Prerequisite: ME 510 and a course in differential equations. Prerequisite: ME 311 or equivalent. LEC. ME 808. ME 965. 3 Hours. The primary course objective is to develop the students' ability to apply engineering fundamentals to the design and operation of alternative energy systems. LEC. Principles of Continuum Mechanics for solids, fluids, and gases. An analytical or experimental study of problems or subjects of immediate interest to a student and faculty member and which is intended to develop students capability for independent research or application of engineering science and technology. Topics include the nature of ethics, the roles of the scientist as a reviewer, entrepreneur, employer and teacher, research ethics in the laboratory, social responsibility and research ethics regulation. Formulation and solution of time dependent linear and nonlinear field problems using finite element techniques. The PDF will include all information unique to this page. ME 101. Continuum Mechanics I. Virtual Tour . A complete list of current approved Advanced Engineering Electives can be found at the KUME office. Catalytic Exhaust Aftertreatment Modeling. The focus of the course is on fundamentals of materials for energy applications. KU offers an undergraduate certificate and an accelerated pathway to a graduate degree through the chemical or mechanical engineering programs. Study abroad is strongly encouraged and generally does not delay students' graduation since they will be taking engineering classes abroad. ME 361. Design Project Option A. LEC. The student must have a faculty sponsor and submit a proposal in writing stating the objective of the research, the planned research method that will be used, and the method of reporting the results. Fluid flows in physiology, drug delivery, and biotechnology are investigated at a variety of scales, ranging from subcellular to organ groups. Design and development of a mechanical system related to biomechanics that has been investigated in ME 633 - Basic Tissue Mechanics and Biodynamics. Bioengineering Brochure (PDF). LEC. Mechanics of Materials. 3 Hours. • A total of 128 credit hours is required for the B.S. These concepts are applied to flow and nonflow systems including power and refrigeration cycles. Students interested in a career in biomechanics can obtain a concentration in the area which will be noted on the student's BSME transcript. 3 Hours. Development of complete mathematical models and solutions of selected model problems. ME 862. Lawrence, KS 66045. Advanced Fluid Mechanics. Human body segment kinematics and joint kinematics are analyzed. 3 Hours. Students will learn about tissue properties, appropriate constitutive models and determination of stresses and strains in tissues and structures under normal loading conditions. Other classes that strengthen a student’s program of study will be considered and require advisor and department head approval. ME 644. Includes laboratory experiments presenting selected industrial applications. Research will involve defining the problem, developing a research methodology, applying the research methodology and gathering data, analyzing and interpreting the data, and presenting the results of the research. ME 882. Equivalent SAT scores may be substituted. Establishment of specifications and consideration of realistic constraints such as safety, ergonomics, economic factors, design impact, aesthetics, and reliability are required. Topics include theories of failure and energy methods. The Engineering Career Center LEC. Emphasis on the analysis of kinematics and dynamics of rigid mechanical multibody systems undergoing large overall motion using interactive computer simulation programs. An overview of the U.S. energy system and world-wide energy consumption is included to provide context. Design for Manufacturability. Primary focus of course on vehicle design and performance. Mechanical Engineering Analysis. AEROSPACE ENGINEERING KU Aerospace Engineering is one of the top programs in the world in aircraft and engine design education. Lectures and laboratories on the basics of measurement, instrumentation, data acquisition, analysis, design and execution of experiments, and written and oral reports. in Mechanical Engineering. Special Topics: _____. The fundamentals of the finite-difference method are presented and applied to the formulation of numerical models for heat and momentum transfer. LEC. LEC. Prerequisite: A course in differential equations. 1-5 Hours. ME 696. LEC. ME 211. Introduction to Digital Computational Methods in Mechanical Engineering. Design and analysis of mechanisms composed of linkages, cams, and gears. Prerequisite: ME 412 and ME 510 or permission of instructor. Biomedical Product Development. Surface and Interface Science plays a crucial role in various industrial, environmental, and biomedical areas, as well as in emerging technologies. The department offers funding opportunities for first-year graduate students. Mechanical engineers apply fundamental principles to develop, design, manufacture, and test machines and other mechanical devices. ME 767. Advanced Microprocessor Applications. **GE3S must be ECON 104, 142, or 144. in mechanical engineering as well as a bachelor of business administration degree. 3 Hours. A completed, working project with a design file documenting all aspects of the project development must be submitted. Basic Engineering Thermodynamics. Finite element method for solid mechanics, heat transfer, fluid mechanics, and dynamics. ME 720. Corequisite: ME 455. ME 751. Radiative Heat Transfer. Give Opportunity. After completion of the project, a report is required. Prerequisite: ME 510, ME 320, Physics 212 or permission of instructor. 3 Hours. Emphasis on spark ignition and compression ignition engine analysis. Areas of study in Mechanical Engineering include: Please review the corresponding pages for admission to the MS or PhD programs: All applicants are considered for scholarships, fellowships, and Graduate Teaching Assistant (GTA) positions upon submission of a complete application. Advanced Mechanical Engineering Problems. qualified to work at the most prestigious research institutions and universities in the world. Topics covered include history of electrified vehicles, vehicle modeling, battery chemistry, and electric motors. Physiological System Dynamics. Advanced Control Systems. 2-3 Hours AE61. Independent Investigation. After completion of the course, a student is expected to: 1) understand the respective work mechanisms, advantages and disadvantages of batteries, fuel cells and ultra-capacitors, 2) understand the mathematical modeling methodologies for batteries, 3) understand the key estimation/control methods and tools, and 4) build effective solutions for energy storage management problems leveraged with estimation/control theory. LEC. Maximum credit toward any degree is three hours unless waived in writing by the departmental chairperson. Prerequisite: CHEM 150 or CHEM 130 or CHEM 170 or consent of instructor. ME 836. Corequisite: ME 628. Advanced courses on special topics of current interest in mechanical engineering, given as the need arises. Prerequisite: ME 311 and ME 320 or equivalent. Statics and Introduction to Mechanics. Prerequisite: ME 312. Prerequisite: Corequisite: ME 320. Prerequisite: ME 311. A recommended 5-year course sequence is also available. 3 Hours. 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