Mechanical Engineering (ME)

 

 

Course offering in the first semester 092 ( February 2010 ):

 

ME 201 : Dynamics

*   ABET Syllabus

 

ME 203 : Thermodynamics I

* ABET Syllabus

 

ME 204: Thermodynamics II

* ABET Syllabus

 

ME 205 : Materials Science

* ABET Syllabus

 

ME 206 : Manufacturing Processes I

* ABET Syllabus

 

ME 210 : Mechanical Engineering Drawing and Graphics

* ABET Syllabus

* Lab Manual (pdf File)

 

ME 215 : Materials Science for Mechanical Engineers

* ABET Syllabus

 

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ME 306 : Manufacturing Processes II

* ABET Syllabus

 

ME 307 : Machine Design I

* ABET Syllabus

 

ME 308 : Machine Design II

* ABET Syllabus

* Lab Manual (pdf File)

 

ME 309 : Mechanics of Machines

* ABET Syllabus

 

ME 311 : Fluid Mechanics

* ABET Syllabus

 

ME 315 : Heat Transfer

*ABET Syllabus

 

ME 316 : Thermo-Fluid Lab

* ABET Syllabus

*  Lab Manual (pdf File)

 

ME 351 : Applied Mechanical Engineering Cooperative Work

* ABET Syllabus

 

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ME 411 : Senior Design Project I

* ABET Syllabus

 

ME 412 : Senior Design Project II

* ABET Syllabus

 

ME 413 : System Dynamics and Control

* ABET Syllabus

*  Lab Manual (pdf File)

 

ME 415 : Design Project 

* …………

ME 423 : Energy Conversion

* ABET Syllabus

 

ME 427 : Turbomachinery

* ABET Syllabus

 

ME 436 : Fluid Power Systems

* ABET Syllabus

 

ME 439 : Solar Energy Conversion

* ABET Syllabus

 

ME 464 : Production Engineering II

*      ABET Syllabus

 

ME 472 : Corrosion Engineering I

* ABET Syllabus

 

ME 480 : Plastics and Plastic Processing

* ABET Syllabus

 

ME 482 : Mechanical Vibrations

* ABET Syllabus

* Lab Manual (pdf File)

 

ME 485 : Mechanical System Design

* ABET Syllabus

 

ME 487 : Mechanics of Materials

* ABET Syllabus

 

 

 

All Mechanical Engineering Courses   (Undergraduate Program )

 

 

 

 

Mechanical Engineering (ME)

( Graduate Program )

 

Course offering in the Second semester 092 ( February 2010 ):

 

ME 532 Advanced Fluid Mechanics I                                     (3-0-3)

Conservation equations for viscous fluids. Boundary layer concept. Navier-Stokes equations and some exact solutions. Stokesian flow. Laminar boundary layer equations and methods of solution. von Karman momentum integral equation. Theory of stability of laminar flows. Introduction to turbulent flow.

 

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ME 533   Ideal Fluid Flow                                                     (3-0-3)

Kinematics and dynamics of inviscid fluids in steady and unsteady motion. Two-dimensional and axisymmetric potential flows. Singularities. Complex potential and various transformation techniques. Free-stream line flow. Airfoils and wings.

Prerequisite:   ME 311 or Equivalent

 

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ME 536           Convection Heat Transfer  

Convection systems. Derivation of conservation equations and solutions for laminar and turbulent boundary layer flows. Forced convection, internal and external flows. Natural convection. Special topics and applications.

 

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ME 543 Nonlinear Finite Element Analysis (3-0-3)

 

Introduction, Finite Element Formulation. Small-Deformation Elastic-Plastic Analysis. Finite –Strain Formulation. Implementation of the Finite-Strain Formulation. Practical applications in metal forming processes and structural component design.

           

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ME 551 Continuum Mechanics (3-0-3)

 

Tensors, indicial notation, transformation of coordinates. Stresses, principal stresses. Mohr’s circles. Deformation and strain. Velocity fields and compatibility conditions. Constitutive equations. Isotropy. Mechanical properties of solids and fluids. Field equations: applications to elasticity, viscoelasticity, plasticity, and fluid mechanics.

 

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ME 572 Analysis of Manufacturing Processes (3-0-3)

 

Analytical treatment of the machining and metal-working processes. Metallurgical and economic considerations. Machine tools dynamics and vibration. Trends of current research.

 

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ME 583 Fatigue and Fracture of Engineering Materials (3-0-3)

 

Stress/Strain controlled Fatigue-Life prediction laws. Continuum fracture mechanics. Fracture modes. Fracture mechanics and microscopic plastic deformation/fracture mechanics combined approach. Cleavage, ductile fracture, fatigue, creep-fatigue and environmental cracking phenomena.

 

 

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ME 599 Seminar (1-0-0)

 

Graduate students working towards M.S. degree, are required to attend the seminars given by faculty, visiting scholars, and fellow graduate students. Additionally each student must present at least one seminar on a timely research topic. Among other things, this course is designed to give the student an overview of research in the department, and a familiarity with the research methodology, journals and professional societies in his discipline. Graded on a Pass or Fail basis.

 

ME 610           MS Thesis                                                          (0-0-6)

 

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ME 612 Phase Change Heat Transfer and Two Phase Flow (3-0-3)

 

Fundamental mechanisms of evaporation and condensation. Bubble equilibrium, nucleation criteria. Pool and flow boiling models and correlations. Two-phase flow models and governing equations. Flow regime transitions. Pressure drop calculations. Measurement techniques. Drop-wise and film-wise condensation, flow and non-flow systems. Enhanced surface boiling and condensation.

 

ME 710           Ph.D. Dissertation                                              (0-0-12)

 

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All Mechanical Engineering Courses   (Graduate Program )

 

 

Other Courses Offering in the first semester 092 ( February 2010 ):

College of Engineering Sciences  (CES):

·         Petroleum Engineering (PETE)

·         Chemical Engineering (CHE)

·         Mechanical Engineering (ME)

·         Electrical Engineering    (EE)

·         Civil Engineering (CE)

 

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College of Computer Sciences & Engineering  (CCSE):

·         Computer Engineering  (COE)

·         Systems Engineering   (SE)

·           Information and Computer Science (ICS)

 

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College of Industrial Management  (CIM)

 

·         Management Information System ( MIS )

·          Marketing  ( MKT )

·          Accounting ( Acct )

·         Finance (FIN)

·         Management ( MGT )

·         Economics  ( ECON)

 

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College of Environmental Design  (CED)

·         Architecture (ARC)

·         City & Regional Planning (CRP)

·         Construction Engineering & Management (CEM)

·          Architectural Engineering (ARE)

 

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College of Sciences  (CS)

·          Chemistry  (CHEM)

·         Earth Sciences  (ES)

·         Statistics

·         Mathematical  

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