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R18 B.Tech. CSE Syllabus JNTU HYDERABAD 1

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Write the matrix representation of the set of linear equations and analyze the solution of the system of equations. Matrices: types of matrices, symmetric; hermit; Oblique-symmetrical; Skew-Hermitian; orthogonal matrices; Unitary matrices; matrix rank according to Echelon form and Normal form, Inverse non-singular matrix according to the Gauss-Jordan method; System of linear equations; solving a system of homogeneous and inhomogeneous equations. Necessary principles and concepts of electrochemistry, corrosion and in understanding the problems of water and its treatment.

Electrochemistry and corrosion: Electrochemical cells – electrode potential, standard electrode potential, types of electrodes – calomel, quinhydrone and glass electrode. Causes and effects of corrosion – theories of chemical and electrochemical corrosion – mechanism of electrochemical corrosion, Types of corrosion: galvanic, waterline and pitting corrosion. Components of LT Switchgear: Switch Fuse Unit (SFU), MCB, ELCB, MCCB, Types of Wires and Cables, Earthing.

Raman Effect” from the prescribed textbook “English for Engineers” published by Cambridge University Press. Ancient Architecture in India” from the prescribed textbook “English for Engineers” published by Cambridge University Press.

Computer Assisted Language Learning (CALL) Lab

Interactive Communication Skills (ICS) Lab

The basic properties of vector valued functions and their application to line, surface and volume integrals. Introduction to quantum physics, Black body radiation, Planck's law, Photoelectric effect, Compton effect, de-Broglie's hypothesis, Wave-particle duality, Davisson and Germer experiment, Heisenberg's uncertainty principle, Born's interpretation of the wave function, Schrodinger's time-independent wave equation, Particle in a dimensional box. Lasers: Introduction to interaction of radiation with matter, correlation, principle and operation of laser, population inversion, pumping, types of lasers: ruby ​​laser, carbon dioxide (CO2) laser, He-Ne laser, applications of laser.

Introduction to computer system components: disks, primary and secondary memory, processor, operating system, compilers, program creation, compilation and execution, etc., number systems Introduction to algorithms: steps to solve logic and numerical problems. Algorithm presentation, flowchart/pseudo code with examples, program design and structured programming Introduction to the C programming language: variables (with data types and spatial requirements), syntax and logical errors in compilation, object and executable code, operators, expressions and precedence, Expression evaluation, Storage classes (auto, external, static and register), type conversion, Main method and command line arguments. I/O: simple input and output with scanf and printf, formatted I/O, introduction to stdin, stdout and stderr.

Arrays: one- and two-dimensional arrays, creating, accessing and manipulating elements of arrays Strings: Introduction to strings, handling strings as arrays of characters, basic string functions available in C (strlen, strcat, strcpy, strstr etc.), arrays of strings. Introduction to Engineering Drawing: Principles of Engineering Graphics and Their Importance, Conic Sections Including the Rectangular Hyperbola – General Method Only.

LASER

Write a program that prints a multiplication table for a given number and the number of rows in the table. Write a C program to find the sum of individual digits of a positive integer and prove that the given number is a palindrome. Write a C program to generate all prime numbers between 1 and n, where n is a user-supplied value.

Write a program to read elements by pointer into an array and display the values ​​using the array. Write a C program to merge two files into a third file (ie the contents of the first file followed by the contents of the second are inserted into the third file). Write a C program that displays the position of character ch in the string S or – 1 if S does not contain ch.

Write a C program that sorts the given array of integers using selection sort in descending order h. Write a C program that sorts the given array of integers using insertion sort in ascending order i.

Identify the peripherals of a computer, components in a CPU and its functions. Draw the block diagram of the CPU along with the configuration of each peripheral and submit to your instructor

The modules include training on PC hardware, the Internet and the World Wide Web and productivity tools including Word, Excel, Power Point and Publisher. PC Hardware introduces the students to a personal computer and its basic peripherals, the process of assembling a personal computer, installation of system software such as MS Windows, Linux and required device drivers. The students have to work on a working PC, disassemble and assemble it to working condition and install Windows and Linux on the same PC.

The Internet & World Wide Web module introduces the different ways to connect your computer to the Internet from home and work and to use the Internet effectively. In addition, awareness of cyber hygiene, i.e. protecting the personal computer from infection with viruses, worms and other cyber attacks, will be introduced. The productivity tools module would enable students to create professional word documents, excel spreadsheets, power point presentations and personal websites using the Microsoft office suite and LaTeX.

Draw a block diagram of the CPU along with the configuration of each peripheral and submit it to your instructor.

Every student should individually install MS windows on the personal computer. Lab instructor should verify the installation and follow it up with a Viva

If there is no Internet connection, instructors should prepare for a WWW simulation in a LAN. We would give the students some topics to Google.

Cyber Hygiene: Students would be exposed to the various threats on the internet and would be asked to configure their computer to be safe on the internet. They need to first install an antivirus

Creating a Scheduler - Features to be covered: Gridlines, Format Cells, Summation, auto fill, Formatting Text

OBJECTIVES

To improve students' English fluency through a well-developed vocabulary and enable them to listen to English spoken at normal conversational speed by trained English speakers and respond appropriately in various socio-cultural and professional contexts.

SYLLABUS

MINIMUM REQUIREMENT

SUGGESTED SOFTWARE

Introduction to Intellectual Property: Introduction, types of intellectual property, international organizations, agencies and treaties, meaning of intellectual property rights. Syntax Analysis: Introduction, Context Free Grammars, Writing a Grammar, Top-Down Parsing, Bottom-Up Parsing, Introduction to LR Parsing: Simple LR, More Powerful LR Parsers, Using Ambiguous Grammars and Parser Generators. Run-Time Environments: Stack space allocation, accessing non-local data on the stack, heap management, introduction to garbage collection, introduction to track-based collection.

Machine Independent Optimization: Main sources of optimization, Introduction to data flow analysis, Fundamentals of data flow analysis, Constant propagation, Elimination of partial redundancy, Loops in flow graphs. Introduction to network programming: OSI model, Unix standards, TCP and UDP & TCP connection establishment and format, buffer sizes and limits, standard Internet services, protocol use with a common Internet application. Introduction to Android Operating System: Design and Features of Android OS - Android Development Framework, SDK Features, Installing and Running Apps in Android Studio, Creating AVDs, Types of Android Apps, Android Programming Best Practices, Android Tools.

Database – Introduction to SQLite database, creating and opening a database, creating tables, inserting data, retrieving and setting data, registering content providers, using content providers (insert, delete, retrieve and to update). Introduction to Embedded Systems: Definition of Embedded Systems, Embedded Systems vs General Computer Systems, History of Embedded Systems, Classification of Embedded Systems, Main Application Areas, Purpose of Embedded Systems, Characteristics and Quality Characteristics of Embedded Systems. Introduction to Ad Hoc Networks - Characteristics of MANETs, ​​Applications of MANETs and Challenges of MANETs.

Introduction: Introduction to UNIX/LINUX, overview of commands, file I/O (open, create, close, lseek, read, write), Process control (fork, vfork, exit, wait, waitpid, exec). Introduction to soft computing: evolutionary computing, "soft" computing versus "hard" computing, soft computing methods, recent trends in soft computing, characteristics of soft computing, applications of soft computing techniques. Introduction to IoT - Definition and Characteristics of IoT, Physical Design of IoT - IoT Protocols, IoT Communication Models, IoT Communication APIs, IoT Enabled Technologies - Wireless Sensor Networks, Cloud Computing, Big Data Analytics, Communication protocols, embedded systems, IoT layers and domain-specific IoT propositions – home, city, environment, energy, retail, logistics, agriculture, industry, health and lifestyle.

Introduction to Python - Python Language Functions, Data Types, Data Structures, Control Flow, Functions, Modules, Packaging, File Handling, Data/Time Operations, Classes, Exception Handling Python Packages - JSON, XML, HTTPLib, URLLib, SMTPLib. IoT Physical Devices and Endpoints - Introduction to Raspberry PI Interfaces (Serial, SPI, I2C) Programming – Python program with Raspberry PI focusing on connecting external gadgets, controlling outputs, reading inputs from pins. Physical IoT Servers and Cloud Offerings – Introduction to Cloud Storage Models and Communication APIs Web Server – Web Server for IoT, Cloud for IoT, Python Web Application Framework Designing a RESTful Web API.

Introduction to OB - Definition, nature and scope - Environmental and organizational context - Impact of IT, globalization, diversity, ethics, culture, reward systems and organizational design on organizational behavior. Introduction to deep learning, historical trends in deep learning, deep feed-forward networks, gradient-based learning, hidden units, architecture design, back-propagation and other differentiation algorithms.

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