27 courses with the subject MET, each shown exactly as we captured it from the college's catalog, with every element we hold. Where the wording looks broken, that is our reading of the catalog, not the college's text.
MET 200Materials and Manufacturing Processes ()3
Application and characteristics, both physical and chemical, of the materials most commonly used in industry as well as procedures and processes used in converting raw materials into a finished product.
A laboratory course dealing with the standard methods of inspecting and testing materials used in engineering applications with emphasis on laboratory reports, including presentation and interpretation of experimental data. Pre- or corequisite: ENGT 220
A fundamental treatment of coplanar and three-dimensional kinematics and kinetics of particles and rigid bodies, including relative motion, mass moment of inertia, Newton's laws, work and energy and impulse and momentum. 200 or ENGT 200
A grade of C or better in MATH 211, and MET 210 or CET
MET 320Design of Machine Elements ()3
The course provides a comprehensive overview of mechanical design principles and stress analysis in design of mechanical drive systems (such as belts, chains, and gears), shaft design, bearings, and fasteners, as well as the integration of electric motors and motion control elements like clutches and brakes. The course emphasizes practical design applications in design of machine elements.
The study of fluid statics and dynamics, including momentum, energy, Bernoulli's equation, laminar and turbulent fluid flow and friction in pipes, fluid machinery, and open-channel flow. 923 MDTS - Medical Diagnostic and Translational Sciences
Experimental study of applied fluid mechanics, its fundamental concepts including fluid statics, Bernoulli's equation, pipe friction, flow measuring devices, and fluid machinery. Includes report writing, presentation and interpretation of experimental data. Pre- or corequisite: MET 330
Total Credit Hours 12 en Certain substitutions are possible if suitable justification is provided. For completion of a minor, a student must have a minimum overall cumulative grade point average of 2.00 in all courses specified as a requirement for the minor exclusive of lower-level courses, prerequisites and corequisites and complete at least six hours in upper-level courses in the x minor requirement through courses offered by Old Dominion University. l
May be repeated for credit. Available for pass/fail grading only. Student participation for credit based on the academic relevance of the work experience, criteria, and evaluative procedures as formally determined by the department prior to the semester in which the work experience is to take place. (offered fall, spring, summer) departmental Cooperative Education policies; Student participation in a professional work experience; Approval for enrollment and allowable credits are determined by the department; Additional support may be provided by the Monarch Internship and Co-Op Office in at least one semester prior to enrollment
Permission of the departmental chair in accordance with
MET 368Internship ()1-3
Available for pass/fail grading only. Academic requirements will be established by the department and will vary with the amount of credit desired. Allows students to gain short duration career-related experience. be provided by the Monarch Internship and Co-Op Office in the semester prior to enrollment
A study of the integrated modeling and optimal design of a physical system, which includes sensors, actuators, electronic components, and its embedded digital control system. Includes simultaneous optimal design practice with respect to the realization of the design specifications related to different engineering domains.
The design and application of refrigeration and air conditioning systems. Studies are made of compressors, condensers, evaporators, psychometric processes, load calculations and air distribution systems. High performance vapor compression systems, absorption systems and other cycles are analyzed.
Reactor physics principles as applied to the design and operation of various types of commercial nuclear power reactors. Topics include sources of radiation and interaction with matter, neutron interactions, diffusion theory, and reactor kinetics.
Complete study of the nuclear fuel cycle, from mining through fabrication, fuel management in an operating commercial power reactor, spent fuel management, and fuel reprocessing, with emphasis on chemical engineering considerations.
This course includes: fundamental principles of naval architecture including nomenclature, geometry, stability, hydrostatics, structures, and motions; ship design processes; and a basic introduction to shipboard systems such as HVAC, refrigeration, power generation, propulsion, hydraulics, electronics, cargo handling systems, seawater systems, freshwater systems, and fuel, lube and other oil systems.
This course provides an in-depth look at shipboard systems and introduces topics such as basic shipboard specifications, design requirements, systems, and operations. Concepts related to digital threads and digital twin in shipbuilding are covered.
This course looks at maintenance systems: predictive, preventative and corrective; large scale maintenance systems, principles of reliability engineering, logistics: planning for maintenance and repair, using and ordering spare parts, technical manuals, system specifications, and operations. Modern tools such as AI are included.