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S.N0 . Course Number Title of course Course Objective Course Out comes PEOs POs 1 51001 English 1. Train and develop communication skills with LSRW skills which is a must in competitive world. 2. To transform into a dynamic personality with confidence. 3. To emphasize the importance of language in academic and employability. 4. To empower the communicative skills which enhances the employability skills with self- confidence. 5. Strategy to enhance the soft skills . 1. Develop their LSRW skills. 2. Overcome their Mother tongue influence. 3. Express/interpret their views without hesitation. 4. Lose their stage fear and develop self-confidence. 5. Able to reach corporate expectations. 3&4 d,f &g 2 51002 Mathema tics-I 1. The course intends to provide an Understand the concepts of modeling or 2 a&e

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Page 1: tkrcet.ac.intkrcet.ac.in/.../2014/03/COURSE-OBJECTIVES-AND-OUTCOMES.docx · Web viewAble to understand how laser light being produced in different laser systems and their applications

S.N0.Course Number

Title of course Course Objective Course Out comes

PEOs POs

1 51001 English

1. Train and develop communication skills with LSRW skills which is a must in competitive world.2. To transform into a dynamic personality with confidence.3. To emphasize the importance of language in academic and employability.4. To empower the communicative skills which enhances the employability skills with self-confidence.5. Strategy to enhance the soft skills .

1. Develop their LSRW skills.2. Overcome their Mother tongue influence.3. Express/interpret their views without hesitation.4. Lose their stage fear and develop self-confidence.5. Able to reach corporate expectations.

3&4 d,f&g

2 51002 Mathematics-I

1. The course intends to provide an overview of infinite series which occur in problems of signal transmission, chemical diffusion, vibration and heat flow etc.2. This course helps in translating a physical or other problem in to a mathematical model.

3. To provide an overview of discovering the experimental aspect of modern applied

Understand the concepts of modeling or translating a physical or any other problem in to a mathematical model. 2. Able to apply this knowledge to solve the problems.3. An ability to identify, formulates, and solves the problems.

4. Ability to know and to understand various types of series and sequences.5. Ability to know the nature of series and sequences.6. Consequently mathematics-1 place a vital

2 a&e

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mathematics4. This course creates the ability to model, solve and interpret , any physical or engineering problem.

role in many areas in engineering for example signal transmission chemical diffusion vibration , heat flow ,solid mechanics ,fluid flow ,electro statics.7. Ability to solve the model by selecting and applying a suitable mathematical method. 8. Ability to interpreting the mathematical results in physical or other terms to see what it practically means and implies. 9. The knowledge of curvature is useful for all branches of engineering in design of chips , bending of beams , curvature of railway tracks.10.mathematics-1 enhance the conceptual understanding of the learners and improves the application capability in their respective branches of engineering and technology. Inculcate the habit of mathematical thinking.

3 51008 Mathematical Methods

1. The course intends to provide an overview of Matrices which occur in physical and engineering problems.2. This course helps in translating a physical or other problem in to a mathematical model.

3. To provide an

1. Understand the concepts of modeling or translating a physical or any other problem in to a mathematical model. 2. Able to apply this knowledge to solve the problems.3. An ability to identify, formulates, and solves the problems.

4. Ability to know and to understand various types of

2 a&e

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overview of discovering the experimental aspect of modern applied mathematics4. This course creates the ability to model, solve and interpret any physical or engineering problem.

Numerical methods5. Ability to solve Fourier series6. Consequently numerical methods place a vital role in many areas in engineering for example Dynamics, elasticity, heat transfer, electromagnetic theory and quantum mechanics.7. Ability to solve the model by selecting and applying a suitable mathematical method. 8. Ability to interpreting the mathematical results in physical or other terms to see what it practically means and implies. 9. The knowledge of interpolation is useful in predicting future out comes base on the present knowledge.10. Inculcate the habit of mathematical thinking.

4 51004 Engineering Physics

1. The course intends to provide an overview of the working principles, and applications of the communication building blocks like lasers, fiber optics and semiconductor devices etc for performing their functions.2. This course relies on elementary treatment and qualitative analysis and makes use of simple models and equation to illustrate the

1. Understand the operating principles of solid state devices like semiconductor devices and connection to the physical operation of the devices.2. Understand the behavior of solids in their mechanical, electrical, magnetic, optical properties and imperfections in crystals3. Able to understand the formation of energy bands and restrictions imposed on electron motion in crystals.4. An ability to understand the debacle of classical physics and the new laws applicable in the

1,2&4

a

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concepts involved.3. To provide an overview of quantum, statistical mechanics and solid state physics.4. To gain the knowledge on existing future upcoming devices.

microscopic world.5. Able to understand the mechanism of conduction in pure as well as extrinsic semiconductors to learn the functioning of solid state devices6. Able to understand electrical behavior of basic components of semiconductor devices like P-N junction diode, LED, LCD etc.7. Able to understand magnetic fields in different magnetic materials, their properties and applications.8. Able to understand how laser light being produced in different laser systems and their applications in different fields.9. Able to know the basic concepts of optical fibers, their categories and applications.10. Knowledge on the main causes for a defective quality of sound in the hall, their remedies and design of good auditorium.11. Able to understand the production, properties and applications of nano-materials in nanotechnology

5 51005Engineering chemistry

1. Acquire the knowledge on the working principles, mechanism of reactions and applications of the building blocks like batteries, fuel cells, polymers and nano materials etc.

1. Understand the operating principles and the reaction mechanisms of batteries and fuel cells.2. Able to apply this knowledge to the analysis and design of batteries.3. An ability to design and conduct experiments, as well as to organize, analyze,

1,2&4 a

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2. This course relies on elementary treatment and qualitative analysis and makes use of simple models and equation to illustrate the concepts involved.3. To provide an overview of surface coatings inorder to protect the metal , reverse osmosis and surface To gain the knowledge on existing future upcoming devices, materials and methodology.chemistry.

4. To gain the knowledge on existing future upcoming devices, materials and methodology.

and interpret data. 4. An ability to identify and formulate polymers.5. Ability to know and to understand the various process of removing the hardness of water.6. Have a knowledge of various polymers like polyethylene, PVC, PS, Teflon, Bakelite, Nylon which have engineering applications.7. Have knowledge of preparing Nano materials and their applications in industry.8. Know the properties of Lubricants.9. Have a scope in the area of Material chemistry.10. Have a knowledge on preparation of semi-conductors

 6 51006 Computer Programming & Data Structures

1.  This course is designed to provide a comprehensive study of the C programming language. It stress the strengths of C, which provide students with the means of writing efficient, maintainable, and portable code.

2. The nature of C language is

1. Understand  the basic terminology used in computer programming

2. Write, compile and debug programs in C language.

3. Use different data types in a computer program.

4. Design programs involving decision structures, loops and functions.

5. Explain the difference between call by value and call by reference

6. Understand the dynamics of memory by the use of

2 & 4 e & k

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emphasized in the wide variety of examples and applications.

3. To learn and acquire art of computer programming

4. To know about some popular programming languages and how to choose

Programming language for solving a problem

pointers. 7. Use different data

structures and create/update basic data files.

 7 51007 Engineering Drawing

1.  The student will be able to understand importance of dimensioning in large scale drawings used as design initiation in manufacturing.

2. The student will be able to understand the significance of different kinds of pencils used for drawing different types of lines.

3. The subject will ensure the student to learn basics of darwing like conics, scales etc

4. The graduate will be able to understand the topics like first

1.  Learn the importance of types of pencils used in engineering drawing

2. Understand significance of dimensioning and scaling in engineering drawing.

3. Learn basics of lettering, conics and scales.

4. Learn projection of points, lines and solids.

5. Learn difference between first and third angle projections.

6. Will analyze development of surfaces.

7. Draw projections of solids which are sectioned or intersected with another solid.

8. Understand the importance of AUTO-CAD software in present day industry.

9. Learn basics Features of AUTO-CAD software.

10. How different kinds of

2 c& e

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angle and third angle projections.

5. The graduate will be introduced to topics like Isometric projections, orthographic projections of points, lines and solids.

6. The graduate will also be introduced to topics like development of surfaces, perspective views etc.

drawings like screws, nuts and bolts are helpful for industry.

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II-Year/I-Semester

8 53007 Mathematics-III

1. The course intends to provide an overview of differential equations which occur in physical and engineering problems.2. This course relies on the series solution of certain special types of differential equations like Bessel’s differential equations ,Legendre differential equations and Chebeshev differential equations,and also on study of complex variables.3. To provide an overview of functions of complex variables which helps in solving many complex problems in heat conduction, fluid dynamics and electrostatics.

1. Understand the concepts of series solution, special functions and complex variables.2. Able to apply this knowledge to solve the problems.3. An ability to identify, formulates, and solves the problems.4. Ability to know and to understand various types of special functions.5. Ability to solve potential functions, stream functions and velocity potential. 6. Consequently functions of complex variables place a vital role in many areas in engineering for example the motion of fluids, the transfer of heat, the processing of signals, electromagnetic and electrostatic field theory.7. Ability to classify and solve the contour integration of complex functions. 8. Ability to know the complex variable techniques and knowledge of mapping and transforms play a major role in several areas of Engineering.9. The knowledge of Graph theory is used in developing the theory of trees to solve applications in electrical networks.10. Inculcate the habit of mathematical thinking and the students t are able to apply the subject where ever necessary.

2 a&e

9 53008 Fluid Mechanics

1. Establish fundamental

1. Use vectors, linear algebra, differential and

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and Hydraulic Machinery

knowledge of basic fluid mechanics and address and specific topics relevant to simple applications involving fluids.2. To familiarize students with the relevance of fluid dynamics to many engineering systems.3. To perform basic calculations for analysis of simple systems involving fluid motion.4. To be aware and appreciative of the importance of fluid processes in the well being of the society; gain experience working in groups; be able to compose clear and effective engineering reports.

integral calculus; principles of statics and dynamics and analytical formulation.2. Recognize how fluid flow theory can be employed in a modern electrical engineering design environment.3. Apply the fundamental fluid mechanics principles in the design of hydraulic turbines and pumps.4. Select the pumps, turbines and hydraulic machinery according to the practical situation.5. Apply basic knowledge on various fluid properties and problems related to fluid mechanics.6. Apply the concepts and application of the continuity, energy and momentum equations and flow measurements in fluid mechanics.7. Able to apply different laws like Newton’s Law, Bernoulli’s law and Euler’s Law to analyze the problems on various pipe sections.8. Conduct experiment on submarines, aeroplanes and wind tunnel, calculate the forces, solve problems and tackle the situation.9. Calculate the discharge, time required to empty a reservoir with different types of notches or weirs at the water project site.10. Compute the magnitude of total pressure and to locate its point of

1 a , b & c

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application in the design of several hydraulic structures.

10 53009 Electronic Devices and Circuits

1. The course intends to provide an overview of the principles, operation and application of the analog building blocks like diodes, BJT, FET etc for performing various functions.2. This course relies on elementary treatment and qualitative analysis and makes use of simple models and equation to illustrate the concepts involved.3. To provide an overview of amplifiers, feedback amplifiers and oscillators.4. To gain the knowledge on existing on future analog circuits.

1. Understand the operating principles of major electronic devices, circuit models and connection to the physical operation of the devices.2. Able to apply this knowledge to the analysis and design of basic circuits.

3. An ability to design and conduct experiments, as well as to organize, analyzes, and interprets data.

4. An ability to identify, formulates, and solves hardware engineering problems.

5. The following are the major outcomes in the part of electronic devices and circuits.

6. Ability to know and to understand the categories in the field of solid state materials and get to know about the importance of semiconductors.

7. Ability to know the property of semiconductor materials by projecting the view of energy bands and analyzing the characteristics of semiconductor components like diode.8. Ability to know the complete internal structure of PN junction and types of bias.

1 a, b, & c

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9. Consequently view the nature of electronics compromising 4 C’s components, communication, computation and control.10. Ability to apply diode in power supply circuits by rectifiers, filters and by regulation using zener diode.11. Ability to know the theory of bipolar transistor by this, operation, biasing effects and stabilization of factors, the hybrid models to know how to block the large capacitive values and to know about how small signal models are needed in various configurations to determine frequency response and phase operations of voltage gain and application of configurations in hardware implementations. 12. Ability to know the theory of channel effect transistors, by analyzing then to introduce the concept of MOS transistor and to know the operation of MOS transistor. And get to apply the concept of charge inversion on MOSFET.13. Ability to gain the idea of MOSFET later to know the structure CMOS by considering the factors in application of determining digital circuits.14. Further to know the knowledge in the field of solid or integrated circuit

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technology and its trends.15. Ability to implement designs of digital electronic devices

11 53010 Electrical Circuits

1 To understand the basic concepts of circuit analysis . 2 To understand Single Phase A.C Circuits3 To understand Resonance concept 4 To understand magnetic circuits5 Circuit theorems.6 Net works topology.

1. Students will be able to explain basic circuit concepts and responses.2. Will be able to do linear modeling of passive elements and sources, and explain the conversion of three phase circuits.3. Will be able to use analytical techniques in resistive circuits energized by direct current voltage and current sources applied in theorems .4. Student will understand the concept of network topology.5. Student will understand the concept of resonance.6. Acquire skills in using electrical designing of circuits.7. Acknowledge the principles of operation and the main features of electric machines and their applications. 8. Be able to systematically obtain the equations that characterize the performance of an electric circuit as well as solving both single phase and three-phase circuits in sinusoidal steady state.9. Interpreted the simulation results.10. Will be able to evaluate lecture material with circuit simulation software and laboratory bench experiments.

1 & 2

a, b, e , j & i

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12 53011 Electromagnetic fields

1. Understand the concepts of electric field 2. Understand the concepts of magnetic field 3. Develop the theory for power transmission lines4. Develop the theory for electrical machines 5. Know the concept of the time varying fields6. Learning Maxwell’s equations7. Application of Gauss’s law8. Application of Ampere’s circuital law

1. Electric fields, coulomb’s law, EFI due to varies charges, properties of electric potential function, application of Gauss’s law, Laplace’s and poission’s equations.2. Potential and EFI due to an electric dipole, conductors and insulators and dielectrics, capacitance, conduction and convection current densities.3. Biot-savart’s law, MFI due to varies charges, point of ampere’s circuital law and applications, Maxwell’s equations, Lorentz force equation.4. Scalar and vector magnetic potential and its applications, self and mutual inductance and Neumann’s formulae.5. Time varying fields, faraday’s laws of electromagnetic induction, pointing theorem.6. Students will able to understand the concepts of electic and magnetic fields, conductors, inductors, dielectrics, dipoles in varies applications.7. Students will able to explain the applications of electric and magnetic fields in varies industrial areas.8. Students will able to understand the fundamentals of field theory in transmission lines and electrical machines.9. Student will understand the fundamentals of time varying fields which are in

1 &2

a , e, j & i

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the industrial areas.10. Students will able to explain the applications of varies laws in the operation of varies machines.

13 53012 Electrical Machines-I

1. Provide the students a detailed knowledge regarding energy conversion processes( Mechanical Energy into Electrical Energy and vice versa) and Energy Balance Equation2. Provide the students a detailed knowledge regarding electrical DC machines.3. Strengthening knowledge of students regarding the construction and working principle of DC machines which will help them in design field.4. Teach the students to calculate different parameters of different DC machines and also to follow numerous paths to get improvised result.

1. Learn the Electromagnetic energy conversion principles. 2. Learn the detailed features of dc machines including construction and operation.3. Distinguish different dc machines according to their principle of operations.4. Know the EMF equations, torque equations, characteristics, starting methods of different electrical DC machines.5. Learn the behavior and response of different dc machines under different load conditions.6. Learn to calculate losses, efficiency, voltage regulation and other parameters of different machines.7. Know different operating conditions where one type of machine is replaced by other to get higher efficiency.8. Get a glimpse of industrial scenario by correlating bookish knowledge to industrial concepts.9. Know the importance of modern speed control methods of dc drives.10. Students will excel themselves to face competitive examinations of

1 & 2

a

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engineering.

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I-Year/II-Semester

14 54007

Managerial Economic and Financial Analysis

1. Describe The Nature And Scope of Managerial Economics.2. It gives complete study on the demand and elasticity of demand and methods of demand forecasting.3. It gives detailed structure on the pricing strategies4. It shows clear picture methods and sources of raising finance.5. It gives a clear cut information of preparing final accounts

1. Learn basic concepts of economics.2. Learn about demand analysis.3. Learn about production theory.4. Students learn about market structures and different pricing methods.5. Students learn about different types of business and their evolution.6. Students learn about capital budgeting appraisal methods.7. Graduates learn about financial accounts.8. Students learn about different types of financial ratios.

3,4 A,b

15 54008 Power System-I

1. Electrical Power plays significant role in day to day life of entire mankind. 2. This course concerns the generation and distribution of power along with the economic aspects.3. The student will consider and analyze the various operating characteristics of different types of generation, transmission, and distribution equipment and systems.

1. Describe the methods of generating electrical power.2. Explain the types of electrical power distribution systems and their characteristics. 3. Use appropriate mathematical methods to design and analyse distributed generation systems.4. Explain the significance of power factor and suggest methods for its improvement.5. Know about Tariff i.e. the rate at which electrical energy is sold naturally becomes attention inviting for electric supply company.6. Know about several factors which influence the production cost such as cost of land and equipment,

1& 2 a, b &c

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depreciation of equipment interest on capital investment etc.7. Provide an overview of various technologies of power generation.8. Explain the different components of a typical power system.9. Explain the use of different voltage levels in transmission of electrical power.10. Student can able to categorize power lines by voltage and explain the applications

16 54009 Electronic Circuits

Understand all semiconductor devices their working operations, characteristics and their applications also this subject introduce about wave shaping concepts of both linear and non-linear circuits. Here we can study about the switching characteristics of diodes and also designing of multivibrators.

1. To provide an overview of single stage amplifiers and frequency response for BJT and FET amplifiers.2. To provide an overview of amplifiers, feedback amplifiers and oscillators.3. Determining the voltage and transfer characteristics of clipper and clamper circuits and also learn about comparators. 4. Determine the switching characteristics of diode.5. Designing of multivibrators and analyzing their output waveforms.6. Able to apply this knowledge to the analysis and design of basic circuits.

1 & 2

a, b & c

17 54010 Switching Theory and Logic Design

1. To introduce the concepts and techniques

associated with the number systems and

codes. 2. To minimize the

1. Determine the philosophy of number systems and codes.2. Simplify the logic expressions using Boolean laws and postulates and design them by using logic

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logical expressions using Boolean

postulates. To design various

combinational and sequential circuits. 3. To provide with an appreciation of applications for the

techniques and mathematics used in

this course.

gates. 3. Minimize the logic expressions using map method and tabular method.4. Design of combinational logic circuits using conventional gates.5. Design of combinational logic using various PLD’s and synthesizing of threshold functions.6. Design of sequential logic circuits.7. Design the FSM for completely specified and incompletely specified sequential machines.8. Design the ASM using data path and control subsystem.9. Design the shift registers.10. Design of FPGA and CPLD’s using logic gates.

1 & 2

a , b ,e , i & k

18 54011 Network theory

1. To general knowledge about 3-phase circuits2. Transient response of RL, RC,RLC circuits for DC and AC Excitations3. Analysis of the Network functions (using Transfer functions)4. Study of two-port networks5. To have the basic concept of filters6. Fourier analysis of AC circiuts

1. Will have knowledge on voltages, currents, active and reactive powers in 3-phase circuits.2. Able to find the response of RL, RC, RLC circiuts3. Can find the Time domain response from pole-zero plots.4. Able to find the Two port network parameters5. Can design filters. 6. Able to analyze AC circuits using Fourier Analysis7. Can solve complex engineering problems8. Able to draw the phasor diagrams9. Can able design the desired filters in the real time applications10. Can provide basic

1 & 2

a, e, i & k

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information regarding Stability etc.

19 54012Electrical Machines-II

1. As an extension of Electrical machines I course this subject facilitates to study of the performance of Transformers and Induction motors which are the major part of industrial drives and agricultural pump sets.2. This subject aims to educate students with basic laws governing the electrical machines. Analyze the behavior of the machines performance calculation of the machine; characteristics of the machine know the application of different electrical machines in industries.

1. To learn the construction, types of Transformers and induction machines, 3 – phase transformers, fractional horse power machines materials used.2. To learn the parallel operation of Transformers3. To learn the operation of transformers and Induction motors at different power factor.4. To learn regarding the rotor oscillation and its effect on the power system.5. To learn different connection of transformers and Three phase induction motor principle.6. To know about three phase to 6 phase conversion and 3 phase to 12 phase conversion.7. To know Different Tests of Transformers and Induction motors 8. Three winding transformer, three phase Induction motor and its equivalent circuits.9. Magnetic inrush current of transformer and harmonic reduction.10. Speed control methods of the Induction motor at industrial purposes.

1 & 3

a

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III-Year/I-Semester

20 55009IC Applications

1. To introduce the basic building blocks of linear, digital integrated circuits. 2. To teach the linear and non-linear applications of operational amplifiers. 3. To introduce the theory and applications of analog multipliers and PLL. 4. To teach the theory of ADC and DAC. 5. To investigate the static and dynamic characteristics of popular MOS and bipolar logic families, with emphasis on CMOS and TTL technologies.

1. Students can know the basics of the Integrated Circuits.2. They can analyze the Performance of an Integrated Circuits.3. They can know the classifications of Integrated Circuits.4. They can learn the various applications of the Integrated Circuits.5. They can know the importance of Operational Amplifier.6. They can get the knowledge of various Logic families.They can know the differences between Linear and Digital Integrated IC’s.

2 a, b & k

21 55010 Management Science

1. This subject deals with introduction of management, different theories, principles of management2. It gives the detailed study of all types of theories, organizational structures, control charts and strategic management3. This course is designed in such a way that it is useful to all branches to learn some

1. The functions of management, objectives, goals, mission, vision2. Organization and different types of organization.3. Plant layouts, plant location, productivity, and types4. Work study, work measurement, methods of work study5. Statistical control and different types of control charts.6. Inventory control, methods of inventory.7. Marketing functions,

3& 4 f & h

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techniques in recruitment, selection, training and placement.

product life cycle.8. Human resource management, man power planning.

22 55011 Power System-II

1. Understand the theory of transmission lines modeling2. Know the performance analysis of transmission lines3. Give emphasis on mechanical design of transmission line cables and insulators.

1. Get knowledge about the types of conductors used for transmission lines. To know the concepts like single and double circuit lines, GMD, GMR concepts.2. Calculate resistance, inductance and capacitance of transmission line conductors. 3. Performance of short, medium and long transmission lines. Get knowledge of power system transients.4. Concepts of skins, proximity effect, corona and Ferranti effect. Types of insulators and calculation of string efficiency.5. Sag and tension calculation. Underground cable basics, types of underground cables. Grading of cables.6. Know the Configurations of transmission line conductors for better results.7. Double circuit lines advantage over single circuit lines.8. Advantage of underground cable transmission over overhead line transmission. 9. Calculations of T- Network and ∏- Network parameters and their comparisons.10. Transmission line network design in MATLAB/Simulink,

1, 2&3

a & i

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PSCAD, PSIM.

23 55012 Control System

1. Applications of control systems in everyday life. 2. The basic concepts of block diagram reduction, time domain analysis solutions to time invariant systems and also deals with the different aspects of stability analysis of systems in frequency domain and time domain.3. To study the three ways of designing compensation for a control system.4. Educate the students about types of system and how to control them..5. Can check the system to be stable, unstable or marginally stable6. Enable the students to control any system & also interface with other system.7. Educate the students to develop & design a system which may be useful for industry and public life. 8. Get the idea of linear & non linear system.

1. Understand about linear and nonlinear system & also can develop a mathematical model of a system.2. Learn about block diagram reduction technique & Mason gain formula to find out overall gain of a system.3. Determine the response of different order systems for various step inputs 4. Analyse the stability of the system by using Routh array & root locus technique, Bode plot and Nyquist stability criterion.5. To investigate PD,PI & PID controller for the Industrial application..6. To know about servo mechanism that has a wide application in the field of Robotics.7. To learn about PLC for industrial switching & control.8. Mastering control systems design tools such as MATLAB and Simulink is one of the practical outcomes to mention.9. Understanding and ability to recognise and analyze feedback control mechanisms and design feedback control systems is the key learning outcome 10. Student will able to excel himself/herself as a design engineer in any industries/R&D sector, pursue his research on the design field or face any

2 a, b & i

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competitive examinations in engineering.

24 55013 Power Electronics

1. Educate the students about use of semiconductor devices in power sector, behavior of current and voltage in switching circuit, control of power, and regulation of voltage.2. To study the various applications of power electronics to practical industrial applications, home appliances, power supply and controlling the flow of power.

1. To choose semiconductor power devices for various uses according to its characteristics.2. Choose semiconductor devices basing on its switching time, switching losses, on-line losses for various application of different voltage, current and frequency.3. Know the use of thyristor, GTO, IGBT etc. power electronic devices in controlling and converting ac to dc.4. To learn the calculation of the control parameters of the devices basing on output of converter and to know about the behavior and quality of power.5. Know the different methods of DC –DC conversion and its use, also know how mathematically the output can be linked to input with current and voltage waves in various components.6. Use of PWM to control voltage regulation.7. Knowing principle of operation of various used equipments in industry and home.8. Familiar to use simulation software and interpret the simulation results for various electronic circuits.9. Student will able to design a system, component meet the requirement within realistic constraints such as

1, 2&3

a, c &i

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economic, environmental, social and safety manufacturability and sustainability.10. Student will able to excel himself/herself as a design engineer in any industries/R&D sector, pursue his research on the design field or face any competitive examinations in engineering.

25 55014 Electrical Machines –III

1. Provide the students a detailed knowledge regarding Electrical Machines. 2. Teach the students to calculate different parameters of different Machines and also to follow numerous paths to get improvised result. 3. Strengthening knowledge of students regarding the construction and working principle of Machines which will help them in design field.

1. Construction and Principle of operation Synchronous Machines2.Learn the detailed features of Synchronous Generator Characteristics 3.Distinguish Regulation of Synchronous Generator4.Explanation about Parallel Operation of Synchronous Generator5.Learn the Synchronous Motors – Principle of Operation6.Distinguish Power Circles, Single Phase Motors, Special Motors7.Know different operating conditions where one type of machine is replaced by other to get higher efficiency.8. Get a glimpse of industrial scenario by correlating bookish knowledge to industrial concepts.9.Know the importance of speed control methods of AC drives. 10. Students will excel themselves to face competitive examinations of

1, 2&3

a &i

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engineering.

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III-Year/II-Semester26 56009 Electrical

Measurements

1. Electrical measurements course introduces the basic

principles of all measuring

instruments. 2. It also deals with the measurement of

RLC parameters voltage, current

Power factor, power, energy and magnetic

measurements.

1. Exhibit knowledge of safety rules and demonstrate awareness of electrical hazards.2. Explain the scientific concepts of force, work, energy, power and efficiency. 3. Exhibit knowledge of electrical materials, their properties, and discuss the concepts of conductor, insulators and semiconductors, wire gauges and resistors.4. Explain the significance of fundamental electrical quantities: current, voltage, resistance and power, units of measurement and their use in formulas and equations.5. Demonstrate proficiency in the use of analog and digital multimeters to measure voltage, current, resistance and continuity.6. Exhibit knowledge of Ohm’s Law, formula usage and it’s applications to basic circuits.7. Describe the composition, properties and functions of series, parallel and combination circuits, and use appropriate formulas to determine voltage, current, resistance and power. 8. Demonstrate proficiency in reading, formulation and solving electrical problems by applying formulas, writing simple equations and expressing answers in acceptable format and units.

1 & 2

a & b

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9. Identify and utilize appropriate National Electrical Code tables to determine wire ampacities, correction factors and resistance.

27 56010 Power Semi conductor devices

1. This course is an extension of Power Electronics applications to AC and DC drives. 2. Control of DC motor drives with single phase and three phase converters and choppers are given in detail. 3. The control of AC motor drives with variable frequency converters and variable voltage are presented.

1. Be able to explain both verbally and in written form major semiconductor devices that can be used as switches, and their electrical characteristics which include basic idealised models as well as extension to some important non-ideal characteristics.2. Be able to explain the processes of efficient energy conversion through the use of power semiconductor switches.3. Be able to apply the concepts of switching power conversion to analyse a variety of circuits including:

i. DC to DC conversion ii. AC to DC conversion iii. DC to AC conversion4. Be able to present the results of study and experiments in the form of a technical report. 5. Be able to explain the characteristics and operation of power electronics devices.6. To expose the students to the conversion and utilization of large amount of electrical power using latest power semiconductor devices and modern control techniques. 7. To able ensure the

1& 2

a &i

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students develop an understanding of various drive systems. 8.Speed control of thyristorised control drives. 9. Microprocessor based control of drives.10. Hardware systems versus microprocessor control.

28 56011

Computer methods in power system

1.This course introduces formation of Z bus of a transmission line, power flow studies by various methods. 2. It also deals with short circuit analysis and analysis of power system for steady state and transient stability

1. Perform a wide-variety of per-unit conversions . 2. Ability to formulate and solve power flow problems. 3. Calculate symmetrical and unsymmetrical fault current4. Formulate the YBUS matrix for a small power grid by hand and Differentiate among PV, PQ, reference/swing/slack buses in power flow analysis5. Describe Automatic Generation Control and its use in power systems6. Describe methods of stability analysis.7. Write the second-order dynamic equation of a generator.8. Apply the equal area criterion to calculate the critical clearing time of a faulted network.9. Explain the dynamic principle of power systems and generators. 10. Ability to formulate and solve economic and environmental dispatch problems

1, 2&4

a & k

29 56012Microprocessors & Microcontr

1. To understand the basic concepts of Microprocessors.

1.  Students will be able to analyze the architectures of 8085

1, 2 & 3

b, c&k

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oller

2. Knowledge on instruction-set & implementing them for many applications

3. Knowledge on different Interfacing techniques of processor

4. Differentiation between Processors &Controller

5. Architecture ,Instruction –set & Interfacing of microcontrollerComparison with recent processors. 

&8086.2. Will be able to

know coding techniques on basic AL,Strings and interfacing of MP

3. Analyze the architecture of 8051 microcontroller

4. Student can differentiate MP with MC.

5. Will be able to know coding techniques on basic AL,Strings and interfacing of MC

6. Student will understand the concept of ARM .

Open Elective30 56013 Renewabl

e Energy Source

1. To stress scientific understanding, analysis and applications of non-conventional energy technologies.2. To analyze economical considerations to harness energy from renewable sources and serious efforts have been made to highlight the present state of technologies with a view to emphasize the importance of developing renewable energy sources as cost-effective power generation alternatives.

1. To comprehend the world energy situation, to understand the bad effects of the present concentration use of energy 2. To be understand the concept of biomass energy systems, To be able to understand and build biomass based systems. To be able to understand the various digester operations3. To compute the solar radiation on the earth’s surface 4. To be understand the concept of photovoltaic cells 5. To be understand the various types of wind turbines. To be able to model, analyze and design wind energy systems 6. To be able know recent advancement in energy sources.

1 a & i

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7. To get knowledge about renewable energy sources.8. To be able to know recent development in renewable energy sources. 9. To be able to understand the need for hybrid energy system. 10. To be able to build hybrid energy systems for a given application.

31 56015Environmental Studies

1. To provide information on the Natural resources2. Regarding ecosystems3. About biodiversity and biotic resources4. To give information on pollution and its control methods 5. Gives knowledge on the global environmental problems6. Assessment of environmental impacts on the living and non-living things 7. Various acts regarding for the control of various pollution8. Provide knowledge about sustainable future

1. Know about the natural resources2. know about basic concepts ecosystems3. Know about biodiversity and biotic resources4. Apply basic knowledge of environmental ethics on the present day world5. Have knowledge about the pollution and control methods6. Can design the equipments based acts formulated by the organization and governments7. Can assess the environmental effects8. Able to design the equipment on the sustainable basis9. Have knowledge about the formulations of environment By UN10. Can design the equipments based on the environmental conditions

1,2,3&4

f, h, &i

IV-Year/I-Semester32 57012 Switchgea

r and Protection

1.     To understand the various protection system 2. Understand the circuit brakers 3. Performance of

1.      Elementry principle of CB’s and ARC interruptions 2.   Types of CB’s explain bout them     3. Explain about electro magnestic and static relay

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CT, PT and relys Protection system for generators, transformers.

4.   Neutral grounding and protection against over voltages 5.   Protection of the generators and transformers 6.   Explain about other protection systems 7.   Tutorial problems on circuit brakers       8. Idea to estimate and costing for substations 9.    Explain bout protection failure cases

1, 2 &4

a , e ,l & m

33 57013 Utilization of electrical energy

1.This subject deals with the fundamentals of illumination and its

classification and the electric heating and welding. 2. It gives the detailed study of all varieties of Electric drives and their application to electrical traction systems. 3. This course is designed to equip seniors knowledge about operation principles and design of modern, static AC and DC Motor Drives and to give them an ability to choose such systems for various industrial applications.

1. Analyse and design the building electrical systems based on the international electrical wiring standard.2. Identify appropriate engineering safety in building electrical systems as part of the professional obligation to the nation.3. Demonstrate and express the engineering issues in building electrical systems that reflecting to the most recent technology.4. Demonstrate knowledge of fundamental aspects of the theories, principles and practice of computing;5. Define the concept of professionalism in the context of computing;6. Evaluate basic theories, processes and outcomes of computing;7. Apply theory, techniques and relevant tools to the specification, analysis, design, implementation and testing of a simple computing product.8. Actively participate in, reflect on, and begin to take responsibility for, personal

1, 2 , 3 & 4

a, e, l & m

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learning and development;9. Begin to work effectively as part of a team, developing interpersonal, organizational and problem-solving skills within a managed environment, exercising some personal responsibility.10. Evaluate theories, processes and outcomes within an ambiguous setting; 11. Be able to understand basic of generation, transmission and utilization of electric energy. 12. Be able to analyse single and three phase AC circuits, principle of transformer, energy conversion and various AC and DC machines. 13. Understand the practical aspect of various power apparatus. 14. Be capable of designing, selecting and analyzing various devices, circuit and system of Power engineering. 15. Have gained practical experience in the performance and operation of some important power engineering devices.

34 57014 Instrumentation

1. This is essential in monitoring and analysis of any Physical system and its control .2. Characteristics and Performance Characteristics of Signals. 3. Signal representation and

1.Errors in Measurement – Gross Errors, Systematic Errors, Statistical Analysis of Random Errors.2. Standard Test, periodic, aperiodic, modulated signal, sampled data, pulse modulation and pulse code modulation representation 3. Operation of CRO, Measurement of Phase and

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Signal Analyzers. 4. Cathode ray oscilloscope. 5. Digital Voltmeters operation and their types. 6. Electrical transducers definition, advantages, characteristics and their choice.

frequency with CRO, lissagous figures.4. Measurement of strain, Gauge Sensitivity, Displacement, Velocity, Angular Velocity, Acceleration5. Principle operation of resistor, inductor, LVDT and capacitor transducers; LVDT Applications, Strain gauge and its principle of operation, guage factor, Thermistors, Thermocouples, Synchros, Piezo electric transducers, photovoltaic,.6. Student will understand the fundamentals of instrument operation and control design.7. Student will able to understands the types of Errors occurring and their minimization 8. Student will himself/herself able to operate the CRO and able to measure the Frequency and Phase using CRO9.Student will able to represent and analyze the signals10.Student will understand the instruments of measurement of Non Electrical quantities.

1 a,b, e l & m

35 57015 Power System Operation and Control

1. Provide the students a detailed knowledge regarding economical operation of power system 2. To study the Economic operation of power system,

1. Learn the Economic operation of power system. 2. Learn the detailed features of optimum generation allocation including the effect of transmission power line losses.3. To learn the modeling of turbine generator and

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optimum generation and allocation the effect of transmission losses.3. To study Hydro Thermal scheduling, hydro electric power plant models

automatic controller.4. Learn single area load frequency control, two area load frequency control5. Know the reactive power control reactive power compensation in transmission system.6. Students will excel themselves to face power operation problem 7. To study the advantages and disadvantages of different types compensating equipment for transmission system8. Load compensation specification of load compensator un compensator and compensated transmission system9. Students will excel themselves to face competitive examinations of engineering.10. To get knowledge to designed turbines governors condensers

1 & 2

a , i ,k, l & m

Elective -I36 57016 High

Voltage Engineering

1. High Voltage Technology And Applications2. Break Down in Gaseous and Liquid Dielectrics3. Break Down in Solid Dielectrics4. Generation of High Voltages and Currents5. Measurement of High Voltages and Currents6. Over Voltage Phenomenon and Insulation Co-

1. Learn different High voltage technologies available.2. Applications of High Voltage.3. Knowledge on break down in Gaseous, Liquid and Solid Dielectrics.4. Generation and Measurement of High Voltages.5. Over-Voltage and Insulation Co-ordination.6. Safe testing of various Electrical apparatus.7. Practical application of various Dielectrics. 1, 2

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Ordination7. Non-Destructive testing of Material and Electrical Apparatus8. High Voltage testing of Electrical Apparatus

8. Practical Usage of High voltages.9. Control of High Voltages.10. Real need of insulation in the practical world.

& 3 a & m

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Elective -II

37 57020Electrical Distribution Systems

1. To understand the characteristics of load forecasting in distribution systems

2. Types of feeders3. Optimum location of sub stations4. Objectives of distribution system protection5. Power factor & voltage control improvements

1. Identify the load-curve characteristics for distribution systems.2. Relation between the load factor & the loss factor3. Demand forecasting in distribution systems, secondary distribution systems, primary feeders- radial & loop type.4. Loading of feeder and its voltage level.5. Location of substations with its ratings.6. Voltage drop and power loss in lines with uniform and non-uniform loads for a radial network.7. Service area with square shaped primary feeders, hexagonal shaped primary feeders.8. Fault current calculations in distribution systems.9. Latest power control techniques.10. Latest compensation techniques.

1, 3 & 4

a , l & m

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IV-Year/II-Semester

38 58008HVDC Transmission

1. Identify the electricalrequirementsforHVDC lines.2. Identify the components used in AC toDC conversion.3. Understand the history ofHVDC conversion and transmission4. Understand the operation ofHVDC conversion technology.5. Understand the requirements of anHVDC convertorstation.6. Understand the differences between classic HVDC and new HVDC technology.7. Understand the fundamentalrequirements ofHVDC transmission linedesign.8. Understand Understand the insulation insulation requirements requirementsfor an HVDC line

1. Identify driving factors behind the resurgence of HVDC.2. Recognize the best strategies for stakeholder engagement, communication, and outreach programs for HVDC projects.3. Examine how an actual utility operates its existing, successful HVDC system.4. Review the impact FERC rulemaking has on HVDC transmission projects.5. Examine the policy and regulatory attitudes toward HVDC.6. Discuss replacing existing AC transmission with a new DC system and the associated benefits of making the switch.7. Recognize the benefits of using HVDC as a transmission method for on- and offshore wind projects.8. Evaluate the use of superconductors within a HVDC system.9. Recognize the technical planning issues associated with HVDC.

1 a , i , l & m

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Elective-III

39 58009

Neural Network and Fuzzy Logic

1. Introduce the basics of Neural Networks.2. Essentials of Artificial Neural Networks with Single Layer and Multilayer Feed Forward Networks. 3. Also deals with Associate Memories 4. Introduces Fuzzy sets and Fuzzy Logic system components.5. The Neural Network and Fuzzy Network system application to Electrical Engineering is also presented. 6. This subject is very important and useful for doing Project Work.

1. Study of Artifical neuron model2. Applications of learning rules in ANN.3. Percepton models and training algorithms like discrete and continuous models.4. Concepts of associative memory.5. Properties, operation and relation between classical sets and fuzzy sets with its logical components.6. MATLAB SIMULATION for different ANN.7. Architecture of various network models8. Fuzzy logical components for defuzzification9. Genetic algorithms for different fuzzy logic systems.10. Different models networks are used in MATLAB SIMULATION projects.

2 & 4

k & m

Elective-IV 40 58012 Advance

Control Systems

1. To show how to use control theory to analyze and design advanced control systems for industrial problems such as trajectory tracking, disturbance rejection, and optimization.2. Multivariable control systems3. Non-linear control methods4. State space analysis5. Describing

1. Analyse multivariable control system2. Design predictive and optimal controllers.3. Analyze non-linear control systems4. Controllability and observability tests for continuous time systems. 5. Knowledge of characteristics of particular equipment processes.6. STABILITY ANALYSIS for the Linear and Nonlinear continuous time autonomous systems. 7. Describing function

1& 2 b ,d , e & k

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function analysis6. Phase-plane analysis7. Stability analysis8. Modal control9. Optimal control

analysis 8. A comprehensive knowledge and understanding of mathematical models relevant to the mechanical and related engineering disciplines, and an appreciation of their limitations9. Design controllers for linear discrete-time systems using state-space method10. Use rapid prototyping control design tools