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EE8261 Syllabus ELECTRIC CIRCUITS LABORATORY Regulation 2017 Anna University

EE8261 Syllabus ELECTRIC CIRCUITS LABORATORY Regulation 2017 Anna University

EE8261 Syllabus OBJECTIVES:

  • To simulate various electric circuits using Pspice/ Matlab/e-Sim / Scilab
  • To gain practical experience on electric circuits and verification of theorems.

EE8261 Syllabus LIST OF EXPERIMENTS

1. Simulation and experimental verification of electrical circuit problems using Kirchhoff’s voltage and current laws.

2. Simulation and experimental verification of electrical circuit problems using Thevenin’s theorem.

3. Simulation and experimental verification of electrical circuit problems using Norton’s theorem.

4. Simulation and experimental verification of electrical circuit problems using Superposition theorem.

5. Simulation and experimental verification of Maximum Power transfer Theorem.

6. Study of Analog and digital oscilloscopes and measurement of sinusoidal voltage, frequency and power factor.

7. Simulation and Experimental validation of R-C electric circuit transients.

8. Simulation and Experimental validation of frequency response of RLC electric circuit.

9. Design and Simulation of series resonance circuit.

10. Design and Simulation of parallel resonant circuits.

11. Simulation of three phase balanced and unbalanced star, delta networks circuits.

TOTAL: 60 PERIODS

EE8261 Syllabus OUTCOMES:

  • Understand and apply circuit theorems and concepts in engineering applications.
  • Simulate electric circuits.

EE8261 Syllabus LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS:

1 Regulated Power Supply: 0 – 15 V D.C – 10 Nos / Distributed Power Source.

2 Function Generator (1 MHz) – 10 Nos.

3 Single Phase Energy Meter – 1 No.

4 Oscilloscope (20 MHz) – 10 Nos.

5 Digital Storage Oscilloscope (20 MHz) – 1 No.

6 10 Nos. of PC with Circuit Simulation Software (min 10 Users) ( e-Sim / Scilab/ Pspice / MATLAB /other Equivalent software Package) and Printer (1 No.)

7 AC/DC – Voltmeters (10 Nos.), Ammeters (10 Nos.) and Multi-meters (10 Nos.)

8 Single Phase Wattmeter – 3 Nos.

9 Decade Resistance Box, Decade Inductance Box, Decade Capacitance Box – 6 Nos each.

10 Circuit Connection Boards – 10 Nos.

Necessary Resistors, Inductors, Capacitors of various quantities (Quarter Watt to 10 Watt).

 

Subject Name ELECTRIC CIRCUITS LAB
Subject Code EE8261
Regulation 2017
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PH8253 Syllabus PHYSICS FOR ELECTRONICS ENGINEERING Regulation 2017 Anna University

PH8253 Syllabus PHYSICS FOR ELECTRONICS ENGINEERING Regulation 2017 Anna University

PH8253 Syllabus OBJECTIVES:

To understand the essential principles of Physics of semiconductor device and Electron transport properties.

Become proficient in magnetic, dielectric and optical properties of materials and nano devices.

PH8253 Syllabus UNIT I ELECTRICAL PROPERTIES OF MATERIALS

Classical free electron theory – Expression for electrical conductivity – Thermal conductivity, expression – Wiedemann-Franz law – Success and failures – electrons in metals – Particle in a three dimensional box – degenerate states – Fermi- Dirac statistics – Density of energy states – Electron in periodic potential: Bloch thorem – metals and insulators – Energy bands in solids– tight binding approximation – Electron effective mass – concept of hole.

PH8253 Syllabus UNIT II SEMICONDUCTOR PHYSICS

Intrinsic Semiconductors – Energy band diagram – direct and indirect semiconductors – Carrier concentration in intrinsic semiconductors – extrinsic semiconductors – Carrier concentration in Ntype
& P-type semiconductors – Carrier transport: Velocity-electric field relations – drift and diffusion transport – Einstein’s relation – Hall effect and devices – Zener and avalanche breakdown in p-n
junctions – Ohmic contacts – tunnel diode – Schottky diode – MOS capacitor – power transistor.

PH8253 Syllabus UNIT III MAGNETIC AND DIELECTRIC PROPERTIES OF MATERIALS

Magnetism in materials – magnetic field and induction – magnetization – magnetic permeability and susceptibility–types of magnetic materials – microscopic classification of magnetic materials – Ferromagnetism: origin and exchange interaction- saturation magnetization and Curie temperature – Domain Theory. Dielectric materials: Polarization processes – dielectric loss – internal field – Clausius-Mosotti relation- dielectric breakdown – high-k dielectrics.

PH8253 Syllabus UNIT IV OPTICAL PROPERTIES OF MATERIALS

Classification of optical materials – carrier generation and recombination processes – Absorption emission and scattering of light in metals, insulators and Semiconductors (concepts only) – photo
current in a P- N diode – solar cell –photo detectors – LED – Organic LED – Laser diodes – excitons – quantum confined Stark effect – quantum dot laser.

PH8253 Syllabus UNIT V NANOELECTRONIC DEVICES

Introduction – electron density in bulk material – Size dependence of Fermi energy– quantum confinement – quantum structures – Density of states in quantum well, quantum wire and quantum dot structures –Zener-Bloch oscillations – resonant tunneling – quantum interference effects – mesoscopic structures: conductance fluctuations and coherent transport – Coulomb blockade effects – Single electron phenomena and Single electron Transistor – magnetic semiconductors– spintronics – Carbon nanotubes: Properties and applications.

TOTAL : 45 PERIODS

PH8253 Syllabus OUTCOMES:

At the end of the course, the students will able to

  • Gain knowledge on classical and quantum electron theories, and energy band structuues,
  • Acquire knowledge on basics of semiconductor physics and its applications in various devices,
  • Get knowledge on magnetic and dielectric properties of materials,
  • Have the necessary understanding on the functioning of optical materials for optoelectronics,
  • Understand the basics of quantum structures and their applications in spintronics and carbon electronics.

PH8253 Syllabus TEXT BOOKS:

1. Kasap, S.O. “Principles of Electronic Materials and Devices”, McGraw-Hill Education, 2007.
2. Umesh K Mishra & Jasprit Singh, “Semiconductor Device Physics and Design”, Springer, 2008.
3. Wahab, M.A. “Solid State Physics: Structure and Properties of Materials”. Narosa Publishing House, 2009.

PH8253 Syllabus REFERENCES:

1. Garcia, N. & Damask, A. “Physics for Computer Science Students”. Springer-Verlag, 2012.
2. Hanson, G.W. “Fundamentals of Nanoelectronics”. Pearson Education, 2009.
3. Rogers, B., Adams, J. & Pennathur, S. “Nanotechnology: Understanding Small Systems”. CRC Press, 2014.

 

Subject Name PHYSICS FOR ELECTRONICS ENGINEERING
Subject Code PH8253
Regulation 2017
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PH8203 Syllabus APPLIED PHYSICS Regulation 2017 Anna University

PH8203 Syllabus APPLIED PHYSICS Regulation 2017 Anna University

PH8203 Syllabus OBJECTIVES:

  • To illustrate, with suitable examples, the functioning of conductors, semiconductors, dielectric, magnetic and superconducting materials.
  • To make the students familiarize with the optical properties of materials.

PH8203 Syllabus UNIT I ELECTRICAL PROPERTIES OF MATERIALS

Classical free electron theory – Expression for electrical conductivity – Thermal conductivity, expression – Wiedemann-Franz law – Success and failures – Quantum free electron theory – Particle in a finite potential well – Tunneling- Particle in a three dimensional box – degenerate states – Fermi- Dirac statistics – Density of energy states – Electron in periodic potential – Energy bands in solids – tight binding approximation – Electron effective mass – effective number of free electrons – concept of hole.

PH8203 Syllabus UNIT II SEMICONDUCTOR PHYSICS

Intrinsic Semiconductors – Energy band diagram – direct and indirect band gap semiconductors – Carrier concentration in intrinsic semiconductors – extrinsic semiconductors – Carrier concentration in N-type & P-type semiconductors – Variation of carrier concentration with temperature – Carrier transport in Semiconductors: Drift, mobility and diffusion – four-probe and Hall effect and devices – Ohmic contacts – Schottky diode.

PH8203 Syllabus UNIT III DIELECTRICS AND FERROELECTRICS

Macroscopic description of the static dielectric constant. The electronic and ionic polarizabilities of molecules – orientational polarization – Measurement of the dielectric constant of a solid. The internal field – Lorentz, Clausius-Mosotti relation. Behaviour of dielectrics in an alternating field, elementary ideas on dipole relaxation, – Piezo, pyro and ferroelectric properties of crystals -classification of ferroelectric crystals – BaTiO3 and KDP.

PH8203 Syllabus UNIT IV MAGNETISM AND SUPERCONDUCTIVITY

Atomic magnetic moment – classification of magnetic materials: diamagnetism, paramagnetism, ferromagnetism, antiferromagnetism and ferrimagnetism – Ferromagnetism: saturation magnetization and Curie temperature – exchange interaction – Domain theory – M versus H behavior – soft and hard magnetic materials -. Quantum Hall effect – Superconductivity – Zero resistance and the Meissner effect – Type I and Type II superconductors – critical current density – BCS theory of superconductivity – Elements of high temperature superconductivity (basic concepts only).

PH8203 Syllabus UNIT V OPTICAL PROPERTIES OF MATERIALS

Light waves in a homogeneous medium – refractive index – dispersion: refractive index-wave-length behaviour – group velocity and group index – NLO materials – phase matching – SHG, sum frequency generation, parametric oscillations – difference frequency generation (qualitative)- applications- – complex refractive index and light absorption – Luminescence, phosphors and white LEDs – polarization – optical anisotropy: uniaxial crystals, birefringence, dichroism – electro-optic effect and amplitude modulators- electro-absorption.

TOTAL : 45 PERIODS

PH8203 Syllabus OUTCOMES:

At the end of the course, the students will able to

  • Gain knowledge on classical and quantum electron theories, and energy band structures,
  • Acquire knowledge on basics of semiconductor physics and its applications in various devices,
  • Get knowledge on the functioning of dielectric and ferroelectric materials,
  • Have the necessary understanding on magnetic and superconducting properties of materials,
  • Understand the basics of nonlinear optical materials and their applications in optical modulators.

PH8203 Syllabus TEXT BOOKS:

  1. Kasap, S.O. ―Principles of Electronic Materials and Devices‖, McGraw-Hill Education, 2007.
  2. Umesh K Mishra & Jasprit Singh, ―Semiconductor Device Physics and Design‖, Springer, 2008.
  3. Wahab, M.A. ―Solid State Physics: Structure and Properties of Materials‖. Narosa Publishing House, 2009.

PH8203 Syllabus REFERENCES:

1. Askeland, D. ―Materials Science and Engineering‖. Brooks/Cole, 2010.

2. Smith, W.F., Hashemi, J. & Prakash, R. ―Materials Science and Engineering‖. Tata McGraw Hill Education Pvt. Ltd., 2014.

3. Balasubramaniam, R. ―Callister’s Materials Science and Engineering‖. Wiley India Pvt. Ltd., 2014.

Subject Name APPLIED PHYSICS
Subject Code PH8203
Regulation 2017
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BE8261 Syllabus BASIC ELECTRICAL, ELECTRONICS AND INSTRUMENTATION ENGINEERING LABORATORY Regulation 2017 Anna University

BE8261 Syllabus BASIC ELECTRICAL, ELECTRONICS AND INSTRUMENTATION ENGINEERING LABORATORY Regulation 2017 Anna University

BE8261 Syllabus OBJECTIVE:

  • To train the students in performing various tests on electrical drives, sensors and circuits.

BE8261 Syllabus LIST OF EXPERIMENTS:

1. Load test on separately excited DC generator.
2. Load test on Single phase Transformer.
3. Load test on Induction motor.
4. Verification of Circuit Laws.
5. Verification of Circuit Theorems.
6. Measurement of three phase power.
7. Load test on DC shunt motor.
8. Diode based application circuits.
9. Transistor based application circuits.
10. Study of CRO and measurement of AC signals.
11. Characteristics of LVDT.
12. Calibration of Rotometer.
13. RTD and Thermistor.

Minimum of 10 Experiments to be carried out :-

TOTAL: 60 PERIODS

BE8261 Syllabus OUTCOMES:

  • Ability to determine the speed characteristic of different electrical machines.
  • To design simple circuits involving diodes and transistors.
  • Ability to use operational amplifiers.

BE8261 Syllabus LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS

1 D. C. Motor Generator Set 2 QTY

2 D.C. Shunt Motor 2 QTY

3 Single Phase Transformer 2 QTY

4 Single Phase Induction Motor 2 QTY

5 Ammeter A.C and D.C 20 QTY

6 Voltmeters A.C and D.C 20 QTY

7. Watt meters LPF and UPF 4 QTY

8. Resistors & Breadboards –  QTY

9. Cathode Ray Oscilloscopes 4  QTY

10. Dual Regulated power supplies 6  QTY

11. A.C. Signal Generators 4 QTY

12. Transistors (BJT, JFET) –

 

Subject Name BASIC ELECTRICAL, ELECTRONICS AND INSTRUMENTATION ENGINEERING LABORATORY
Subject Code BE8261
Regulation 2017
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BE8253 Syllabus BASIC ELECTRICAL, ELECTRONICS AND INSTRUMENTATION ENGINEERING Regulation 2017 Anna University

BE8253 Syllabus BASIC ELECTRICAL, ELECTRONICS AND INSTRUMENTATION ENGINEERING Regulation 2017 Anna University

BE8253 Syllabus OBJECTIVES:

To impart knowledge on

• Electric circuit laws, single and three phase circuits and wiring.

• Working principles of Electrical Machines.

• Working principle of Various electronic devices and measuring instruments.

BE8253 Syllabus UNIT I ELECTRICAL CIRCUITS

Basic circuit components – Ohms Law – Kirchoff‘s Law – Instantaneous Power – Inductors – Capacitors – Independent and Dependent Sources – steady state solution of DC circuits – Nodal analysis, Mesh analysis- Thevinin‘s Theorem, Norton‘s Theorem, Maximum Power transfer theorem- Linearity and Superposition Theorem.

BE8253 Syllabus UNIT II AC CIRCUITS

Introduction to AC circuits – waveforms and RMS value – power and power factor, single phase and three-phase balanced circuits – Three phase loads – housing wiring, industrial wiring, materials of wiring.

BE8253 Syllabus UNIT III ELECTRICAL MACHINES

Principles of operation and characteristics of ; DC machines, Transformers (single and three phase ) ,Synchronous machines , three phase and single phase induction motors.

BE8253 Syllabus UNIT IV ELECTRONIC DEVICES & CIRCUITS

Types of Materials – Silicon & Germanium- N type and P type materials – PN Junction –Forward and Reverse Bias –Semiconductor Diodes –Bipolar Junction Transistor – Characteristics – Field Effect Transistors – Transistor Biasing –Introduction to operational Amplifier –Inverting Amplifier –Non Inverting Amplifier –DAC – ADC .

BE8253 Syllabus UNIT V MEASUREMENTS & INSTRUMENTATION

Introduction to transducers – Classification of Transducers: Resistive, Inductive, Capacitive, Thermoelectric, piezoelectric, photoelectric, Hall effect and Mechanical – ,Classification of instruments – Types of indicating Instruments – multimeters –Oscilloscopes- – three-phase power measurements– instrument transformers (CT and PT ).

TOTAL : 45 PERIODS

BE8253 Syllabus OUTCOMES:

Ability to Understand electric circuits and working principles of electrical machines.

To Understand the concepts of various electronic devices.

Choose appropriate instruments for electrical measurement for a specific application.

BE8253 Syllabus TEXT BOOKS

1. D P Kothari and I.J Nagarath, ‖Electrical Machines ―Basic Electrical and Electronics Engineering‖, McGraw Hill Education(India) Private Limited, Third Reprint ,2016.

2. Leonard S Bobrow, ― Foundations of Electrical Engineering‖, Oxford University Press, 2013.

3. Thereja .B.L., ―Fundamentals of Electrical Engineering and Electronics‖, S. Chand & Co. Ltd., 2008.

BE8253 Syllabus REFERENCES

1. A.E.Fitzgerald, David E Higginbotham and Arvin Grabel, ―Basic Electrical Engineering‖, McGraw Hill Education(India) Private Limited, 2009.

2. Allan S Moris, ―Measurement and Instrumentation Principles‖, Elseveir, First Indian Edition, 2006.

3. Del Toro, ―Electrical Engineering Fundamentals‖, Pearson Education, New Delhi, 2007.

4. John Bird, ―Electrical Circuit Theory and Technology‖, Elsevier, First Indian Edition, 2006.

5. N K De, Dipu Sarkar, ―Basic Electrical Engineering‖, Universities Press (India)Private Limited 2016 6. Rajendra Prasad, ―Fundamentals of Electrical Engineering‖, Prentice Hall of India, 2006.

Subject Name BASIC ELECTRICAL, ELECTRONICS AND INSTRUMENTATION ENGINEERING
Subject Code BE8253
Regulation 2017
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PH8251 Syllabus MATERIALS SCIENCE Regulation 2017 Anna University

PH8251 Syllabus MATERIALS SCIENCE Regulation 2017 Anna University

PH8251 Syllabus OBJECTIVES:

  • To introduce the essential principles of materials science for mechanical and related engineering applications.

PH8251 Syllabus UNIT I PHASE DIAGRAMS

Solid solutions – Hume Rothery’s rules – the phase rule – single component system – one-component system of iron – binary phase diagrams – isomorphous systems – the tie-line rule – the lever rule – application to isomorphous system – eutectic phase diagram – peritectic phase diagram – other invariant reactions – free energy composition curves for binary systems – microstructural change during cooling.

PH8251 Syllabus UNIT II FERROUS ALLOYS

The iron-carbon equilibrium diagram – phases, invariant reactions – microstructure of slowly cooled steels – eutectoid steel, hypo and hypereutectoid steels – effect of alloying elements on the Fe-C system – diffusion in solids – Fick’s laws – phase transformations – T-T-T-diagram for eutectoid steel – pearlitic, baintic and martensitic transformations – tempering of martensite – steels – stainless steels – cast irons.

PH8251 Syllabus UNIT III MECHANICAL PROPERTIES

Tensile test – plastic deformation mechanisms – slip and twinning – role of dislocations in slip – strengthening methods – strain hardening – refinement of the grain size – solid solution strengthening – precipitation hardening – creep resistance – creep curves – mechanisms of creep – creep-resistant materials – fracture – the Griffith criterion – critical stress intensity factor and its determination – fatigue failure – fatigue tests – methods of increasing fatigue life – hardness – Rockwell and Brinell hardness – Knoop and Vickers microhardness.

PH8251 Syllabus UNIT IV MAGNETIC, DIELECTRIC AND SUPERCONDUCTING MATERIALS

Ferromagnetism – domain theory – types of energy – hysteresis – hard and soft magnetic materials – ferrites – dielectric materials – types of polarization – Langevin-Debye equation – frequency effects on polarization – dielectric breakdown – insulating materials – Ferroelectric materials – superconducting materials and their properties.

PH8251 Syllabus UNIT V NEW MATERIALS

Ceramics – types and applications – composites: classification, role of matrix and reinforcement, processing of fiber reinforced plastics – metallic glasses: types , glass forming ability of alloys, melt spinning process, applications – shape memory alloys: phases, shape memory effect, pseudoelastic effect, NiTi alloy, applications – nanomaterials: preparation (bottom up and top down approaches), properties and applications – carbon nanotubes: types.

TOTAL : 45 PERIODS

PH8251 Syllabus OUTCOMES:

Upon completion of this course,

The students will have knowledge on the various phase diagrams and their applications.

Students will acquire knowledge on Fe-Fe3C phase diagram, various microstructures and alloys.

The students will get knowledge on mechanical properties of materials and their measurement.

Students will gain knowledge on magnetic, dielectric and superconducting properties of materials.

The students will understand the basics of ceramics, composites and nanomaterials.

PH8251 Syllabus TEXT BOOKS:

1. Balasubramaniam, R. ―Callister’s Materials Science and Engineering‖. Wiley India Pvt. Ltd., 2014.

2. Raghavan, V. ―Physical Metallurgy: Principles and Practice‖. PHI Learning, 2015.

3. Raghavan, V. ―Materials Science and Engineering : A First course‖. PHI Learning, 2015.

PH8251 Syllabus REFERENCES

1. Askeland, D. ―Materials Science and Engineering‖. Brooks/Cole, 2010.

2.Smith, W.F., Hashemi, J. & Prakash, R. ―Materials Science and Engineering‖. Tata McGraw Hill Education Pvt. Ltd., 2014.

3. Wahab, M.A. ―Solid State Physics: Structure and Properties of Materials‖. Narosa Publishing House, 2009.

 

Subject Name MATERIALS SCIENCE
Subject Code PH8251
Regulation 2017
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AI8211 Syllabus CROP HUSBANDRY LABORATORY Regulation 2017 Anna University

AI8211 Syllabus CROP HUSBANDRY LABORATORY Regulation 2017 Anna University

AI8211 Syllabus OBJECTIVE:

To introduce the different crop production practices in wet land, dry land and garden land through hands on experience and demonstrations.

AI8211 Syllabus List of Experiments:

  • Field preparation studies
  • Seed selection and seed treatment procedures
  • Seed bed and nursery preparation
  • Sowing / Transplanting
  • Biometric observation for crops
  • Nutrient management studies
  • Water management and irrigation scheduling
  • Weed management studies
  • Integrated Pest Management studies
  • Harvesting
  • Post harvesting

TOTAL: 60 PERIODS

AI8211 LIST OF EQUIPMENTS REQUIRED

  • A wet land / garden land for a minimum of 5 cents area for each / group of students.
  • An open / borewell as water source to support cultivation

 

Subject Name CROP HUSBANDRY LABORATORY
Subject Code AI8211
Regulation 2017
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AI8201 Syllabus PRINCIPLES AND PRACTICES OF CROP PRODUCTION Regulation 2017 Anna University

AI8201 Syllabus PRINCIPLES AND PRACTICES OF CROP PRODUCTION Regulation 2017 Anna University

AI8201 Syllabus OBJECTIVES:

To introduce the students to principles of agricultural and horticultural crop production and to introduce the production practices of crops.

For delineate the role of agricultural and irrigation engineers in relation to various crop production practices.

AI8201 Syllabus UNIT I AGRICULTURE AND CROP PRODUCTION

Introduction to agriculture and its crop production sub-sectors – field crop production and horticulture; Factors affecting crop growth and production: genetic (internal) and environmental (external) factors; Crop management through environmental modification and adaptation of crops to the existing environment through crop cultural practices

AI8201 Syllabus UNIT II CROP SELECTION AND ESTABLISHMENT

Regional and seasonal selection of crops; Systems of crop production; Competition among crop plants; Spacing and arrangement of crop plants; Field preparation for crops including systems of tillage; Establishment of an adequate crop stand and ground cover, including selection and treatment of seed, and nursery growing.

AI8201 Syllabus UNIT III CROP MANAGEMENT

Crop water Management; a Crop nutrition management – need for supplementation to soil supplied nutrients, sources, generalized recommendations, methods and timing of application of supplemental nutrients including fertigation scheduling; Crop protection including management of weeds, pests and pathogens; Integrated methods of managing water, nutrients and plant protection; Types and methods of harvest.

AI8201 Syllabus UNIT IV PRODUCTION PRACTICES OF AGRICULTURAL CROPS

Generalized management and cultivation practices for important groups of field crops in Tamil Nadu: cereal crops, grain legumes, oil seed crops, sugarcane, and fiber crops, and special purpose crops such as those grown for green manure and fodder.

AI8201 Syllabus UNIT V PRODUCTION PRACTICES OF HORTICULTURAL CROPS

Important groups of horticultural crops in Tamil Nadu such as vegetable crops, fruit crops, flower crops; Cultivation practices of representatives of each group; Special features of production of horticultural crops – green house cultivation.

TOTAL: 45 PERIODS

AI8201 Syllabus OUTCOMES:

Students completing this course would have acquired knowledge on crop selection, crop production crop management.

The students will have the required knowledge in the area of production of agricultural and horticultural crops.

AI8201 Syllabus TEXTBOOKS:

1. Rajendra Prasad, Text Book of Field Crop Production. Directorate of Information and Publication, Krishi Anusandhan Bhavan, Pusa, New Delhi, 2015.

2. Reddy T. Sankara G.H. Yellamanda Reddi, Principles of Agronomy, Kalyani Publishers, New Delhi, 2005.

3. Handbook of Agriculture. ICAR Publications, New Delhi, 2011.

AI8201 Syllabus REFERENCES:

1. Bose T. K. and L.P.Yadav. Commercial Flowers, Naya Prakash, Calcutta.1989.

2. Crop Production Guide, Tamil Nadu Agricultural University Publication, Coimbatore. 2005

3. Kumar, N., Abdul Khader, M. Rangaswami, P. and Irulappan, I. Introduction to spices, plantation crops, medicinal and aromatic plants. Rajalakshmi Publications, Nagercoil. 1993.

4. Kumar, N.,”Introduction to Horticulture”, Rajalakshmi Publications. Nagercoil, 7th edition, 2015.

5. Shanmugavel, K.G. Production Technology of Vegetable Crops. Oxford India Publications, New Delhi. 1989.

 

Subject Name PRINCIPLES AND PRACTICES OF CROP PRODUCTION
Subject Code AI8201
Regulation 2017
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GI8211 Syllabus INTRODUCTION TO MATLAB  Regulation 2017 Anna University

GI8211 Syllabus INTRODUCTION TO MATLAB  Regulation 2017 Anna University

GI8211 Syllabus OBJECTIVES:

The student should be made to:

  • Be familiar with the MATLAB GUI and basic tool boxes.
  • To exposed to vector and matrix operations.
  • Be familiar with arithmetic, logical and relational operations on matrix.

GI8211 Syllabus LIST OF EXPERIMENTS:

1. Introduction to SDK of MATLAB.

2. Basic Syntax and scalar arithmetic operations and calculations.

3. Working with formulas.

4. Arithmetic operations in matrix data

5. Matrix operations (Inverse, Transpose)

6. Reading an image file

7. Reading from and writing to a text file

8. Introduction to toolboxes

9. Data visualization and plotting

10. Relational operators in data

11. Logical operation in data

12. Loops in MATLAB

13. Computing Eigen value for a matrix

14. Random number generation – Montecarlo methods

TOTAL: 60 PERIODS

GI8211 Syllabus OUTCOMES:

Students will be able to

  • Perform data handling in MATLAB environment
  • Solve simple matrix problems
  • Use built-in toolboxes

GI8211 REFERENCES:

1. Holly Moore, “ MATLAB for Engineers” Third Edition – Pearson Publications.

2. Stephen J. Chapman, “MATLAB Programming for Engineers” Fourth Edition –Thomson learning.

Matlab Syllabus LIST OF EQUIPMENT FOR A BATCH OF 30 STUDENTS:

  1. Desktop Computer – 30 Nos.
  2. MATLAB 9.1 – 30 User license.

 

Subject Name MATLAB
Subject Code GI8211
Regulation 2017
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GI8201 Syllabus GEOINFORMATICS SYSTEMS Regulation 2017 Anna University 

GI8201 Syllabus GEOINFORMATICS SYSTEMS Regulation 2017 Anna University 

GI8201 Syllabus OBJECTIVES

  • To introduce the information concepts and systems used in Geoinformatics.
  • For familiarize the role of Internet and Networks in Geoinformatics.
  • To familiarize scripting languages and geo-database and Information Technology.

GI8201 Syllabus UNIT I COMPUTER SYSTEMS

Computers – types – components – CPU – memory – Input devices-Output devices – Operating Systems: Windows, Linux–fundamentals – software – system software, application software – file operations.

GI8201 Syllabus UNIT II DATA ACQUISITION

Acquisition and storage of Numeric data- Textual data – image data – Audio data – Animation and Video data – Data formats – fundamentals of image and video compression – introduction to geospatial data- remote sensing sensors, data organization.

GI8201 Syllabus UNIT III NETWORKS AND COMMUNICATION

Fundamental computer network concepts – Network layers – TCP/IP model – LAN, WAN, WLAN, intranet, Internet – Applications – Essentials of internet – Ethernet – Network Routing – Switching – Data transportation through Network – protocols – Cell phone working fundamentals – Cell phone frequencies & channels – Digital cell phone components – Cell phone network technologies / architecture.

GI8201 GEOINFORMATICS SYSTEMS UNIT IV WEB SCRIPTING

Browser fundamentals – Types of servers – web site essentials – Introduction to Scripting languages – Types of scripting languages – Flow Control and Looping – online data handling – Cookies – Simple scripts for database integration – introduction to PHP and MYSQL.

GI8201 Syllabus UNIT V GEOINFORMATION

Information System – GIS – GPS – Information retrieval system – Geo-database – interactive applications – Multimedia applications – Earth resource platform – Google maps and Google earth – LBS – Introduction to Integration of Geo-database and Social networking applications.

TOTAL : 45 PERIODS

GI8201 Syllabus OUTCOMES:

At the end of the course, the student should be able to:

  • To understand Computer systems and data formats.
  • Understand basics of Geoinformation.
  • For understand the role of complex network systems that handles Geo-information.
  • Understand scripting languages and database.

GI8201 GEOINFORMATICS SYSTEMS TEXT BOOKS:

1. Robin Nixon, “Learning PHP, MySQL, JavaScript, CSS & HTML5” Third Edition, O’Reilly, 2014.

2. James F. Kurose, “Computer Networking: A Top-Down Approach” Sixth Edition, Pearson, 2012.

GI8201 Syllabus REFERENCES:

1. Gottapu Sasibhushana Rao, “Mobile Cellular Communication”, Pearson, 2012.

2. Peter Norton, “Introduction to Computers” Sixth edition, Tata McGraw – Hill, 2008.

3. R. Kelly Rainer, Casey G. Cegielski, Brad Prince, “Introduction to Information Systems”, Fifth Edition, Wiley Publication, 2014.

 

Subject Name GEOINFORMATICS SYSTEMS
Subject Code GI8201
Regulation 2017
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Download GI8201 Syllabus GEOINFORMATICS SYSTEMS For free.

Anna University Regulation 2017 GEOINFORMATICS SYSTEMS Syllabus download pdf free.

Semester 2 Anna University Regulation 2017 Syllabus.

Syllabus for sem 2 Anna University Regulation 2017.