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CBCS RGPV 4th sem  IT Syllabus | RGPV Information Tech CBCS Syllabus 4th Sem 2nd Year



RGPV 3rd Sem Information Technology Subjects
RGPV 4th Sem Information Technology Subjects
·         Mathematics-III (Departmental Mathematics)
·         Analysis and Design of Algorithms
·         DC    Digital Circuit and System
·         Object Oriented
·         Programming & Methodology
·         DC    Discrete Structure
·         HU    Communication Skills
·         DC    Idea Generation
·         DC    Learning Through Experts
·         Data Base Management System
·         EAS    System Engineering
·         DC    Operating System
·         DC    Communication Systems
·         DC    Computer Architecture
·         EAS    Material Science
·         EAS    JAVA
·         HU    NSS/NCC



CBCS RGPV 2nd year Information Technology Engineering Syllabus (4th Sem Syllabus)

Now RGPV Bhopal announced the 2nd year 4th sem syllabus of Information Technology branch; it contain above mentioned subjects. The RGPV also give the detail of 4th sem CBCS Information Technology practical list. If you want to download RGPV 4th sem CBCS Practical list of Information Technology branch; please follow below links:


Download RGPV CBCS 4th Sem IT Branch Syllabus >>> 

  • RGPV CBCS Data Base Management System Syllabus IT Branch

Data Base Management System syllabus



Basic Concepts: Introduction to DBMS, File system vs DBMS, Advantages of database systems,

Database System architecture, Data models, Schemas and instances, Data independence,
Functions of DBA and designer, Entities and attributes, Entity types, Key attributes,
Relationships, Defining the E-R diagram of database.
Relational Model: Structure of relational databases, Domains, Relations, Relational algebra –
fundamental operators and syntax, relational algebra queries, Entity-Relationship model :Basic
concepts, Design process, constraints, Keys, Design issues, E-R diagrams, weak entity sets,
extended E-R features –generalization, specialization and aggregation
SQL: Data definition in SQL, update statements and views in SQL: Data storage and definitions,
Data retrieval queries and update statements, Query Processing & Query Optimization:
Overview, measures of query cost, selection operation, sorting, join, evaluation of expressions,
transformation of relational expressions, estimating statistics of expression results, evaluation
plans. Case Study of ORACLE and DB2.
Relational Database design: Functional Dependency –definition, trivial and non-trivial FD,
closure of FD set, closure of attributes, irreducible set of FD, Normalization –1NF, 2NF, 3NF,
Decomposition using FD-dependency preservation, lossless join, BCNF, Multi-valued
dependency, 4NF, Join dependency and 5NF
Introduction of transaction, transaction processing and recovery, Concurrency control: Lock
management, specialized locking techniques, concurrency control without locking, Protection
and Security Introduction to: Distributed databases, Basic concepts of object oriented data base
system.


  • RGPV CBCS System Engineering Syllabus IT Branch

COURSE CONTENT

What is System Engineering, Origin, Examples of Systems requiring systems

engineering,Systems Engineer Career Development Model, Perspectives of Systems
Engineering, Systems Domains, Systems Engineering Fields, SystemEngineering Approaches.
Structure of Complex Systems, System Building Blocks and Interfaces, Hierarchy of Complex
Systems, System Building Blocks, The System Environment, Interfaces and Interactions,
Complexity in Modern Systems.
Concept Development and Exploration, Originating a New System, Operations Analysis,
Functional Analysis, Feasibility, System Operational Requirements, Implementation of Concept
Exploration.
Engineering Development, Reducing Program Risks, Requirements Analysis, Functional
Analysis and Design, Prototype Development as a Risk Mitigation Technique, Development
Testing, Risk Reduction.
Integration and Evaluation, Integrating, Testing, And Evaluating The Total System, Test
Planning And Preparation, System Integration, Developmental System Testing, Operational Test
And Evaluation, Engineering For Production, Transition From Development To Production,
Production Operations.


  • RGPV CBCS Operating System Syllabus IT Branch

Operating System syllabus



Software, type of software, introduction to Operating Systems, function, services, types of
operating systems, kernel, system call, process concept, process states, process control block,
type of scheduler, context switching, threads, type of threads, multithreading model.
Process management, concepts of CPU scheduling, scheduling criteria, scheduling algorithms,
algorithm evaluation, multiple processors scheduling, cooperating process, Interprocess
communication, process synchronization, critical section problem, semaphores, classical
problems of synchronization.
Deadlock, necessary conditions, resource allocation graph, deadlock prevention, deadlock
avoidance, deadlock detection, deadlock recovery, introduction to memory management, address
binding, logical and physical addressing, MMU, contiguous memory allocation, memory
management techniques, single partition, multi-partition, best fit, worst fit, first fit.
Paging, paging issues, TLB, page fault, segmentation, segmentation with paging, effective access
time, concepts of virtual memory, demand paging, demand segmentation, page replacement
algorithms, allocation of frames, thrashing, security in operating system, security techniques.
File system, file and directory concepts, attributes, operation, file type, directory structure,
LINUX file system, FAT, I-node, file access methods, allocation methods, free space
managements, disk management, disk access time, disk scheduling algorithm. 


  • RGPV CBCS Communication Systems Syllabus IT Branch

Communication Systems





Signals and Systems: Block diagram of a communication system, signal-definition, types of
signals continuous, discrete, deterministic, non-deterministic, periodic, non-periodic, energy,
power, analog and digital signals. Electromagnetic Spectra, Standard signals- DC, sinusoidal,
unit step, ramp, signum, rectangular pulse, impulse(delta) signal. System definition,
classification of systems, linear, nonlinear, time variant, time invariant, causal, non causal, stable
and unstable systems. Transmission media-Guided and unguided media, twisted pair, Unshielded
twisted pair and Shielded twisted pair, coaxial cable and fiber optic cable, radio waves,
microwaves and infrared transmission.
Fourier transforms: Time domain and frequency domain representation of signal, Fourier
Transform and its properties, conditions for existence, Transform of Gate, unit step, constant,
impulse, sine and cosine wave. Shifting property of delta function, convolution, time and
frequency convolution theorems.
Amplitude modulation: Modulation, need of modulation, types of modulation techniques,
amplitude modulation (DSB-FC), modulation index, frequency spectrum of AM wave, linear and
over modulation, power relation in AM, transmission efficiency, modulation by a complex
signal, bandwidth of AM, AM modulators, square law and switching modulator, advantages and
disadvantages of AM.
Demodulation of AM: Suppressed carrier amplitude modulation systems, DSB-SC, SSB-SC,
VSB-SC systems, comparison of various amplitude modulation systems. Demodulation of AM,
square law and envelope detector, synchronous detection of AM, Low and high power AM
transmitters, AM receivers, TRF and superheterodyne receivers, sensitivity, selectivity and
fidelity of receivers.
Angle modulation: Introduction and types of angle modulation, frequency modulation, frequency
deviation, modulation index, deviation ratio, bandwidth requirement of FM wave, types of FM.
Phase modulation, difference between FM and PM, Direct and indirect method of FM
generation, FM demodulators- slope detector, Foster seeley discriminator, ratio detector.
Introduction to pulse modulation systems, PAM, PPM, PWM systems, frequency and time
division multiplexing. 


  • RGPV CBCS Computer Architecture Syllabus IT Branch

Computer Architecture



Computer architecture and organization, computer generations, von Neumann model, CPU

organization, CPU organization, Register organization, Various CPU register, Register Transfer,
Bus and Memory Transfers, Arithmetic, Logic and Shift micro-operations, Arithmetic logic shift
unit.
The arithmetic and logic unit, Fixed-Point representation: integer representation, sign-magnitude,
1’s and 2’s complement and range, Integer arithmetic: negation, addition and subtraction,
multiplication, division, Floating-Point representation, Floating-Point arithmetic, Hardwired
micro-programmed control unit, Control memory, Micro-program sequence.
Central Progressing Unit (CPU), Stack Organization, Memory Stack, Reverse Polish Notation.
Instruction Formats, Zero, One, Two, Three- Address Instructions, RISC Instructions and CISC
Characteristics, Addressing Modes, Modes of Transfer, Priority Interrupt, Daisy Chaining,
DMA, Input-Output Processor (IOP).
Computer memory system, Memory hierarchy, main memory: RAM, ROM chip, auxiliary and
associative memory, Cache memory: associative mapping, direct mapping, set-associative
mapping, write policy, cache performance, Virtual memory: address space, memory space,
address mapping, paging and segmentation, TLB, page fault, effective access time, replacement
algorithm.
Parallel Processing, Pipelining General Consideration, Arithmetic Pipeline, and Instruction
Pipeline, Vector Operations, Matrix Multiplication, and Memory Interleaving, Multiprocessors,
Characteristics of Multiprocessors

  • RGPV CBCS Material Science Syllabus IT Branch

Material Science Syllabus



Course Contents

Introduction – Classification of materials, relationships in materials , atomic structure, electron in
atoms, periodic table , quantum states , origin of permanent magnetic moment and magnetic
parameters, types of metal alloys. Optical fibre and its properties, Toxic heavy materials with
pros and cons, built – up of CRT, LCD and LED.
Magnetic materials – terminology and classification , electron spin , ferromagnetism , domain
structure, hysteresis loop, soft and hard magnetic materials. Structure of crystalline solids – face
centered ,body centered , hexagonal closed packed crystal structure. Ceramic crystal: radius ratio
rules and ceramic density computations, polymer structure- crystallinity and polymer crystals.
Semiconductor Technology and Measurements – crystal growth and wafer preparation ,
methods of p –n junction formation , growth and deposition of dielectric layers, metal
decomposition techniques, bipolar and MOS integration. Parameters for measurements
conductivity type, resistivity, drift mobility and diffusion length, minority carrier lifetime.
E- Basics of E-Waste, Generation of E-Waste in india, Composition of E-waste, Component of
E-waste, Life Cycle of E-waste, E-waste generation in organized sector and unorganized sector,
E-waste in the global context,Growth of electrical and electronic industry in India, Environment
concerns & health hazards, Laws regarding E-waste management.
Mechanism of WEEE/E-waste Trade, WEEE/E-waste Life Cycle, Components of WEEE/Ewaste
Management, Waste Electrical and Electronic Equipment (WEEE) Directive in the
European Union, Obligations of the Producer under the WEEE, Barriers to Recycling of WEEE,
Restrictions of Hazardous Substances (RoHS)Directive, Comparative WEEE/e-waste
management in Switzerland and India, E-waste projection and recycling.

  • RGPV CBCS JAVA Syllabus IT Branch

Object-Oriented Programming , overview of Java, Installation, First Simple Program,

Compilation process , Java Keywords , Identifiers , Literals, Comments, Data Types, Variables,

Arrays, Declaration a variable, Dynamic initialization, the scope and life time of variable, type
conversion and casting, Operators, Control Statements,
Class Fundamentals, Simple Class , Abstract Classes, Declaring Objects, Introducing Methods,
Constructors, this Keyword, Garbage Collection, finalize Method, Overloading Methods,
Overloading Constructors, Using Objects as Parameters, Inheritance, Creating a Multilevel
Hierarchy, Packages and Interfaces, Exception Handling, Multithreaded
The Applet Class: Applet Basics, The Applet Class, Applet Architecture, Applet Initialization
and Termination , Simple Applet Display Methods, Simple Banner Applet, Using the Status
Window, The HTML APPLET Tag, Passing Parameters to Applets, Improving the Banner
Applet.
Introducing the AWT: Working with Windows, Graphics, and Text, AWT Classes, Window
Fundamentals, Component, Container, Panel, Frame, Working with Frame Windows, Handling
Events in a Frame Window, AWT Controls, Layout Managers, and Menus, Adding and
Removing Controls, GridLayout, BorderLayout, introduction to swing and servlet.
Event Handling, Two Event Handling Mechanisms, The Delegation Event Model, Events, Event
Sources, Event Listeners, Event Classes, The MouseEvent Class and others, JDBC: JDBCODBC
bridge, the connectivity model, the driver manager, navigating the result set object
contents, the JDBC exceptional classes, connecting to remote database.



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