engineering EE 4th Semester Syllabus
EE-403 Power systems Syllabus

RGTU/RGPV Electrical Engineering EE 4th Semester Syllabus
EE-404 Electro Mechanical Energy Conversion –I  Syllabus

RGTU/RGPV Electrical Engineering EE 4th Semester Syllabus
EE-405 Analog and Digital Communication (ADC) Syllabus

RGTU/RGPV Electrical Engineering EE 4th Semester Syllabus
EE 406 Dot.Net Syllabus

EE 4th sem syllabus RGTU/RGPV Electrical Engineering EE 4th sem syllabus
RGPV / RGTU B.E. EE 405 Analog and Digital Communication (ADC) Revised syllabus EE 405 4th (IV) Semester syllabus Electrical Engineering (EE)

RGPV / RGTU B.E. EE 405 Analog and Digital Communication (ADC) Revised syllabus EE 405 4th (IV) Semester syllabus Electrical Engineering (EE)

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Tags: RGPV, BE, EE syllabus, Analog and Digital Communication (ADC) syllabus, B.E. Electrical Engineering, EE IV Semester syllabus, EE 4th Semester syllabus, RGPV EE 405 syllabus

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EE) Electrical Engineering FOURTH IV SEMESTER
EE 405 Analog and Digital Communication (ADC)
Revised Syllabus and Scheme of Examination Effective from July 2007

Unit-I Time domain and frequency domain representation of signal, Fourier Transform and its properties, Transform of Gate, Periodic gate, Impulse periodic impulse sine and cosine wave, Concept of energy density and power density (Parseval’s theorem), Power density of periodic gate and impulse function, impulse response of a system, convolutions, convolution with impulse function, causal and non causal system impulse response of ideal low pass filter, Correlation & Auto correlation.

Unit-II Base band signal, need of modulation, Introduction of modulations techniques, Amplitude modulation, Equation and its frequency domain representation, Bandwidth, Power distribution. AM suppressed carrier waveform equation and frequency domain representation Generation (Balance/Chopper modulator) and synchronous detection technique, errors in synchronous detection, Introduction to SSB and VSB Transmission Angle modulation, Frequency and phase modulation equation and their relative phase and frequency deviations, modulation index frequency spectrum, NBFM and WBFM, Bandwidth comparison of modulation techniques.

Unit-III Sampling of signal, sampling theorem for low pass and Band pass signal, Pulse amplitude modulation (PAM), Time division, multiplexing (TDM). Channel Bandwidth for PAM-TDM signal Type of sampling instantaneous, Natural and flat top, Aperture effect, Introduction to pulse position and pulse duration modulations, Digital signal, Quantization, Quantization error, Pulse code modulation, signal to noise ratio, Companding, Data rate and Baud rate, Bit rate, multiplexed PCM signal, Differential PCM (DPCM), Delta Modulation (DM) and Adaptive Delta Modulation (ADM), comparison of various systems.

Unit-IV Digital modulations techniques, Generation, detection, equation and Bandwidth of amplitude shift keying (ASK) Binary Phase Shift keying (BPSK), Differential phase shift keying (DPSK), offset and non offset quadrature phase shift keying (QPSK), M-Ary PSK, Binary frequency Shift Keying (BFSK), M-Ary FSK Quadrature Amplitude modulation (QAM), MODEM, Introduction to probability of error.

Unit-V Information theory and coding- Information, entropies (Marginal and conditional), Model of a communication system, Mathematical representation of source, channel and receiver characteristics, Mutual information, channel capacity efficiency of noise free channel Binary symmetric channel (BSC) Binary erasure channel (BEC), Repetition of signal, NM symmetric Binary channel, Shannon theorem, Shanon-Hartley theorem (S/N-BW trade off)Source encoding code properties; Shanon, Fano and Huffman coding methods and their efficiency error control coding, Minimum Hamming distance, Linear Block Code, Cyclic code and convolution codes. Line Encoding: Manchester coding, RZ, NRZ coding.

References:
1. Singh & Sapre, Communication System, TMH
2. Taub & shilling, Communication System, TMH
3. Hsu; Analog and digital communication(Schaum); TMH
4. B.P. Lathi, Modern Digital and analog communication system,
5. Simon Haykins, Communication System. John Willy
6. Wayne Tomasi, Electronic Communication system.
7. Martin S. Roden, Analog & Digital Communication System; Discovery Press.
8. Frank R. Dungan, Electronic Communication System, Thomson/Vikas.
RGPV / RGTU B.E. EE 406 Dot.Net 4th (IV) Semester syllabus EE 406 Dot.Net Revised Electrical Engineering (EE)

RGPV / RGTU B.E. EE 406 Dot.Net 4th (IV) Semester syllabus EE 406 Dot.Net Revised Electrical Engineering (EE)

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Tags: RGPV, BE, EE syllabus, Dot.Net syllabus, B.E. Electrical Engineering, EE IV Semester syllabus, EE 4th Semester syllabus, RGPV EE 406 syllabus

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EE) Electrical Engineering
FOURTH IV SEMESTER
EE 406 Dot.Net
Revised Syllabus and Scheme of Examination Effective from July 2007

UNIT I Introduction .NET framework, features of .Net framework, architecture and component of .Net, elements of .Net.

UNIT II Basic Features Of C# Fundamentals, Classes and Objects, Inheritance and Polymorphism, Operator Overloading, Structures. Advanced Features Of C# Interfaces, Arrays, Indexers and Collections; Strings and Regular Expressions, Handling Exceptions, Delegates and Events.

UNIT III Installing ASP.NET framework, overview of the ASP .net framework, overview of CLR, class library, overview of ASP.net control, understanding HTML controls, study of standard controls, validations controls, rich controls. Windows Forms: All about windows form, MDI form, creating windows applications, adding controls to forms, handling Events, and using various Tolls

UNIT IV Understanding and handling controls events, ADO.NET- Component object model, ODBC, OLEDB, and SQL connected mode, disconnected mode, dataset, data-reader Data base controls: Overview of data access data control, using grid view controls, using details view and frame view controls, ado .net data readers, SQL data source control, object data source control, site map data source.

UNIT V XML: Introducing XML, Structure, and syntax of XML, document type definition (DTD), XML Schema, Document object model, Presenting and Handling XML. xml data source, using navigation controls, introduction of web parts, using java script, Web Services

References:
1. C# for Programmers by Harvey Deitel, Paul Deitel, Pearson Education
2. Balagurusamy; Programming in C#; TMH
3. Web Commerce Technology Handbook by Daniel Minoli, Emma Minoli , TMH
4. Web Programming by Chris Bates, Wiley
5. XML Bible by Elliotte Rusty Harold ,
6. ASP .Net Complete Reference by McDonald, TMH.
7. ADO .Net Complete Reference by Odey, TMH
List of Experiments/ program (Pl. expand it):
1. Working with call backs and delegates in C#
2. Code access security with C#.
3. Creating a COM+ component with C#.
4. Creating a Windows Service with C#
5. Interacting with a Windows Service with C#
6. Using Reflection in C#
7. Sending Mail and SMTP Mail and C#
8. Perform String Manipulation with the String Builder and String Classes and C#:
9. Using the System .Net Web Client to Retrieve or Upload Data with C#
10. Reading and Writing XML Documents with the XML Text-Reader/-Writer Class and C#
11. Working with Page and forms using ASP .Net.
12. Data Sources access through ADO.Net,
13. Working with Data readers , Transactions
14. Creating Web Application.