The 8-Minute Rule for Mechanical Engineering - College of Science and - UMN-CSE

The 8-Minute Rule for Mechanical Engineering - College of Science and  - UMN-CSE

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Common power producing cycles and fridges.  This Is Noteworthy  and damp air applications. (Course Profile) 240 Introduction to Dynamics and Vibrations Prerequisite: Physics 140 & 141, and preceded or accompanied by (Math 216 or Mathematics 156.) Minimum grade of "C" required for enforced requirements. (4 credits) Vector description of force, position, velocity and acceleration in repaired and moving referral frames.


Energy and momentum ideas. Euler's formulas. Minute of inertia homes. The simple oscillator and its applications. (Course Profile) 250 Design and Production I Requirement: (Math 116 or Mathematics 121 or MATH 156) and (ENGR 101 or EECS 183 or ENGR 151). Minimum grade of "C" needed for enforced requirement. (4 credits)Basics of mechanical style: visual thinking, engineering drawing and device anatomy.


Usage of computers in different stages of style and production. Exposure to CAD systems and basic machine store strategies. Design/manufacturing job. 3 hours lecture and 2 hours laboratory. (Course Profile) 290 RISE 2 Research Study, Innovation, Service and Entrepreneurship Requirement: approval of instructor. (1-3 credits)Specific or group project work where student(s) should use mechanical engineering principles to research, innovation, service or entrepreneurship projects.


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(Course Profile) 305 Intro to Finite Components in Mechanical Engineering Prerequisite: MECHENG 211, Mathematics 216. (3 credits) Introduction to theory and practice of the finite aspect technique. One-dimensional, two-dimensional and three dimensional aspects is studied, including structural aspects. Primary fields of applications are strength of materials (deformation and stress analysis) and dynamics and vibrations.


Two hour lecture and one hour lab. (Course Profile) 311 Strength of Materials Requirement: MECHENG 211, Mathematics 216. (3 credits) Energy techniques; buckling of columns, consisting of approximate approaches; flexing of beams of asymmetrical cross-section; shear center and torsion of thin-walled areas; membrane tensions in axisymmetric shells; elastic-plastic bending and torsion; axisymmetric bending of circular plates.


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Minimum grade of "C" needed for enforced prerequisites. (3 credits) Fluid statics; preservation of mass, momentum and energy in fixed and moving control volumes; constant and unstable Bernoulli's formula; differential analysis of fluid circulation; dimensional analysis and similitude; laminar and rough flow; border layers; lift and drag; applications to mechanical, biological, environmental, and micro-fluidic systems (Course Profile) 335 Heat Transfer Requirement: MECHENG 320.