Friday 31 January 2014

Cops begin probe over forged UGC letter received by BHU , Ph 078-380-239-56

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Varanasi: A probe has been started into a forged letter received by the Banaras Hindu University (BHU) purportedly sent by the University Grants Commission (UGC).


Based on the University's complaint on Friday, the police has started a probe into the forged letter which was allegedly sent through a registered post from a post office in Assi locality here, Lanka police station in-charge Abhay Singh said today.

The University had to remove certain information allegedly uploaded on its website, based on the forged letter of the UGC.

"As soon as we came to know about this forged letter of the UGC, the information uploaded on our official website was immediately removed," Chairman of BHU's Press Publication and Publicity Cell Ravi Pratap Singh said.

The letter had stated that UGC would be keen to give promotion to those employees who have been working for a long time in the University and also mentioned about making some new appointment, Ravi said, adding that the complete content of the letter was not known to him.

The University had wrongly uploaded the information based on the forged letter on its website, in response to which many people applied for promotions and appointments, he said, following which the varsity contacted the UGC.

In its reply to the University, the UGC said that "no such letter sent by them to BHU", and there is no such criteria on the basis of which UGC gives promotion, Ravi said.=

He clarified that no recruitment, selection, appointment or promotion had been made on the basis of this letter in the recent time. Every selection or promotion in BHU has been made on the basis of guidelines drawn by UGC.



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Thursday 30 January 2014

More changes in UGC-NET proposed , Ph 078-380-239-56

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The National Eligibility Test (NET) will be restructured and the aspirants’ capabilities will be tested in a different format from next year. An exercise to elicit opinions of teachers and students across the country is currently on.
Conducted by the University Grants Commission (UGC), the NET has seen changes from June 2012 when the entire exam was made objective type. All the three papers are now conducted in the objective type mode unlike previously when the third paper was subjective.
“However, even the present format may see some changes after we complete the exercise of taking the views of teachers and students across the country,” said UGC member D.N. Reddy.
He is a part of the two-member UGC Committee constituted to review NET in its entirety while the other being Yogendra Yadav from Centre for the Study of Developing Societies.
Prof. Reddy reminds that since NET has gained importance with its qualification made mandatory for recruitment of teaching posts in the country, there is a need to bring in dynamic changes. Even the Balachandra Mungekar Committee in its report in 2005 had suggested making NET more dynamic by restructuring the papers.
Prof. Reddy explains that some academics felt that the four-and-a-half hours exam time was too taxing. There are also questions as to why two papers (second and third) are conducted for the candidates’ chosen subject. Plus, there is also this argument that the subject knowledge could be tested in a single paper.
Demand for outsourcing the conduct of exam on the lines of GRE and CAT too has been raised. “All such issues would be discussed at the regional level meetings being conducted across the country,” he said.
“The two-member committee has co-opted 10 other professors to elicit views of stakeholders. One such meeting would be held at the Osmania University on August 17. The report is likely to be submitted in two months and the recommendations would be implemented from June 2014 exam,” Prof. Reddy said.
Till December 2011, candidates had to take three papers of which two were objective type with the third paper being descriptive. With lakhs of candidates appearing every year, the descriptive paper had become an impediment in early declaration of results.
To expedite the results, even the third paper was made objective from June 2012.
R. Ravikanth Reddy



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Monday 27 January 2014

UGC NET Electronic Science Syllabus , Ph 078-380-239-56

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UGC NET Electronics Paper II and III ( Part A & B ) :
Unit – I :
Electronic Transport in semiconductor, PN Junction, Diode equation and diode equivalent circuit. Breakdown in diodes, Zener diodes, Tunnel diode, Semiconductor diodes, characteristics and equivalent circuits of BJT, JFET, MOSFET, IC fabrication-crystal growth, epitaxy, oxidation, lithography, doping, etching, isolation methods, metalization, bonding, Thin film active and passive devices.
Unit-II :
Superposition, Thevenin, Norton and Maximum Power Transfer Theorems, Network elements, Network graphs, Nodal and Mesh analysis, Zero and Poles, Bode Plots, Laplace, Fourier and Z – transforms. Time and frequency domain responses. Image impedance and passive filters. Two – port Network Parameters. Transfer functions, Signal representation. State variable method of circuit analysis, AC circuit analysis, Transient analysis.
Unit – III :
Rectifiers, Voltage regulated ICs and regulated power supply, Biasing of Bipolar junction transistors and JFET. Single stage amplifiers, Multistage amplifiers, Feedback in amplifiers, oscillators, function generators, multivibrators, Operational Amplifiers ( OP AMP ) – characteristics and Applications, Computational Applications, Integrator, Differentiator, Wave shaping circuits, F to V and V to F converters. Active filters, Schmitt trigger, Phase locked loop.
Unit – IV :
Logic families, flip – flops, Gates, Boolean algebra and minimization techniques, Multivibrators and clock circuits, Counters-Ring, Ripple. Synchronous, Asynchronous, Up and down shift registers, multiplexers and demultiplexers, Arithmetic circuits, Memories, A/D and D/A converters.
Unit – V :
Architecture of 8085 and 8086 Microprocessors, Addressing modes, 8085 instruction set, 8085 interrupts, Programming, Memory and I/O interfacing, Interfacing 8155, 8255, 8279, 8253, 8257, 8259, 8251 with 8085 Microprocessors, Serial communication protocols, Introduction of Microcontrollers ( 8 bi t) – 8031 / 8051 and 8048.
Unit – VI :
Introduction of High – level Programming Language, Introduction of data in C. Operators and its precedence, Various data types in C, Storage classes in C, Decision-making and forming loop in program, Handling character, Arrays in C, Structure and union, User defined function, Pointers in C, Advanced pointer. Pointer to structures, pointer to functions, Dynamic data structure, file handling in C, Command line argument, Graphics-video modes, video adapters, Drawing various objects on screen, Interfacing to external hardware via serial/parallel port using C, Applying C to electronic circuit problems. Introduction to object-oriented Programming and C++.
Introduction of FORTRAN language, programming discipline, statements to write a program, intrinsic functions, integer-type data, type statement, IF statement, Data validation, Format-directed input and output. Subscripted variables and DO loops. Array, Fortran Subprogram.
Unit – VII :
Maxwell’s equations, Time varying fields, Wave equation and its solution, Rectangular waveguide, Propagation of wave in ionosphere, Poynting vector, Antenna parameters, Half-wave antenna, Transmission lines, Characteristic of Impedance matching, Smith chart, Microwave components-T, Magic – T, Tuner. Circulator isolator, Direction couplers, Sources-Reflex Klystron, Principle of operation of Magnetron, Solid State Microwave devices; Basic Theory of Gunn, GaAs FET, Crystal Defector and PIN diode for detection of microwaves.
Unit – VIII :
Basic principles of amplitude, frequency and phase modulation, Demodulation, Intermediate frequency and principle of superheterodyne receiver, Spectral analysis and signal transmission through linear systems, Random signals and noise, Noise temperature and noise figure. Basic concepts of information theory, Digital modulation and Demodulation; PM, PCM, ASK, FSK, PSK, Time-division Multiplexing, Frequency-Division Multiplexing, Data Communications-Circuits, Codes and Modems. Basic concepts of signal processing and digital filters.
Unit – IX ( a ) :
Characteristics of solid state power devices – SCR, Triac, UJT, Triggering circuits, converters, choppers, inverters, converters. AC-regulators, speed control of a.c. and d.c. motors.
Stepper and synchronous motors; Three phase controlled rectifier; Switch mode power supply; Uninterrupted power supply.
Unit – IX ( b ) :
Optical sources – LED, Spontaneous emission, Stimulated emission, Semiconductor Diode LASER, Photodeteetors – p – n photodiode. PIN photodiode, Phototransistors, Optocouplers, Solar cells, Display devices, Optical Fibres-Light propagation in fibre, Types of fibre, Characteristic parameters, Modes, Fibre splicing, Fibre optic communication system-coupling to and from the fibre, Modulation, Multiplexing and coding, Repeaters, Bandwidth and Rise time budgets.
Unit – X ( a ) :
Transduces – Resistance, Inductance Capacitance, Peizoelectric, Thermoelectric, Hall effect, Photoelectric, Techogenerators, Measurement of displacement, velocity, acceleration, force, torque, strain, speed and sound temperature, pressure, flow, humidity, thickness, pH, position.
Measuring Equipment-Measurement of R, L and C, Bridge and Potentiometers, voltage, current, power, energy, frequency / time, phase, DVMs, DMMs, CRO, Digital storage oscilloscope, Logic probes, Logic State Analyser, Spectrum Analyzer, Recorder, Noise and Interference in instrumentation, Instrumentation amplifiers, Radio Telemetry.
Analytical Instruments – Biomedical instruments – ECG, blood pressure measurements, spectrophotometers, Electron Microscope, X-ray diffractometer.
Unit – X ( b ) :
Open – loop and close-loop control system. Error amplifier, on – off controller, Proportional ( P ), Proportional-Integral ( PI ), Proportional – Derivative ( PD ), PID controllers, Dynamic Behaviour of control systems-servomechanism characteristics parameters of control systems-Accuracy, Sensitivity, Disturbances, Transient response, Stability, Rputh-Hurwitz criterion, Bode plots, Nyquist criterion, Controlling speed. Temperature and position using analog  / digital control circuits.





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