General Chemistry
CHEM1101
Why teach chemistry to engineers? Matter-Its properties and measurement. Uncertainty and significant figures. Atoms and atomic theory. Atomic mass and mole concept. Chemical compounds. Molecular and ionic compounds. Oxidation states. Chemical reactions. Stoichiometry. Chemical reactions in solutions. Limiting reactant. Introduction to reactions in aqueous solutions. Precipitation, acid-base, and oxidation-reduction reactions. Titrations. Gases and gas laws. Ideal gas equation. Gases in reactions. Mixtures of gases. Kinetic molecular theory. Heat. Work. Internal Energy. Enthalpy. Electrons in atoms. Electromagnetic radiation. Atomic spectra. Quantum theory. Electron configurations. The periodic table and some atomic properties.
AKTS
5Kredi
3Saatler
(3 + 0 + 0 )Fundamentals of Electrical and Electronics Engineering
ELEC2309
Electrical circuits. Kirchhoff’s laws and circuit components. Electrical power and energy. Resistive circuit analysis. Solutions of first and second order dynamic circuits. Sinusoidal steady-state analysis of circuits. Complex active and reactive powers. Three-phase circuits. Operational amplifiers. Semiconductor elements: Diodes and transistors. Amplifier circuits.
AKTS
5Kredi
3Saatler
(3 + 0 + 0 )Engineering Drawing
MECH1120
To introduce traditional and modern engineering drawing and their applications by using an advanced computer aided drawing tool (software).
AKTS
6Kredi
4Saatler
(2 + 4 + 0 )Computational Methods in Engineering
MECH2120
Introduction to MATLAB. MATLAB environment and working principle. Functions and applications. Matrices and solution methods. Graphical solutions. User-defined functions. User controlled input-outputs. Logic functions. Calculations based on matrices. Advanced graphical methods. Numerical methods; numerical diffrenciation and integration, numerical solving linear and non-linear equations. Symbolic mathematics.
AKTS
6Kredi
4Saatler
(3 + 2 + 0 )Measurements and Instrumentation
MECH3111
Fundamental engineering measurements. Sensors and instrumentation. Uncertainty analysis and assessment of results statistically. Presentation of results and reporting
AKTS
3Kredi
2Saatler
(1 + 2 + 0 )Mechanical Engineering Laboratory
MECH3122
Principles of experimental design, Conduct, analyze and present the results of experiments about structural analysis, thermodynamics, heat transfer and control of dynamic systems
AKTS
3Kredi
2Saatler
(1 + 2 + 0 )Machine Design-I
MECH3211
Fundamentals of mechanical design. Machine components and their applications. Welded, brazed and riveted joints. Shaft-hub connections. Threaded joints and power screws. Pins, knuckles, shafts, springs, couplings and clutches. Lubrication theory and its applications. Sliding and rolling bearings. Gears and gear drives. Spur, helical, bevel and worm gear mechanisms. Belting and chain drives.
AKTS
6Kredi
4Saatler
(3 + 2 + 0 )Machine Design-II
MECH3222
Bearing arrangements, rolling bearings, design principles of supporting shafts and axles using rolling bearings. Linear guidance systems. Fluid film theory, hydrodynamic and hydrostatic bearings. Gears, spur gear kinematics, profile shifted gears, planetary gear drives. Sealing technology, chain drives.
AKTS
6Kredi
4Saatler
(3 + 2 + 0 )Theory of Machines
MECH3244
Mechanisms and element pairs. Kinematic chains. Kinematic analysis and synthesis of planar mechanisms. Dynamics of machines. Force analysis of machines. Mass balancing in the machines. Undamped, damped and forced vibrations of single degree of freedom systems. Vibration measuring instruments. Vibration control and isolation.
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )Fluid Mechanics
MECH3311
Fundamental principles of fluid mechanics and their application to engineering problems. Fluid statics. Fluid flow concepts. Control volume analysis. Conservation equations and applications. Dimensional analysis and similitude. Viscous flow. Laminar and turbulent flows. Internal and external flow applications.
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )Heat Transfer
MECH3322
Steady and transient one and multi-dimensional heat conduction in systems: numerical methods and special applications. Internal and external laminar and turbulent forced convection, natural convection and condensation. Heat transfer by radiation. Heat exchangers and basics of heat transfer system design.
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )Modelling and Control of Dynamic Systems
MECH3422
Introduction to system modeling, system response and control. Laplace Transform. Transfer functions and block diagrams. Basic automatic controllers. Modeling of mechanical electrical and electronic systems. System response analysis. Routh stability criteria. Feedback control systems. System types. Principles of controller design. Root-Locus analysis. Frequency response analysis.
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )Summer Practice-II
MECH3910
It is realized in an industrial corporation which conducts “Design, Research & Development and organizational” activities in its structure for minimum 20 workdays during summer vacation. Students also observe organizational functioning and management activities in the corporation and report the performed activities according to a format determined by Mechanical Engineering Department. The language of the report is Turkish and it is English for foreign students and/or the activities performed abroad. (This is a “Pass/Fail” type of activity and achievement will not be evaluated by letter grades.)
AKTS
1Kredi
0Saatler
(0 + 0 + 0 )Thermo-Fluid System Design
MECH4330
under construction
AKTS
5Kredi
3Saatler
(2 + 2 + 0 )Graduation Design Project
MECH4902
The objective in this project is to design a system, component, or process to meet desired needs. It is a decision-making process (often iterative), in which the basic science and mathematics and engineering sciences are applied to convert resources optimally to meet a stated objective. Among the fundamental elements of the design process are the establishment of objectives and criteria, synthesis, analysis, construction, testing and evaluation. The Project must also include the most of the following features: • Development of student creativity,• Use of open-ended problems, • Development and use of modern design theory and methodology,• Formulation of design problem statements and specification,• Consideration of alternative solutions,• Feasibility considerations, production processes, Further it is essential to include a variety of realistic constraints, such as economic factors, safety, reliability, aesthetics, ethics and social impact. The information about innovation, enterpreneurship, sustainable developent, engineering standards and intellectual property is also given in lectures.
AKTS
6Kredi
3Saatler
(0 + 0 + 0 )Area Elective-I
MECH-AE-I
Area Elective-I
AKTS
5Kredi
3Saatler
(3 + 0 + 0 )Engineering Mechanics-I
MECT2211
Principles of solid mechanics, vectors, forces, equilibrium, structural analysis, internal loadings, kinematics of a particle, planar kinematics of a particle, planar kinematics of a rigid body.
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )Engineering Mechanics-II
MECT2222
Planar Kinematics of a rigid body, moments of inertia, ad angular acceleration, rigid body translation: force and acceleration, work, energy, mechanical vibrations, damped and undamped vibrations, Basics of mechanics of materials, mechanical properties, force and stress, axial loading, torsion, Shear, bending, torsion and combined stress, Mohr’s circle, deformation, statistically indeterminate systems, buckling of columns
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )Materials and Manufacturing
MECT2520
Engineering materials and their properties. Crystal structures and defects. Solid state diffusion. Elastic and plastic deformation of materials. Phase concept and phase diagrams. Fe-C phase diagram. Phase transformations and TTT Diagrams. Basic heat treatments. Engineering materials: metals, polymers, ceramics and composites. Principles of corrosion and protection. Basics of the conventional manufacturing processes for metals: casting, metal forming, machining, welding and powder metallurgy. Production reporting.
AKTS
6Kredi
4Saatler
(4 + 0 + 1 )Fundamentals of Thermal Sciences
MECT3322
Fundamentals and concepts of thermodynamics. Applications of first and second laws of thermodynamics to closed systems and flow processes. Thermodynamics property tables and charts. Power cycles. Fundamentals of heat transfer. Conduction, convection and radiation. Applications of knowledge of thermodynamics and heat transfer to design and analysis of automotive and mechatronics systems
AKTS
5Kredi
3Saatler
(3 + 0 + 1 )