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Showing posts with label Syllabus. Show all posts
Showing posts with label Syllabus. Show all posts

ME 8th sem ME 805 Major Project Syllabus Mechanical Engineering Syllabus

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RGTU/RGPV ME 805 Major Project Syllabus
RGTU/RGPV Major Project SYLLABUS
Mechanical Engineering ME 8th Semester Syllabus

Branch : Mechanical Engineering, VIII Semester 
Course:  Major Project

Objectives of the course Minor/Major Project are:
  • To provide students with a comprehensive experience for applying the knowledge gained so far by studying various courses.
  • To develop an inquiring aptitude and build confidence among students by working on solutions of small industrial problems.
  • To give students an opportunity to do some thing creative and to assimilate real life work situation in institution.
  • To adapt students for latest development and to handle independently new situations.
  • To develop good expressions power and presentation abilities in students.

The focus of the Major Project is on preparing a working system or some design or understanding of a complex system using system analysis tools and submit it the same in the form of a write up i.e. detail project report. The student should select some real life problems for their project and maintain proper documentation of different stages of project such as need analysis market analysis, concept evaluation, requirement specification, objectives, work plan, analysis, design, implementation and test plan. Each student is required to prepare a project report and present the same at the final examination with a demonstration of the working system (if any)

Working schedule The faculty and student should work according to following schedule:
Each student undertakes substantial and individual project in an approved area of the subject and  supervised by a member of staff.The student must submit outline and action plan for the project execution (time schedule) and the same be approved by the concerned faculty. Action plan for Major  

Project work and its evaluation scheme #(Suggestive) 

* Committee comprises of HOD, all project supervisions including external guide from industry (if any) # The above marking scheme is suggestive, it can be changed to alternative scheme depending on the type of project, but the alternative scheme should be prepared in advance while finalizing the topic of project before a committee and explained to the concerned student as well. 
NOTE: At every stage of action plan, students must submit a write up to the concerned guide:
ME 8th sem Refrigeration and Air Conditionin Syllabus ME803 Refrigeration and Air Conditionin Syllabus

ME 8th sem Refrigeration and Air Conditionin Syllabus ME803 Refrigeration and Air Conditionin Syllabus

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RGTU/RGPV ME 803 Refrigeration and Air Conditioning Syllabus
RGTU/RGPV Refrigeration and Air Conditioning SYLLABUS
Mechanical Engineering ME 8th Semester Syllabus

Branch: Mechanical Engineering, VIII Semester 
Course:  Refrigeration and Air Conditionin

Unit-I Introduction: Principles and methods of refrigeration, freezing; mixture cooling by gas reversible expansion, throttling, evaporation, Joule Thomson effect and reverse Carnot cycle; unit of refrigeration, coefficient of performance, vortex tube & thermoelectric refrigeration, adiabatic demagnetization; air refrigeration cycles- Joule’s cycle Boot-strap cycle, reduced ambient cycle and regenerative cooling cycles.

Unit-II Vapour compression system: Vapor compression cycle, p-h and t-s diagrams, deviations from theoretical cycle, sub-cooling and super heating, effects of condenser and evaporator pressure on cop;multi-pressure system: removal of flash gas, multiple expansion & compression with flash inter cooling; low temperature refrigeration: production of low temperatures, cascade system, dry ice, production of dry ice, air liquefaction system,.

Unit-III (a) Vapour absorption system: Theoretical and practical systems such as aqua-ammonia,
electrolux & other systems; (b)  Steam jet refrigeration: Principles and working, simple cycle of
operation, description and working of simple system, (c) refrigerants: nomenclature & classification, desirable properties, common refrigeration, comparative study, leak detection methods, environment friendly refrigerants and refrigerant mixtures, brine and its properties

Unit-IV Psychrometric: Calculation of psychrometric properties of air by table and charts; psychrometric processes:  sensible heating and cooling, evaporative cooling, cooling dehumidification, heating and humidification, mixing of air stream, sensible heat factor; principle of air conditioning, requirements of comfort air conditioning, ventilation standards, infiltrated air load, fresh air load human comfort, effective temperature & chart, heat production & regulation of human body,

Unit-V Air conditioning loads: calculation of summer & winter air conditioning load, bypass factor of coil, calculation of supply air rate & its condition, room sensible heat factor, grand sensible heat factor, =effective sensible heat factor, dehumidified air quantity. Problems on cooling load calculation. Air distribution and ventilation systems


ME803 Ad Hoc Networks References: 
1. Arora CP; Refrigeration and Air Conditioning; TMH
2. Sapali SN; Refrigeration and Air Conditioning; PHI
3. Ananthanarayan; Basic Refrigeration and Air conditioning; TMH
4. Manohar Prasad; Refrigeration and Air Conditioning; New Age Pub
5. Ameen; Refrigeration and Air Conditioning; PHI
6. Pita ; Air conditioning Principles and systems: an energy approach; PHI
7. Stoecker W.F, Jones J; Refrigeration and Air conditioning; McGH, Singapore
8. Jordan RC and Priester GB Refrigeration and Air Conditioning, PHI USA
9. Arora RC; Refrigeration and Air conditioning; PHI Learning


List of Experiments (Please Expand it): Refrigeration and Air Conditioning AU/ ME 803
1. General Study of vapor compression refrigeration system.
2. General Study of Ice Plant
3. General Study and working of cold storage
4. General Study Trane Air Condition (Package Type).
5. General Study of Electrolux Refrigeration
6. General Study One tone Thermax refrigeration unit.
7. General Study of Water cooler
8. General Study of Psychrometers (Absorption type)
9. General Study of Leak Detectors (Halide Torch).
10. General Study and working of Gas charging Rig.
11. General Study of window Air Conditioner.
12. General Study and working of Vapor compression Air conditioning Test rig.
13. Experimentation on Cold Storage of Calculate COP & Heat Loss.
14. Experimentation on Vapor compression Air Conditioning test rig.
15. Changing of Refrigerant by using Gas Charging Kit.
ME 8th sem Energy Conservation and Audit Syllabus ME801A Energy Conservation and Audit Syllabus

ME 8th sem Energy Conservation and Audit Syllabus ME801A Energy Conservation and Audit Syllabus

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RGTU/RGPV ME 801A Energy Conservation and Audit Syllabus
RGTU/RGPV Energy Conservation and Audit SYLLABUS
Mechanical Engineering ME 8th Semester Syllabus

Branch : Mechanical Engineering, VIII Semester 
Course:  Energy Conservation and Audit

UNIT-I Energy Management: Concept of energy management, energy demand and supply, economic analysis; Duties and responsibilities of energy managers.  Energy Conservation: Basic concept, energy conservation in Household, Transportation, Agricultural, service and Industrial sectors, Lighting, HAVC.

UNIT-II Energy Audit: Definition, need and types of energy audit; Energy management (Audit) approach: Understanding energy cost, bench marking, energy performance, matching energy use to requirement, maximizing system efficiencies, optimizing the input energy requirement; Fuel & energy substitution; Energy audit instruments; Energy conservation Act; Duties and responsibilities of energy manager and auditors.

UNIT-III Material energy balance: Facility as an energy system; Method for preparing process flow; material and energy balance diagrams. Energy Action Planning: Key elements, force field analysis; Energy policy purpose, perspective, content, formulation, rectification

UNIT-IV Monitoring and Targeting: Definition monitoring & targeting; Data and information analysis. Electrical Energy Management: energy conservation in motors, pumps and fan systems; energy efficient motors.

UNIT-IV Thermal energy management: Energy conservation in boilers, steam turbine and industrial heating system; Application of FBC; Cogeneration and waste heat recovery; Thermal insulation; Heat exchangers and heat pump; Building Energy Management.

ME 801 Energy Conservation and Audit References: 
1. Murphy & Mckay, Energy Management, BSP Books Pvt. Ltd.
2. Smith CB; Energy Management Principle, Pergamon Press, New York.
3. Rajan GG, Optimising Energy Efficiency in Industry, TMH.
4. Callaghan P O, Energy Management, McGraw-Hill Book Company.
5. Amit Kumar Tyagi, Handbook on Energy Audit and Management, Tata Energy Research Institute.
6. Bureau of Energy Efficiency, Study material for energy Managers and Auditors: Paper I to V.
7. Hamies; Energy Auditing and Conservation: Method, Measurement…, Hemisphere, Washington.
8. Witty, Larry C, Industrial Enegy Management Utilisation, Hemisphere Publishers, Washington
9.Kreith & Goswami, Energy Management and Conservation Handbook, CRC Press.
RGTU / RGPV 8th Semester Web Engineering Syllabus

RGTU / RGPV 8th Semester Web Engineering Syllabus

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PROGRAMME: B.E. Computer Science and Engineering,
VIII (8th) semester COURSE CONTENTS
Course: CS802 Web Engineering

Unit-I
Introduction: Introduction, layering, DNS - encapsulation, de-multiplexing, client /server model, port numbers, standardization process, the Internet.
Link layer: introduction, Ethernet and IEEE 802 encapsulation, trailer encapsulation, SLIP, PPP- Loop back interface, MTU.
Internet protocol: introduction, IP header, IP routing, subnet addressing, subnet mask- special case of IP addresses, a subnet example.

Unit-II
Address Resolution Protocol
Introduction, an example, ARP cache, ARP packet format, ARP examples, Proxy ARP, ARP command.
RARP: Introduction, RARP packet format, RARP examples, RARP server design.
ICMP: Introduction, ICMP message types, ICMP address mask request and reply-ICMP timestamp request and reply- 4.4 BSD processing of ICMP Messages.

Unit-III
Ping Program Introduction, ping program, IP record route option, IP time stamp option.
Trace route program: Introduction, trace route program operation, LAN output, and WAN output- IP source routing option.
IP routing: Introduction, routing principles, ICMP host, and ICMP redirect errors
Dynamic Routing protocols: introduction, dynamic routing, RIP- OSPF, BGP, CIDR.
UDP: introduction, UDP header, UDP checksum, IP Fragmentation, UDP Server design.

Unit-IV
DNS Introduction- basics, message format, simple example, pointer quires, resource records, caching, UDP
TFTP: introduction, protocol, security. BOOTP: introduction, packet format, server design, through router.
TCP: Introduction, services, headers, connection establishment and termination, timeout of connection establishment- maximum segment size- half, close, state transition diagram, reset segments, simultaneous open and close- options, server design.

Unit-V
SNMPIntroduction, protocol, structure of management information, object identifiers, management information base, instance identification.
Telnet: rlogin protocols, examples, telnet protocol and examples. FTP, protocol, examples, SMTP protocols, examples, NFS, TCP/IP Applications.

References:
• W. Richard Stevens , TCP/IP Illustrated Volume , I “ The Protocols “, Addison Wesley Longman.
• Jaiswal .S, TCP\IP Principles, Architecture, Protocols And Implementation, First Edition, Galgotia Publications Pvt Ltd.
RGTU / RGPV 8th Semester ATM Networks syllabus

RGTU / RGPV 8th Semester ATM Networks syllabus

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PROGRAMME: B.E. Computer Science & Engineering,
VIII (8th) semester COURSE CONTENTS
Course: CS8301 ATM Networks


Unit-I
Introduction to ISDN, B-ISDN, B-ISDN services, ATM basics, ATM Services, Architecture of B-ISDN, virtual channel, Virtual path, ATM performance Parameters, Signaling techniques

Unit-II
ATM – performance Reference Model (PRM) layered architecture, relationship between ATM PRM and OSI reference model. Layer functions, User Network Interface (UNI), Physical layer of UNI, functions of transmission convergence sub layer, physical medium characteristic ATM layer cell headers of B-ISDN, UNI & NNI, ATM adaptation layer, operation and maintenance of B-ISDN UNI.

Unit-III
B-ISDN signaling, meta signaling, ATM adaptation layer for signaling, signaling protocols, switches & cross connects.

Unit-IV
ATM transmission network, Cell transfer functions, transmission systems, network synchronization, B-ISDN local network Topology & Technology, trunk, network structure, ATM network implementation and its equipments.

Unit-V
Evolutionary scenarios for BISDN fiber to the customer, integration of TV distribution, LAN’s, Man’s to BISDN, Voice delay & Eco problem, Tainting in BISDN, Telecommunication management networks, Gigabits LAN’s, Optical switching, ATM standardization.

References:

• Rainer Handel, Huber & Schooder ATM Network, Addison Wesley
• David E Mc Dysan, ATM Theory & application, McGraw Hill
• Tennenbaum, Computer Network
• William Stalling, An Introduction to ISDN, McMillan publishing Co., USA
RGTU / RGPV Network Security 7th Semester Syllabus

RGTU / RGPV Network Security 7th Semester Syllabus

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B.E. Computer Science & Engineering,
VII (7th) semester COURSE CONTENTS
Course : CS 7201 Network Security

Unit-I
Conventional Encryption
Convention Encryption: Conventional Encryption Model , Steganography , Classical , Encryption Techniques , Simplified DES , Block Cipher Principles , The Data Encryption Standard , The , Strength of DES , Differential and Linear Cryptanalysis , Block Cipher Design Principles , Block Cipher Modes of operation , Conventional Encryption algorithms

Unit-II
Public Key Encryption And Hash Functions
Public Key Cryptography , Principles of Public Key Cryptosystems , The RSA Algorithm , Key Management , Diffie Hellman Key Exchange , Elliptic Curve Cryptography
Message Authentication and Hash Functions
Authentication Requirements, Authentication Functions, Message Authentication Codes , Hash Functions , Security of Hash Functions

Unit-III
Hash And Mac Algorithms, MD5 Message Digest Algorithm , Secure Hash Algorithm (SHA-I) , RIPEMD , HMAC , Digital Signatures and Authentication Protocols, Digital Signatures Authentication Protocols -Digital Signature Standard

Unit-IV
Authentication Applications , IP Security , Web Security

Unit-V
Intruders, Viruses and Worms, Intruders , Viruses and Related Threats ,Firewalls, Firewall Design Principles , Trusted Systems

References: • William Stallings, “ Cryptography and Network Security”, Second edition, Prentice Hall,1999.