Microscale mechanisms and their relation to macroscopic behavior and mathematical constitutive modeling for advanced material systems. Emphasis on polymer viscoelasticity, shape memory materials, ...
Strategies and methods of designing, manufacturing, and testing of mechanical products. Engineering drawing and CAD, design methods, material properties, failure modes, selection methodology, ...
Use of computers to improve productivity and reduce cost in manufacture of discrete parts and assemblies. Manufacturing automation: sensors, actuators, and computers for automation; principles of ...
Thermodynamics concerns the foundation of all branches of physical sciences. Therefore, this is a required course for all mechanical engineering students. Also, the students of all other branches of ...
Course for engineering, biology, and physics students who want to learn about the mechanics of molecules as it applies to the functioning of cells. The inner workings of biological machinery has ...
Elementary classical thermodynamics, applications of the first law and the second laws of thermodynamics to power and refrigeration cycles, mixtures and solutions, thermodynamic relations, chemical ...
Learn theory and fundamental principles of molecular simulation techniques nanomechanics and biomechanics. Apply molecular simulation tools to explain nanoscale solid and fluid mechanics phenomena ...
Geometric modeling, dimensioning systems, tolerances, design for manufacture, programming of machine tools. Team problem solving in a design and manufacturing technology environment. ME 340-2 is the ...