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Showing posts with label EX 4th (IV) Semester syllabus. Show all posts
Showing posts with label EX 4th (IV) Semester syllabus. Show all posts
EX 4th sem Electronic Devices and Circuits II Syllabus syllabus RGTU/RGPV EX-405 Electronic Devices and Circuits II Syllabus syllabus

EX 4th sem Electronic Devices and Circuits II Syllabus syllabus RGTU/RGPV EX-405 Electronic Devices and Circuits II Syllabus syllabus

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Related: RGTU/RGPV Electro Electronic Devices and Circuits II Syllabus syllabus, RGTU/RGPV Electronic Devices and Circuits II Syllabus syllabus, BE 4th semester Electronic Devices and Circuits II Syllabus Syllabus
 
EX-405 Electronic Devices and Circuits II Syllabus Syllabus
 RGTU/RGPV Electronic Devices and Circuits II Syllabus SYLLABUS
Electrical and Electronics Engineering EX 4th Semester Syllabus,

Unit I Operational Amplifiers: Design aspects of Monolithic OpAmps, ideal characteristics, specifications, offset voltages and currents, frequency compensation techniques, measurement of op-amp parameters, applications of op-amp inverting, non inverting amplifiers, integrators, function generator, logarithmic amplifier, instrumentation amplifiers, signal conditioning circuits, multi-vibrators, square wave generator, rectifiers, peak detectors & voltage regulator.

Unit II Filters: Active filters, LPF, HPF, BPF, BEF, All pass filter, higher order filters & their design, switched capacitor filters, 555 timer and its applications, 556 function generator IC and its applications, phase locked ICs (PLL) 565 and their applications. IC 1496 (Balanced modulator applications).

Unit III Acoustics:  Microphones – Carbon, moving coil, ribbon, crystals condenser, their working principle and characteristic, Noise Figure and sensitivity and shielding. Loud Speakers – Moving Coil, electrodynamics horn type, multi-way speaker system, cross over network and their frequency characteristic. Various types of sound recording, magnetic recording, disk and crystal recording, Reverberations, building and studio acoustics, high fidelity. 

Unit IV Microwave: Generation of microwave by tubes, limitation of conventional tubes, Klystron amplifiers, reflex Klystron oscillator, magnetrons, traveling wave tube (TWT), backward wave oscillator (BWO), high frequency limitation of transistor, microwave transistor, Manley Rowe relations, parametric amplifiers and frequency multipliers, Gun effect, Gun diode oscillator, Avalanche effect, IMPATT & TRAPATT, BARRITT, TUNNETT, MITATT, microwave field  effect transistors, MASER, LASER, Microwave Integrated Circuits (MICs) diode, Schottky barrier and backward diodes, PIN diode and their applications.

Unit V Logic Families: DTL, ITL, ECL, TTL, MOS Logic Families, parameters and their comparison, transistor logic, interfacing of logic families, Integrated transistor, FET and MOS as switches, switching speed of integrated diode, transistor, FET devices, comparison between TTL and DTL, multi emitter transistor, Characteristics of TTL with Shottkey devices, transfer characteristics of ECL, Fan in and Fan out speed of operation, logic versatility of ECL gates, temperature compensated bias MOS, CMOS and their transfer characteristics, MOS invertors, CMOS inverter, rise and fall time in CMOS gates, interfacing BIT and CMOS gates.

RGTU/RGPV EX-405 Electronic Devices and Circuits II References:

1. Tobbey; OP- Amps their design and Application
2. Gaikward RA; OP- Amp and linear Integreted circuits; PHI
3. Salivahanan; Linear Integrated Circuits; TMH
4. Kennedy J; Principles of communications; TMH 
5. R.G.Gupta;  Audio and Video System; TMH
6. Linear Integrated Circuits    :D. Raychowdhary and Shail Jain
7. Introduction to System Design using Integrated ckt: B.S. Sonde (New Age Pub.).
8. Micro Electronics     :Jacob Millman (ISE)
9. Integrated Circuits     :Botkar (Khanna)
10. Applications of linear Integrated circuits  :Clayton
11. Microwave Design and Circuits   :S.L. Liao (PHI)
12. Microwaves and Radar    :A.K. Maini (Khanna)  

RGTU/RGPV EX-405 Electronic Devices and Circuits II List of Experiments (Expandable):

1. Char. of Op-Amp (input offset voltage, slew rate CMRR, BW, Input bias current )
2. Linear application of OP-Amp (voltage follower, inviting and non-inverting amplifier and their frequency response adder subtractor differential amplifier, integrator and differential frequency response) 
3. Study of Op-Amp as a comparator
4. Design of Schmitt trigger
5. Design of monoastable & astable multivibrator
6. To construct and plot frequency response of  low & high pass filter.
 
NOTE- - All experiments (wherever applicable) should be performed through the following steps. Step 1: Circuit should be designed/ drafted on paper. 
Step 2: Where ever applicable the designed/drafted
circuit should be simulated using Simulation S/W (TINA-V7/ PSPICE/ Labview/ CIRCUIT MAKER etc.).
Step 3: The designed/drafted circuit should be tested on the bread board and compare the results with the simulated results. 
Step 4: Where ever required the bread board circuit should be fabricated on PCB.
EX 4th sem Digital Electronics Logic Design I syllabus RGTU/RGPV EX-403 Digital Electronics Logic Design I syllabus

EX 4th sem Digital Electronics Logic Design I syllabus RGTU/RGPV EX-403 Digital Electronics Logic Design I syllabus

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Related: RGTU/RGPV Digital Electronics Logic Design I syllabus, RGTU/RGPV Digital Electronics Logic Design I syllabus, BE 4th semester Digital Electronics Logic Design I Syllabus
 
EX-403 Digital Electronics Logic Design I Syllabus
 RGTU/RGPV Digital Electronics Logic Design I SYLLABUS
Electrical and Electronics Engineering EX 4th Semester Syllabus,

Unit I Number Systems and Codes : Digital number systems, base conversion, Binary, Decimal, octal, Hexadecimal, number system with radix r, Gray codes.
Alphanumeric codes – ASCII code and EBCDIC codes, Hollerith code, concept of parity, complement r’s & (r-1)’s, subtraction with complements, signed Binary numbers, Error Detecting & Correcting codes. Basic Theorems & Properties of Boolean Algebra: AND, OR, NOT operators, laws of Boolean Algebra, Demorgon’s theorem, Boolean expression & logic diagram. Negative logic, Alternate logic gate representation (concept of bubbled gates) canonical  and standard Forms (Minterms & Maxterms), sum of minterms & product of maxterms, conversion between canonical forms. Truth table & maps, 2,3,4,5 and 6 variable maps, Solving digital problems using Maps, Don’t care conditions, Tabular minimization. Sum of product & product of sum reduction, Exclusive OR & Exclusive NOR circuits, Parity generator & checkers.

Unit II Combinational Circuits : Design procedure, Adders (half and Full), subtractor (half and full) code convertors, Analysis of design, Universal building blocks, Implementation of any logic circuit with only NAND gates or with only NOR gates, Binary serial adder, parallel adder, serial/parallel adder, look ahead carry generator, BCD adder, Binary multiplier, Magnitude comparator, Decoder, Demultiplexer, Encoders, priority encoder, Multiplexers & implementation of combinational logic diagram, HDL for combinational circuit.

Unit III Sequential Logic Circuit : Latches, SR latch with NAND & NOR gates, D latch, edge triggered flip flop, J-K flip flop, T flip flop, Master slave flip flop, Analysis of clocked sequential circuit, state table, state diagram, state reduction state equations, state assignments, flip flop excitation table & characteristic equations, Design procedure for sequential circuits, Design with state reduction, Applications of flip flop.

Unit IV Registers and Counters : Asynchronous and Synchronous counter, counters with MOD numbers, Down counter, UP/DOWN counter, propagation delay in ripple counter, programmable counter, Pre-settable counter, BCD counter, cascading, counter applications, Decoding in counter, Decoding glitches, Ring Counter, Johnson counter, Rotate left & Rotate right counter, Registers – Buffer, Shift left, shift right, shift left/Right registers, parallel in parallel out, serial in serial out, parallel in serial out, serial in parallel out registers.

Unit V Random Access Memory, Timing waveform, Memory Decoding, Internal Construction, Coincident decoding, Address multiplexing, Read only memory – Combinational circuit implementation, Type of ROMs, combinational PLDs, Programmable Logic Array (PLA), Programmable Array Logic (PAL), sequential programmable device. Analog to digital conversion – Ramp type, dual slope, integration, successive approximation, parallel conversion, parallel/ serial conversion, convertor specifications, Digital to Analog convertors – Binary weighted & R/2R D to A convertors.

RGTU/RGPV EX-403 Digital Electronics Logic Design I  References:
1. Mano; Digital design; Pearson Education Asia
2. Thomas Blakeslee; Digital Design with standard MSI and LSI; Wiley Interscience
3. Jain RP; Modern digital electronics; TMH
4. -M.Mano; Digital logic & Computer Design; PHI
5. Tocci ; Digital Systems Principle & applications; Pearson Education Asia
6. Gothmann; Digital Electronics; PHI
7. R.H.Gour; Digital Electronics and Micro Computer - (Dhanpat Rai)
8. –Malvino, Leech; Digital Principles and applications –(TMH)
9. Floyad;  Digital Fundamentals  (UBS)
10. Nripendra N. Biswas; Logic Design Theory  (PHI)
11. D.C. Green; Digital Electronics   (Pearson Education Asia)

RGTU/RGPV EX-403 Digital Electronics Logic Design I  List of Experiments (Expandable):

1. Verification of all the logic gates.
2. Design of BCD to Excess-3 code converter.
3. Implementation of NAND & NOR as Universal gate.
4. Design of RS, JK, T& D Flip flop.
5. Multiplexer /Demultipexer based boolean function
6. Design of combinational circuit for the
(i) Half adder
(ii) Full adder
(iii) Half subtractor
(iv) Full subtractor
7. Design various A-D  & D-A convertors.

NOTE- - All experiments (wherever applicable) should be performed through the following steps. 
Step 1: Circuit should be designed/ drafted on paper. 
Step 2: Where ever applicable the designed/drafted
circuit should be simulated using Simulation S/W (TINA-V7/ PSPICE/ Labview/ CIRCUIT MAKER etc.).
Step 3: The designed/drafted circuit should be tested on the bread board and compare the results with
the simulated results. 
Step 4: Where ever required the bread board circuit should be fabricated on
PCB.
EX 4th sem Electrical Electronic Material syllabus RGTU/RGPV EX  402 Electrical Electronic Material syllabus

EX 4th sem Electrical Electronic Material syllabus RGTU/RGPV EX 402 Electrical Electronic Material syllabus

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Related: RGTU/RGPV Electrical Electronic Material syllabus, RGTU/RGPV Electrical Electronic Material syllabus, BE 4th semester Electrical Electronic Material Syllabus
 
EX-402 Electrical Electronic Material Syllabus
 RGTU/RGPV Electrical Electronic Material SYLLABUS
Electrical and Electronics Engineering EX 4th Semester Syllabus,

Unit I - Classes of Engineering Materials – Metals & alloys, ceramics, organic polymers and composite material. Classification of solids from electrical Engineering point of view. Conducting material – properties of conductors, characteristics of good conductor material, commonly used conducting materials, conductor materials for overhead lines, types of conductors, conductor for underground cables, conductor materials used for electrical machines winding, resistor materials, types of resistors, materials for bus bar. Thermal conductivity of matter, super conductivity. Materials of MHD generator, Fuel cells, Thermoelectric generators, Thermonic conductors

Unit II - Dielectric Materials: Dielectric strength, factors affecting dielectric strength, dielectric loss, dissipation factor, factors affecting dielectric loss, permittivity & polarization, charging and discharging of dielectric, conduction through dielectric. Application of dielectric, different types of capacitors and materials used for them.Insulating materials, their properties – thermal, chemical, mechanical & electrical. Insulating materials like ceramic, mica, glass, rubber, resins, wax varnishes, Class of Insulation. Transformer oils & their testing. Piezoelectricity & Ferro electricity. 

Unit III - Applications of semi conductor materials: type of semi conductors, working and applications of semiconductors, Temperature sensitive elements, photoconductive cells, photo voltaic cells; Varistor, Hall effect generator, LCD, Light dependent registors, LEDs, piezo – electric materials, semiconductor laser and its characteristics, photo conductors – photo diodes, avalanche photo diode, photo transistors.

Unit IV - Classification of magnetic materials: Dia-magnetism, Para magnetism, Ferro- magnetism, magnetisation curve, hysterisis loop, Magnetostriction, Factors affecting permeability and hysterisis, Anti – ferromagnetism, Ferrimagnetism, Magnetic resonance, B-H curve for different magnetic materials, loss of magnetism, impurities in ferromagnetic materials, soft and hard magnetic materials, ferrites. Fiber optic materials, lasers Special Purpose materials – Thermo couple, soldering, fuse, contact, refractory, fluorescent & phosphorescent, galvanizing and impregnation.

Unit V- IC Fabrication: planar process – Fabrication of BJT, FET, & CMOS devices, Monolithic diodes – Contacts – IC resistor & Capacitors  - IC packaging – characteristic of IC components.

RGTU/RGPV EX  402 Electrical Electronic Material References:
1. TTTI Madras; Electrical Engineering Materials; TMH.
2. C. S. Indulkar and S. Thruvengadem; Electrical Engineering Materials; S. Chand.
3. A.J. Dekkor; Electrical Engineering Materials; PHI.
4. John Allison; Electrical Engineering Material s & Devices; TMH.
5. Kasap; Electronic Materials and devices; TMH
6. V. Raghvan; Material Science & Engineering; PHI.
7. Milman & Grabe; Micro Electronics; TMH
8. S.P. Seth & P.V. Gupta; Electrical Engineering Materials; Dhanpat Rai.
EX 4th sem Electro Mechanical Energy Conversion –I  syllabus RGTU/RGPV Electro Mechanical Energy Conversion –I  syllabus

EX 4th sem Electro Mechanical Energy Conversion –I syllabus RGTU/RGPV Electro Mechanical Energy Conversion –I syllabus

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EX-404 Electro Mechanical Energy Conversion –I  Syllabus
 RGTU/RGPV Electro Mechanical Energy Conversion –I  SYLLABUS
Electrical and Electronics Engineering EX 4th Semester Syllabus,

Unit I Transformer: Review of single phase transformer, Phasor diagram, Equivalent circuits, voltage regulation, short circuit and open circuit tests, Back to back test and performance evaluation, parallel operation and load sharing, Tap changers effect of saturation on magnetizing current, Ferroresenance, 3-phase transformers & their connections , constructional features, winding arrangements, cooling, conservators, breathers, buckhloz relay, Scott connections, Autotransformers, Pulse and high frequency transformers.

Unit II D.C. Machines: Review of constructional features. Methods of excitation, Armature reaction,  Commutation, Interpoles & compensating winding, Power, EMF and torque equations,- Operation as generator - Self-excitation principles. Characteristics,

Unit III DC Motor: Operation of D.C. Machines as motor, characteristics. Starting, speed control including solid state controllers, Braking . Losses, Efficiency. Power flow diagram for generator & Motor,Direct testing, Swinburne’s test & Hopkinson’s Test on DC Machines,  applications of dc Machines.

Unit IV: Three phase Induction motor: Constructional details. Production of EMF, steady state analysis, equivalent circuit, Phasor diagram, power flow diagram and torque-speed & power speed characteristics, circle diagram. 

Unit V Three phase Induction motor : Starting Methods, Power factor Control. Speed control schemes including solid state. Braking. Effect of  space/time harmonics and analysis. Crawling & Cogging, Double cage & Deep bar Indication Motor  Testing,  Losses and Efficiency, effect of unbalanced supply, Induction generators.

RGTU/RGPV Electro Mechanical Energy Conversion –I References:
1. Nagrath and Kothari; Electrical Machines; TMH
2. Langs dorf; A.C. Machines.
3. Dr.P.S.Bimbhra; Electrical Machines; Khanna Publisher
4. Ashfaq Hussain; Electrical Machines; Dhanpat Rai Publication.
5. M. G. Say; Alternating Current Machines’, (5th Ed.) ELBS, 1986.
6. M.G.Say and E.O.Taylor; Direct Current Machines Second Ed., ELBS, 1985.
7. V.Del Toro; Electrical Machines & Power Systems, 1985, Prentice-Hall, Inc., Englewood Cliffs.
8. V.Del Toro; Electromechanical Devices for Energy Conversion & Control Systems, PHI Pvt. Ltd.

RGTU/RGPV Electro Mechanical Energy Conversion –I  List of Experiments (Expandable): 

1. To perform open circuit and short circuit test on 1-phase and 3-phase transformer and determine its equivalent circuit parameters.
2. To perform open circuit and short circuit test on 1-phase and 3-phase transformer and determine its efficiency and regulation at.
  • i  Full load at unity power factor.
  • ii Full load at zero power factor lead and lag.
  • iii Half the full load at 0.8 power factor lead and lag.
3. Perform Sumpner’s test on 2 Single phase Transformers.
4. To perform the parallel operation of two, 1-phase transformer and observe load sharing.
5. To perform the No load and block rotor test of 3-phase induction motor and to determine its equivalent circuit parameters.
6. To perform the No load and block rotor test of 3-phase induction motor to draw the circle diagram.
7. To perform the load test on 3-phase induction motor and draw its performance characteristic
8. Swinburn’s test on D.C. motor & determine its efficiency.
9. To perform  speed control of D.C. motor.
10. To plot OCC on a separately excited D.C. Generator.
11. Perform load test on D.C. Generator. 
EX 4th sem Electromagnetic Theory syllabus EMT syllabus EX 401

EX 4th sem Electromagnetic Theory syllabus EMT syllabus EX 401

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Related: Electromagnetic Theory syllabus, EMT syllabus, EE EMT syllabus, 4th semester EMT syllabus, BE 4th semester EMT Syllabus, Electrical and Electronics Engineering
 
EX-401 Electromagnetic Theory (EMT) Syllabus
 RGTU/RGPV Electromagnetic Theory (EMT) SYLLABUS
Electrical and Electronics Engineering EX 4th Semester Syllabus,

Unit I Cartesian, cylindrical & spherical co-ordinate systems, scalar & vector fields, gradient, divergence & curl of a vector field, Divergence theorem & Stokes’s theorem, concept of vectors. Electrostatic Fields – Coulomb’s law, electric field intensity due to different charge distribution viz. line charge, sheet charge, Field due to continuous volume – electric potential, properties of potential function, potential gradient equipotential surfaces, line of force, Gauss law, applications of Gauss law, Gauss law in point form, method of images.

Unit II Laplace’s & Poisson’s equations, solution of Laplace’s equation, Electric dipole, dipole moment, potential & electric field intensity due to dipole, Behavior of conductors in an electric field. Conductor & insulator, electric field inside a dielectric, polarization, Boundary value conditions for electric Field, Capacitance & Capacitances of various types of capacitors, Energy stored and energy density in static electric field, Current density, conduction & convection current density ohms law in point form, equation of continuity.

Unit III Static Magnetic Field, Biot-Savart’s law, Magnetic Field intensity due to straight current carrying filament, circular, square and solenoidal current carrying wire, Relationship between magnetic flux, flux density & magnetic Field intensity; Ampere’s circuital law and its applications, magnetic Field intensity due to infinite sheet and various other configurations, Ampere’s circuital law in point form, Magnetic force, moving charge in a magnetic field, Lorentz Force on straight and long current carrying conductors in magnetic field, force between two long & parallel current carrying conductors. Magnetic dipole & dipole moment, a differential current loop as dipole, torque on a current carrying loop in magnetic field, Magnetic Boundary conditions.

Unit IV Scalar magnetic potential and its limitations, Vector magnetic potential and its properties, vector magnetic potential due to different simple configurations; Self and Mutual inductances, determination of self & mutual inductances, self inductance of solenoid, toroid coils, mutual inductance between a straight long wire & a square loop. Energy stored in magnetic Field & energy density, Faraday’s Law, transformer & motional EMFs, Displacement current, Maxwell’s equations as Generalization of circuit equations, Maxwell’s equation in free space, Maxwell’s equation for harmonically varying Field, static and steady fields, Maxwell’s equations in differential & integral form.

Unit V Electro Magnetic Waves : Uniform plane wave in time domain in free space, Sinusoidally time varying uniform plane wave in free space, Wave equation and solution for material medium, Uniform plane wave in dielectrics and conductors, Pointing  Vector theorem, instantaneous, average and complex poynting vector, power loss in a plane conductor, energy storage, Polarization of waves, Reflection by conductors and dielectric – Normal &  Oblique incidence, Reflection at surface of a conducting medium, surface impedance, transmission line analogy. 
 
Electromagnetic Theory syllabus EMT References:
1. Mathew N.O Sadiku; Elements of Electromagnetic; Oxford.
2. P.V. Gupta; Electromagnetic Fields; Dhanpat Rai.
3. N.N. Rao; Element of Engineering Electromagnetic; PHI.
4. William H. Hayt; Engineering Electromagnetic; TMH.
5. John D. Kraus; Electromagnetic; TMH.
6. Jordan Balmian; Electromagnetic wave & Radiating System; PHI.
7. David K. Cheng; Fields and Wave Electromagnetic; Addison Wesley.
8. S.P. Seth; Electromagnetic Field ;Dhanpat Rai & Sons

Note: Field plotting of electromagnetic systems on a PC using standard softwares. Application for low and high frequency devices. Suggested softwares, GEMINI(Infolytica), ANSYS, ANSOFT, NISA
RGPV / RGTU B.E. EX 406 Dot.Net 4th (IV) Semester syllabus EX 406 Dot.Net Revised  Electrical and Electronics Engineering (EX)

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

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

Rajiv Gandhi Technological University, Bhopal (MP)
B.E. (EX) Electrical and Electronics Engineering
FOURTH IV SEMESTER
EX 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.