by Rishi | Jun 4, 2019 | Jntuk lecture notes
Cellular Mobile Communications Lecture Notes Jntuk R16 ECE Download and you can download all 4-1 ece materials from our site jntukmaterials.com. You cane download the materials after buying them.
by Rishi | Jun 4, 2019 | Jntuk lecture notes
COMPUTER PROGRAMMING
Learning objectives:
Formulating recursive solutions to issues and implementing algorithms in C.
• Notion of Operation of a computer hardware, Notion of associate degree rule and machine procedure, piece of writing and death penalty programs in UNIX system.
• Understanding branching, iteration and information illustration victimisation arrays.
• standard programming and algorithmic resolution formulation. • Understanding pointers and dynamic memory allocation. • Understanding miscellaneous aspects of C.
• Comprehension of file operations.
UNIT-I:
History and Hardware – constituent, Bits and Bytes, Components, Programming Languages – Machine Language, programming language, Low- and High-Level Languages, Procedural and Object-Oriented Languages, Application and System package, the event of C Algorithms The package Development method.
UNIT-II:
Introduction to C Programming- Identifiers, the most () operate, The printf () operate Programming vogue – Indentation, Comments, Data Types, Arithmetic Operations, Expression varieties, Variables and Declarations, Negation, Operator Precedence and Associativity, Declaration Statements, data formatting. Assignment – Implicit sort Conversions, express sort Conversions (Casts), Assignment Variations, Mathematical Library Functions, Interactive Input, Formatted Output, Format Modifiers.
UNIT -III:
management Flow-Relational Expressions – Logical Operators: Selection: if-else Statement, nested if, examples, Multi-way selection: switch, else-if, examples. Repetition: Basic Loop Structures, Pretest and Posttest Loops, Counter-Controlled and Condition-Controlled Loops, The whereas Statement, The for Statement, Nested Loops, The do-while Statement.
UNIT-IV
standard Programming: operate and Parameter Declarations, Returning a worth, Functions with Empty Parameter Lists, Variable Scope, Variable Storage category, native Variable Storage categories, international Variable Storage categories, travel by Reference, Passing Addresses to a operate, Storing Addresses, victimisation Addresses, Declaring and victimisation Pointers, Passing Addresses to a operate. Case Study: Swapping Values, rule – Mathematical rule, rule versus Iteration.
I Year – I Semester
L T P C
4 0 0 3
COMPUTER PROGRAMMING
UNIT-V:
Arrays & Strings Arrays: One-DimensionalArrays, Input and Output of Array Values, Array data formatting, Arrays as operate Arguments, Two-Dimensional Arrays, LargerDimensionalArrays- Matrices Strings: String Fundamentals, String Input and Output, String process, Library Functions
UNIT-VI:
Pointers, Structures, Files Pointers: idea of a Pointer, format of pointer variables, pointers as operate arguments, passing by address, supporting memory, address arithmetic, character pointers and functions, tips that could pointers, Dynamic memory management functions, instruction arguments. Structures: Derived varieties,Structuresdeclaration, data formatting of structures, accessing structures, nested structures, arrays of structures, structures and functions, tips that could structures, self denotive structures, unions, typedef, bitfields. information Files: Declaring, Opening, and shutting File Streams, Reading from and Writing to Text Files, Random File Access
Outcomes:
• perceive the fundamental word employed in programing • Write, compile and correct programs in C language. • Use totally different information varieties in a very trojan horse. • style programs involving call structures, loops and functions. • justify the distinction between decision by price and decision by reference • perceive the dynamics of memory by the employment of pointers • Use totally different information structures and create/update basic information files.
Text Books:
one. ANSI C Programming, Gary J. Bronson, Cengage Learning. 2. Programming in C, Bl Juneja Anita Seth, Cengage Learning. 3. The C artificial language, Dennis Richie and Brian Kernighan, Pearson Education.
Reference Books: one. C Programming-A downside resolution Approach, Forouzan, Gilberg, Cengage. 2. Programming with C, Bichkar, Universities Press. 3. Programming in C, ReemaThareja, OXFORD. 4. C by Example, Yule Kalicharan, Cambridge.
Also Download the Remaining Subjects of Jntuk Btech 1-1 :
English – I
Mathematics – I
Mathematics – II (Mathematical Methods)
Applied Physics(AP)
Engineering Drawing (Updated)
by Rishi | Jun 4, 2019 | Jntuk lecture notes
Object Oriented Programming through C++
OBJECTIVES:
• This course is meant to supply a comprehensive study of the C programming
language. It stresses the strengths of C, which offer students with the means that of writing
efficient, rectifiable and moveable code. the character of C language is stressed within the
wide variety of examples and applications. to be told and acquire art of pc
programming. to understand concerning some in style programming languages and the way to decide on
• artificial language for determination a drag.
UNIT-I:
Introduction to C++
Difference between C and C++- Evolution of C++- the article familiarised TechnologyDisadvantage of standard Programming- Key ideas of Object familiarised ProgrammingAdvantage of OOP- Object familiarised Language.
UNIT-II:
categories and Objects &Constructors and Destructor
Classes in C++-Declaring Objects- Access Specifiers and their Scope- process Member
Function-Overloading Member Function- Nested category, Constructors and Destructors,
Introduction- builders and Destructor- Characteristics of builder and DestructorApplication with Constructor- Constructor with Arguments (parameterized ConstructorDestructors- Anonymous Objects.
UNIT-III:
Operator Overloading and sort Conversion & Inheritance
The Keyword Operator- Overloading single Operator- Operator come back Type- Overloading
Assignment Operator (=)- Rules for Overloading Operators, Inheritance, Reusability- kinds of
Inheritance- Virtual Base Classes- Object as a category Member- Abstract Classes- blessings of
Inheritance-Disadvantages of Inheritance,
UNIT-IV:
Pointers & Binding Polymorphisms and Virtual Functions
Pointer, options of Pointers- Pointer Declaration- Pointer to Class- Pointer Object- The this
Pointer- Pointer to Derived categories and Base category, Binding Polymorphisms and Virtual
Functions, Introduction- Binding in C++- Virtual Functions- Rules for Virtual Function- Virtual
Destructor.
I Year – II Semester
L T P C
4 0 0 3
OBJECT-ORIENTED PROGRAMMING THROUGH C++
UNIT-V:
Generic Programming with Templates & Exception Handling
Generic Programming with Templates, want for models- Definition of sophistication TemplatesNormal perform Templates- Over Loading of Template perform-Bubble type exploitation Function
Templates- distinction Between Templates and Macros- coupled Lists with Templates, Exception
Handling- Principles of Exception Handling- The Keywords attempt throw and catch- Multiple Catch
Statements –Specifying Exceptions.
UNIT-VI:
summary of normal model Library
Overview of normal model Library- STL Programming Model- Containers- Sequence
Containers- Associative Containers- Algorithms- Iterators- Vectors- Lists- Maps.
OUTCOMES:
• perceive the fundamental nomenclature employed in creating by mental acts
• Write, compile and correct programs in C language. Use totally different knowledge varieties during a pc
program.
• style programs involving call structures, loops and functions.
• justify the distinction between decision by price and decision by reference
Text Books:
- a primary Book of C++, port of entry Bronson, Cengage Learing.
- the entire Reference C++, Herbert Schildt, TMH.
- Programming in C++, Ashok N Kamathane, Pearson second Edition.
Reference Books: - Object familiarised Programming C++, Joyce Farrell, Cengage.
- C++ Programming: from downside analysis to program style, DS Malik, Cengage
Learing.
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by Rishi | Jun 4, 2019 | Jntuk lecture notes
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by Rishi | Jun 4, 2019 | Jntuk lecture notes
Preamble:
This course introduces the ideas of semi-conductor physics and operation of assorted semi-conductor devices. Realization of rectifiers, amplifiers and oscillators victimization semi-conductor devices and their analysis is additionally introduced during this course.
Unit-I:
Objective: to find out the fundamentals of semiconductor physics.
Review of Semi Conductor Physics: Insulators, Semi conductors, and Metals classification victimization Energy Band Diagrams, quality and physical phenomenon, Electrons and holes in Intrinsic Semi conductors, unessential Semi Conductor, (P and N sort semiconductor) Hall result, Generation and Recombination of Charges, Diffusion, Continuity Equation, Injected Minority Carriers, Law of Junction, Introduction to fermi level in Intrinsic, unessential semi conductors with necessary arithmetic
Outcome:
Students area unit able to perceive the fundamental ideas of semiconductor physics, that area unit helpful to grasp the operation of diodes and transistors.
Unit-II:
Objective: to review the development details, operation and characteristics of assorted semiconductor diodes.
Junction Diode Characteristics Operation and characteristics of contact diode. Current elements in p-n diode, diode equation. Temperature dependence on V–I characteristic, diffusion capacitance and diode resistance (static and dynamic), energy band diagram of p-n diode. Special Diodes: Avalanche and Zener break down, Zener characteristics, tunnel diode, characteristics with the assistance of energy band diagrams, Varactor diode, LED, PIN diode, picture diode
Outcome: Students area unit able to justify the operation and characteristics of PN junction diode and special diodes.
Unit-III:
Objective: to grasp the operation and analysis of rectifiers with and while not filters. more study the operation of series and shunt regulators victimization zener diodes.
Rectifiers and Regulators wave rectifier, ripple issue, full wave rectifier (with and while not transformer), harmonic elements during a rectifier circuit, electrical device filter, electrical condenser filter, L-section filter, Π- section filter, and comparison of assorted filter circuits in terms of ripple factors. straightforward circuit of a regulator victimization Zener diode. varieties of regulators-series and shunt voltage regulators, over load voltage protection.
Outcome: Ability to grasp operation and style aspects of rectifiers and regulators.
Unit-IV:
Objective: to review the characteristics of various bipolar junction transistors and their biasing stabilization and compensation techniques. to investigate junction transistor amplifiers victimization hparameters.
Transistors electronic transistor, junction transistor current elements, junction transistor as Associate in Nursing electronic equipment and switch. Characteristics of junction transistor (CE, CB and CC configurations). junction transistor biasing and thermal stabilization (to mounted bias, collector to base bias, self bias). Compensation against variation in base electrode voltage and collector current. Thermal runaway. Hybrid model of junction transistor. Analysis of junction transistor electronic equipment victimization h-parameters
Outcome: Students area unit able to perceive the characteristics of assorted junction transistor configurations. They become accustomed to completely different biasing, stabilization and compensation techniques utilized in junction transistor circuits.
Unit- V:
Objective: to grasp the fundamentals of junction transistor,Thyristors, Power IGBTs and Power MOSFETs.
Power semiconductor devices Principle of operation and characteristics of Thyristors, chemical element management rectifiers, power IGBT and power MOSFET their ratings. Comparison of power devices. FET: JFET Characteristics (Qualitative explanation), MOFET Characteristics–static and Transfer (enhancement and depletion mode), low frequency model of junction transistor, junction transistor as Associate in Nursing electronic equipment.
Outcome:
Students area unit able to perceive the operation and characteristics of junction transistor, Thyristors, Power IGBTs and Power MOSFETs.
Unit VI :
Objective: to grasp the ideas of positive and negative feedbacks and their role in amplifiers and oscillators.
Amplifiers and oscillators Feedback Amplifiers -classification, feedback idea, transfer gain and general characteristics of feedback amplifiers, result of feedback on input and output resistances. strategies of study of feedback amplifiers. Power Amplifiers – Classification, push-pull amplifiers, Introduction to harmonics (distortion issue. Oscillators – Condition for oscillation, RC-phase shift generator. Wein bridge generator, Crystal generator. Frequency and amplitude stability of oscillators.
Outcome:
Students area unit able to understand the deserves and demerits of positive and feedback and also the role of feedback in oscillators and amplifiers.
TEXT BOOKS:
one. Electronic Devices and Circuits – J. Millman, C.C. Halkias, Tata Mc-Graw Hill
REFERENCE BOOKS:
one. Electronic Devices and Circuits by David A. Bell, university Press
two. Electronic Devices and Circuits – Salivahanan, Kumar, Vallavaraj, TATA handler Hill, Second Edition
three. Electronic Devices and Circuits – R.L. Boylestad and Joseph Louis Barrow Nashelsky, Pearson/Prentice Hall, 9thEdition, 2006
by Rishi | Jun 4, 2019 | Jntuk lecture notes
Basic Electrical and Electronics Engineering
Preamble:
This course covers the topics associated with analysis of varied electrical circuits, operation of varied electrical machines, varied electronic elements to perform well in their individual fields.
Learning Objectives:
• to find out the essential principles of electrical circuital law’s and analysis of networks.
• to know the principle of operation and construction details of DC machines & Transformers.
• to know the principle of operation and construction details of generator and 3-Phase induction motor.
• to check the operation of PN junction diode, half wave, full wave rectifiers and OP-AMPs.
• to find out the operation of PNP and NPN transistors and varied amplifiers.
UNIT – I
Electrical Circuits:
Basic definitions – sorts of network parts – Ohm’s Law – Kirchhoff’s Laws – Inductive networks – electrical phenomenon networks – Series – Parallel circuits – Star-delta and delta-star transformations.
UNIT – II
Dc Machines:
Principle of operation of DC generator – electromotive force equation – sorts of DC machine – torsion equation – Applications – 3 purpose starter – Speed management strategies of DC motor – Swinburne’s check.
UNIT – III
Transformers:
Principle of operation and construction of single part transformers – electromotive force equation – Losses – OC & SC tests – potency and regulation.
UNIT – IV
AC Rotating Machines:
Principle of operation and construction of alternators– sorts of alternators – Principle of operation of electric motor – Principle of operation of 3-Phase induction motor – Slip-torque characteristics – potency – Applications.
I Year – II Semester
L T P C
4 0 0 3
BASIC ELECTRICAL AND physics ENGINEERING
UNIT V
Rectifiers & Linear ICs:
PN junction diodes – Diode applications(Half wave and bridge rectifiers). Characteristics of operation amplifiers (OP-AMP) – application of OP-AMPs (inverting, non-inverting, measuring instrument and differentiator).
UNIT VI
Transistors:
PNP and NPN electronic transistor, semiconductor as AN electronic equipment- semiconductor electronic equipment – Frequency response of Ce electronic equipment – ideas of feedback amplifier.
Learning Outcomes:
• able to analyse the varied electrical networks.
• able to perceive the operation of DC generators,3-point starter and DC machine testing by Swinburne’s check.
• able to analyse the performance of single-phase electrical device.
• able to justify the operation of 3-phase generator and 3-phase induction motors.
• able to analyse the operation of wave, full wave bridge rectifiers and OP-AMPs.
• able to justify the one stage Ce electronic equipment and idea of feedback electronic equipment.
Text Books:
1. Electrical Technology by Surinder Pal Bali, Pearson Publications.
- Electronic Devices and Circuits, R.L. Boylestad and Louis Nashelsky, ninth edition, PEI/PHI 2006.
Reference Books:
1.Electrical Circuit Theory and Technology by John Bird, Routledge Taylor &Francis cluster - Basic engineering science by M.S.Naidu and S.Kamakshiah,TMH Publications
3.Fundamentals of engineering science by Rajendra Prasad, letter Publications,2nd edition
4.Basic engineering science by Nagsarkar,Sukhija, Oxford Publications,2nd edition
5.Industrial physics by G.K. Mittal, PHI