Academic Calendar for IV Year II Semester


The Proposed Academic Calendar for II, III and IV Year II Semester B.Tech/B.Pharm courses during the year 2011-12 is detailed below.

                                                  FROM   -      TO
I Unit of Instructions       ---- 28-11-2011 -  21-01-2012
I Mid Examinations         ---- 23-01-2012 -  28-01-2012
II Unit of Instruction        ---- 30-01-2012 -  24-03-2012
II Mid Examinations        ---- 26-03-2012 - 31-03-2012
Preparation & Practicals  ---- 02-04-2012 - 14-04-2012
End Examinations             ---- 16-04-2012 - 28-04-2012


                                                                                                         

 

4-2 SEMISTER PREVIEW


4-2 Semister:  subjects & other classes


Utilization of electrical energy (UEE)           :   N V Subbarao
Digital control systems (DCS)                     :   Prasad
Database management systems (DBMS)  :   Ravi kumar
CSS 1                                                        :   Ramesh
CSS 2                                                        :   Sujith
TECHNICAL SEMINAR                               :   Weekly 4 times(each time 2 periods)
MINI PROJECT/MAIN PROJECT                :   Weekly 4 times (            "               )
LIBRARY                                                    :   Weekly 2 times 


For 10th & 14th batches of main project new faculty(Chandra kala & vara prasad) are arranged on behalf of subbarao & HOD.

REVIEW 1 OF MAIN PROJECT: Will be held on 29th DECEMBER (about project & till that time what was completed ;;; 10 min presentation ) .

TECHNICAL SEMINAR RESUMES FROM 7TH DEC.............
                             
 

GATE 2012 EEE SYLLABUS AND INFO


SYLLABUS FOR ELECTRICAL ENGINEERING (EE)
Engineering Mathematics
Linear Algebra:
Matrix Algebra, Systems of linear equations, Eigen values and eigen vectors.
Calculus:
Mean value theorems, Theorems of integral calculus, Evaluation of definite and improper integrals, Partial Derivatives, Maxima and minima, Multiple integrals, Fourier series. Vector identities, Directional derivatives, Line, Surface and Volume integrals, Stokes, Gauss and Green's theorems.
Differential equations:
First order equation (linear and nonlinear), Higher order linear differential equations with constant coefficients, Method of variation of parameters, Cauchy's and Euler's equations, Initial and boundary value problems, Partial Differential Equations and variable separable method.
Complex variables:
Analytic functions, Cauchy's integral theorem and integral formula, Taylor's and Laurent' series, Residue theorem, solution integrals.
Probability and Statistics:
Sampling theorems, Conditional probability, Mean, median, mode and standard deviation, Random variables, Discrete and continuous distributions, Poisson, Normal and Binomial distribution, Correlation and regression analysis.
Numerical Methods:
Solutions of non-linear algebraic equations, single and multi-step methods for differential equations.
Transform Theory:
Fourier transform, Laplace transform, Z-transform.
Electrical Engineering
Electric Circuits and Fields:
Network graph, KCL, KVL, node and mesh analysis, transient response of dc and ac networks; sinusoidal steady-state analysis, resonance, basic filter concepts; ideal current and voltage sources, Thevenin's, Norton's and Superposition and Maximum Power Transfer theorems, two-port networks, three phase circuits; Gauss Theorem, electric field and potential due to point, line, plane and spherical charge distributions; Ampere's and Biot-Savart's laws; inductance; dielectrics; capacitance.
Signals and Systems:
Representation of continuous and discrete-time signals; shifting and scaling operations; linear, time-invariant and causal systems; Fourier series representation of continuous periodic signals; sampling theorem; Fourier, Laplace and Z transforms.
Electrical Machines:
Single phase transformer - equivalent circuit, phasor diagram, tests, regulation and efficiency; three phase transformers - connections, parallel operation; auto-transformer; energy conversion principles; DC machines - types, windings, generator characteristics, armature reaction and commutation, starting and speed control of motors; three phase induction motors - principles, types, performance characteristics, starting and speed control; single phase induction motors; synchronous machines - performance, regulation and parallel operation of generators, motor starting, characteristics and applications; servo and stepper motors.
Power Systems:
Basic power generation concepts; transmission line models and performance; cable performance, insulation; corona and radio interference; distribution systems; per-unit quantities; bus impedance and admittance matrices; load flow; voltage control; power factor correction; economic operation; symmetrical components; fault analysis; principles of over-current, differential and distance protection; solid state relays and digital protection; circuit breakers; system stability concepts, swing curves and equal area criterion; HVDC transmission and FACTS concepts.
Control Systems:
Principles of feedback; transfer function; block diagrams; steady-state errors; Routh and Niquist techniques; Bode plots; root loci; lag, lead and lead-lag compensation; state space model; state transition matrix, controllability and observability.
Electrical and Electronic Measurements:
Bridges and potentiometers; PMMC, moving iron, dynamometer and induction type instruments; measurement of voltage, current, power, energy and power factor; instrument transformers; digital voltmeters and multimeters; phase, time and frequency measurement; Q-meters; oscilloscopes; potentiometric recorders; error analysis.
Analog and Digital Electronics:
Characteristics of diodes, BJT, FET; amplifiers - biasing, equivalent circuit and frequency response; oscillators and feedback amplifiers; operational amplifiers - characteristics and applications; simple active filters; VCOs and timers; combinational and sequential logic circuits; multiplexer; Schmitt trigger; multi-vibrators; sample and hold circuits; A/D and D/A converters; 8-bit microprocessor basics, architecture, programming and interfacing.
Power Electronics and Drives:
Semiconductor power diodes, transistors, thyristors, triacs, GTOs, MOSFETs and IGBTs - static characteristics and principles of operation; triggering circuits; phase control rectifiers; bridge converters - fully controlled and half controlled; principles of choppers and inverters; basis concepts of adjustable speed dc and ac drives.



.....for more information go to


 

GRE INFO


About the GRE® revised General Test

One Test for Graduate and Business School. More Opportunities for Success.

Getting an advanced degree can create many opportunities. The GRE® revised General Test — the most widely accepted graduate admissions test worldwide — can bring you one step closer to achieving your career goals. And there has never been a better time to take the one test that gives you more opportunities for your future.
In August 2011, the GRE revised General Test replaced the GRE® General Test. Featuring the new test-taker friendly design and new questions, the revised test more closely reflects the kind of thinking you'll do in graduate or business school and demonstrates that you are ready for graduate-level work.
  • Verbal Reasoning — Measures your ability to analyze and evaluate written material and synthesize information obtained from it, analyze relationships among component parts of sentences and recognize relationships among words and concepts.
  • Quantitative Reasoning — Measures problem-solving ability, focusing on basic concepts of arithmetic, algebra, geometry and data analysis.
  • Analytical Writing — Measures critical thinking and analytical writing skills, specifically your ability to articulate and support complex ideas clearly and effectively.

Who Takes It?

Each year, about 675,000 prospective graduate and business school applicants from 230 countries/regions take the test. Applicants come from varying educational and cultural backgrounds and the GRE revised General Test provides a common measure for comparing candidates' qualifications.
GRE scores are used by admissions or fellowship panels to supplement your undergraduate records, recommendation letters and other qualifications for graduate-level study.

When and Where Do People Take It?

The GRE revised General Test is available at about 700 test centers in more than 160 countries. In most regions of the world, the computer-based test is available on a continuous basis throughout the year. In Mainland China, Hong Kong, Taiwan and Korea, the computer-based test is available one to two times per month. In areas of the world where computer-based testing is not available, the test is administered in a paper-based format up to three times a year in October, November and February.

For more info click

http://www.ets.org/s/gre/pdf/gre_info_reg_bulletin.pdf
http://www.ets.org/gre/revised_general/about
http://www.ets.org/s/gre/pdf/gre_aidi_fellowships.pdf
http://www.ets.org/gre/revised_general/about/mba/programs/
 

TOEFL INFO


About the TOEFL iBT® Test

The TOEFL iBT® test, administered via the Internet, is an important part of your journey to study in an English-speaking country. In addition to the test, the ETS TOEFL Program provides tools and guides to help you prepare for the test and improve your English-language skills.

What Is the TOEFL iBT Test?

The TOEFL iBT test measures your ability to use and understand English at the university level. And it evaluates how well you combine your listening, reading, speaking and writing skills to perform academic tasks.
There are two formats for the TOEFL test. The format you take depends on the location of your test center. Most test takers take the TOEFL iBT test. Test centers that do not have Internet access offer the Paper-based Test (PBT).

Who Takes the TOEFL iBT Test?

Each year, nearly a million individuals of all ages take the TOEFL test to demonstrate their English-language proficiency. More than 25 million people from all over the world have taken the TOEFL test since it was first offered. The average English skill level ranges between Intermediate and Advanced.
  • Students planning to study at a higher education institution
  • English-language learning program admissions and exit
  • Scholarship and certification candidates
  • English-language learners who want to track their progress
  • Students and workers applying for visas

Who Accepts TOEFL iBT Test Scores?

More than 8,000 colleges, agencies and other institutions in over 130 countries accept TOEFL scores. Other organizations rely on TOEFL scores as well:
  • Immigration departments use them to issue residential and work visas
  • Medical and licensing agencies use them for professional certification purposes
  • Individuals use them to measure their progress in learning English
To learn more about how the TOEFL test can be your passport to study anywhere English is spoken, watch our video, The TOEFL® Test: Your Passport to the World (Flash).

Where and When Can I Take the TOEFL iBT Test?

The TOEFL test has more test dates (30–40) and locations (4,500 test centers in 165 countries) than any other English-language test in the world. You can retake the test as many times as you wish.
Watch a short video (Flash) to see what happens at one of our TOEFL iBT test centers on test day.

What Resources Can Help Me Prepare for the TOEFL iBT Test?

ETS offers a variety of paid and free preparation materials to help you get ready for the TOEFL test. Watch our new video, TOEFL® Resources: An Overview for Students (Flash) to learn about the tools from ETS that can help you prepare for the TOEFL test.

What Does the TOEFL iBT Test Cost?

The cost of the test can range from US$160 to US$250 and varies between countries. For information on registration, fees, test dates, locations and formats, select your test location.

For more info click
 

HAPPY B'DAY 2 U FRIEND


 
hope the people of eee always been raising
all the best for the semister exams
 

GOOD BYE' APRON