Showing posts with label BCE-I/I. Show all posts
Showing posts with label BCE-I/I. Show all posts

WORKSHOP TECHNOLOGY | SYLLABUS | IOE | FIRST YEAR

WORKSHOP TECHNOLOGY

ME 453
Lecture  :   1  
Year: I
Practical  :   3
Part: I/II

Course Objective:
The subject aims at imparting knowledge and skill components in the field of basic workshop technology. It deals with different hand and machine tools required for manufacturing simple metal components and articles.

Objectives:
After the completion of the course, the student shall be able to
1.  Practice workshop safety rules effectively
2.  Acquire knowledge and use simple hand tools
3.  Acquire knowledge and use simple measuring and gauging instruments
4.  Operate simple drilling machines for producing small holes
5.  Operate various machine tools for producing simple metal components and articles
6.  Acquire knowledge and practice on foundry, forging and welding

1.  General safety Considerations    (2 hours)
1.1.  Bench Tools                  
1.2.  Machinist’s Hammers
1.3.  Screw Drivers
1.4.  Punches
1.5.  Chisels
1.6.  Scrapers
1.7.  Scribers
1.8.  Files
1.9.  Pliers and Cutters
1.10.  Wrenches
1.11.  Hacksaw
1.12.  Bench Vise
1.13.  Hand drill
1.14.  Taps and Dies
1.15.  Hand Shears
1.16.  Rules, Tapes and Squares
1.17.  Soldering Iron
1.18.  Rivets

FUNDAMENTALS OF THERMODYNAMICS | SYLLABUS | IOE | 2066

FUNDAMENTALS OF THERMODYNAMICS AND HEAT TRANSFER

ME 452
Lectures  :  3
Year  : I
Tutorial  :  1
Part  : I/II
Practical  :  1.5

Course Objectives:
After the completion of this course, students will able to understand basic concepts, laws of thermodynamics and heat transfer and their applications as well.

1.  Introduction   (4 hours)
1.1.  Definition and Scope of Engineering Thermodynamics
1.2.  Value of energy to society
1.3.  Microscopic versus Macroscopic Viewpoint
1.4.  Concepts and Definitions
1.4.1.  System, Surroundings, Boundary and Universe; Closed Systems, Open Systems, and Isolated Systems
1.4.2.  Thermodynamic Properties: Intensive, Extensive and Specific Properties
1.4.3.  Thermodynamic Equilibrium
1.4.4.  State, Process, and Path
Cyclic Process, Quasi-equilibrium Process, Reversible and Irreversible Process
1.4.5.  Common Properties: Pressure, Specific Volume, Temperature
1.5.  Zeroth Law of Thermodynamics, Equality of Temperature  

2.  Energy and Energy Transfer  (3 hours)
2.1.  Energy and its Meaning
2.2.  Stored Energy and Transient Energy; Total Energy
2.3.  Energy Transfer
2.3.1.  Heat Transfer
2.3.2.  Work Transfer
2.4.  Expressions for displacement work transfer  
2.5.  Power

Engineering Chemistry | Syllabus | Marking Scheme | 2066

ENGINEERING CHEMISTRY
SH 453
Theory  :  3
Year   : I
Tutorial  :  1
Part  : I/II
Practical  :  3

Course objectives:  
To develop the basic concepts of Physical Chemistry, Inorganic Chemistry and Organic Chemistry relevant to problems in engineering.

1.  Electro-chemistry and Buffer   (6 hours)
1.1.  Electro-chemical cells
1.2.  Electrode Potential and Standard Electrode Potential
1.3.  Measurement of Electrode Potential
1.4.  Nernst equation
1.5.  EMF of Cell
1.6.  Application of Electrochemical and Electrolytic cells
1.7.  Electrochemical Series and its Application
1.8.  Buffer: its type and mechanism
1.9.  Henderson’s equation for pH of buffer and related problems
1.10.  Corrosion and its type
1.11.  Factors influencing corrosion
1.12.  Prevention of corrosion

2.  Catalyst  (4 hours)
2.1.  Introduction
2.2.  Action of Catalyst (Catalytic Promoters and Catalytic Poisons)
2.3.  Characteristics of Catalyst
2.4.  Types of Catalyst
2.5.  Theories of Catalysis
2.6.  Industrial Applications of Catalysts

COMPUTER PROGRAMMING | C | Syllabus | Marking Scheme | IOE |

COMPUTER PROGRAMMING
CT 401
Lecture : 3 
Year : I
Part  : I
Practical : 3

Course Objective:      To acquaint the student with computer software and high level programming languages. Emphasis will be given on developing computer programming skills using computer programming in C and FORTRAN languages.
1.              Overview of computer software & programming languages  (2 hours)
1.1.       System software
1.2.       Application software
1.3.       General software features and recent trends
1.4.       Generation of programming languages
1.5.       Categorization of high level languages

Engineering Mathematics I | BE Syllabus | Marking Scheme

ENGINEERING MATHEMATICS I
EG ……SH

Lecture:  3 
Year: I
Tutorial: 2
Part: I
Practical :

Course Objectives:     
To provide students a sound knowledge of calculus and analytic geometry to apply them in their relevant fields.

1.          Derivatives and their Applications   (14 hours)
1.1.       Introduction
1.2.       Higher order derivatives
1.3.       Mean value theorem
1.3.1.     Rolle’s Theorem
1.3.2.     Lagrange’s mean value theorem
1.3.3.     Cauchy’s mean value theorem
1.4.       Power series of single valued function
1.4.1.     Taylor’s series
1.4.2.     Maclaurin’s series
1.5.       Indeterminate forms; L’Hospital rule
1.6.       Asymptotes to Cartesian and polar curves
1.7.       Pedal equations to Cartesian and polar curves; curvature and radius of curvature