Fluid Mechanics for Mechanical Engineers. engaged in career and professional development through self-study, continuing education, or graduate studies in engineering or other professional fields. ME 243. Motorola - Semiconductor Division, Sendai, Japan September 1985 - July 1988 Reverse design project engineering investigating the effects of variations in geometry, dimensions, and material selection. in the USACalifornia State University Sacramento is a very large public college offering a number of disciplines including engineering programs and located in Sacramento, California.The college was founded in 1947 and is presently offering bachelor's and master's degrees in 6 engineering programs. Stability and control. ME 123. 1 - 3 Units. ME 236. Prerequisite(s): ENGR 6, ME 105 and ME 116. Generation of FEA models using computers. 3 Units, Prerequisite(s): ENGR 6 and ME 116, or graduate-level status. Study of forensic engineering using state of the art technology. Two hours lecture, three-hour lab. 1 - 6 Units. Study of tires, drivetrain and gear boxes in ground vehicles. ME 251. Class Schedule For Mechanical Engineering - Spring2021. The Master of Science program in Mechanical Engineering prepares students for leadership in the practice of Mechanical Engineering. 2 Units. Emphasis on the influence of processing and fabrication on the properties of metals, ceramics, polymers and composites as related to the overall design process. Fundamentals of structure, processing and properties of metals and metal alloys with emphasis on relationships between them. Applications will be drawn from a variety of science and engineering areas. ME 176. Introduction to Solid Modeling and its application to mechanical product design. Modeling and Simulation of Mechatronics and Control Systems. Biomechanical response to impact, and tolerance levels. ME 106. Prerequisite(s): Open to students who have advanced to candidacy and have secured approval of a Thesis proposal form one full semester prior to registration. 3 Units. SAC Engineering: Mr. 3 Units, General Education Area/Graduation Requirement: Further Studies in Area B (B5). Advanced Vibration Theory. ME 128. Vehicle Crash Reconstruction. ME 296U. ME 132. ME 140. Use of mathematical models for the generation of equations of motion for mechanical and electrical systems. This course will prepare students for engineering research by introducing them to how to identify, plan, conduct, and present a research project as well as research methods, literature review process, research ethics, writing proposal, writing technical reports, and oral and poster research presentations. Advanced Solid Modeling. Faculty members have backgrounds in Mechanical, Aeronautical, Manufacturing, and Materials Science. ME 136. Students will be exposed to a variety of possible thesis topics. The Engineering Associate in Science degree is designed to qualify the student to transfer at the upper-division level to an engineering program at a four-year institution. Various topics in product and system design including creativity, visualizations and communications, human factors, design for X methodology decision science, economics, product design and robust quality design. Study of natural frequencies, eigenvectors, free and forced response, modes of vibration and vibration control and isolation. Forensic engineering to determine the dynamic forces that cause injury in different situations. 3 Units. Study of solar thermal heat and power and energy storage including the characterization, theory, operation, analysis and modeling of solar thermal and energy storage systems. Manipulator kinematics, trajectory planning and controller design, design of end effectors and actuators, sensors, programming languages, and machine vision. Riverside Hall, Development of computer models and comparison of cycles in terms of applications to land, marine, and aerospace propulsion. Fundamentals and applications of stochastic processes for engineers, including a review of engineering statistics, autoregression moving average (ARMA) models, characteristics of ARMA models, ARMA modeling and forecasting, and transformation from discrete models to continuous models. ME 154. ME 233. Introduction to state variable feedback control systems. ME 180W. 3 Units, Prerequisite(s): Thermodynamics (ENGR 124) and Thermal-Fluid Systems (ME 128). Fundamentals of structure, processing and properties of engineering ceramics with an emphasis on the relationships between them. Research Methodology. Engineering Research Methodology and Communication for Undergraduate Students. Virtual design and manufacturing and agile manufacturing will also be discussed. Advanced Computer-Aided Product Design. ME 196M. ME 296L. ME 121. 3 Units. Solar Energy, Geothermal Energy, and Bioenergy Systems. Fundamentals and basic laws of radiative transfer. ME 196F. Modeling and Simulation of Mechatronics and Control Systems. Development of the differential equations and initial and boundary conditions. Recent improvements and new developments in cooling and heating equipment are studied in detail. ME 138. ME 182. Computer analysis, synthesis and modeling of physical systems including single and multiple degree of freedom, and linear/nonlinear systems. Computer Controlled Manufacturing Processes. ME 76. Basic principles of heat transfer, including processes of conduction, convection, radiation, evaporation and condensation. 1 Unit. 3 Units, Term Typically Offered: Fall, Spring, Summer. Prerequisite(s): ENGR 132, graduate status. Finite Element Modeling in Computer-Aided Design. 3 Units. Wind, Hydro and Ocean Energy. 2. School of Engineering San Francisco State University Science Building 1600 Holloway Avenue San Francisco, CA 94132. Mechanical Properties of Materials Workshop. 3 Units. Fracture Mechanics in Engineering Design. Prerequisite(s): ENGR 132, ME 105 and ME 126. Topics include problem formulation, algorithm development, advanced graphical user-interface development, and generating simulations using software packages such as Simulink. Requires satisfactory completion of the work assignment and a written report. Engineering Research Methodology and Communication for Undergraduate Students. Analyzes convective heat and mass transfer. ME 173. 1 Unit. 3 Units. Assembly tolerance analysis using standard industry practices; application of geometric dimensioning techniques to tolerance analysis; drawing practices for indicating dimensional tolerances; statistical techniques; tolerance allocation. Mechanical properties of materials, with special attention to dislocations/defects and deformation and fracture control mechanisms. Prerequisite(s): ME 126, ENGR 202; ENGR 202 may be taken concurrently. Introduction to digital control. Motion and Dynamic Analysis using Solid Modeling. Concentration on fundamental thermodynamic principles, modern design features and non-technical aspects of each technology. 3 Units. Advanced CAD for Aerospace Applications. ME 137. Mechanical Engineers develop ways to safely and sustainably use the materials and forces of nature for the benefit of humankind. Accident Biomechanics. Credit given upon successful completion of a Master's Thesis (4 - 6 units; maximum 6 units). Absorbing, emitting and scattering media. ME 105. Professional Practice. ME 296O. Theory and application of temperature, pressure, flow, and velocity instruments, introduction to experiment design, errors, uncertainty and data acquisition, data analysis and presentation. ME 285. Human factors that influence the biomechanical reactions of people with their vehicles and the environment. Advanced topics in thermodynamics including applications of fundamental postulates to chemical, mechanical, magnetic and electric systems, theory of fluctuations, and irreversible thermodynamics. Applications of principles, including analysis and design of stationary and mobile powerplants, waste management, and fire safety. 3 Units. Lecture one hour. Students work in small groups, interacting with product users, vendors, technicians, and faculty advisors. Quantitative treatment of materials selection for engineering applications. Radiation transfer between surfaces. Kinematics and kinetics of mechanisms in two and three dimensions with applications to suspensions, steering mechanisms. Introduction to analytical and systematic design methodologies in creative and quality product design. ME 116 may be taken concurrently. Discussion of the relationship between design parameters and materials properties. 3 Units. Rotating reference frames. Students will be required to complete an essay concerning aspects of engineering research. Photographic and video analysis, computer graphics, and computer simulations. Introduction to Test Automation. Photographic and video analysis, computer graphics, and computer simulations. Discrete and distributed parameter systems with linear and nonlinear characteristics. Topics include refrigeration cycles, heating and cooling load calculations, psychrometrics, solar heating and cooling component, and system design. Monitoring tool conditions and manufacturing processes using neural networks so as to achieve high quality, high efficiency, and automation. Note: Course may be repeated for no more than 6 units total. Behavior of dynamic systems: motion about equilibrium points, stability, Lyapunov's direct method. Properties of surfaces, spectral characteristics and configuration factors. Review of structural analysis: elasticity, virtual work and energy methods, torsion of solid sections, bending of plates, columns. 3 Units. Introduction to Flight Dynamics. ME 276. Introduction to Computational Fluid Dynamics. Computer based controls and energy management systems are discussed and demonstrated. Design of Multi-Input/Multi-Output controllers using linear quadratic regulator method and advanced controls architectures. 2 Units. ME 275. Wind, Hydro and Ocean Energy. 3 Units. Design of compensating controls using state of the art software and automation tools. Mechanical Properties of Materials Workshop. Intelligent Product Design and Manufacturing. 3 Units. Study of seat belts, airbags, and electrohydraulic stabilizers. 1 Unit. Engineering analysis and design of structural members, and machinery components using FEA models. This course examines the methods of systems design and analyses required to design and optimize the space mission over its life cycle. Quality product design including design of experiments, robust design techniques, and design optimization. Optimization of mechanical elements and assemblies to meet design requirements, material characteristics and geometry. Prerequisite(s): Permission of Graduate Coordinator or Department Chair. Air Resources Engineering. Elastic and inelastic failure criteria, energy methods, effects of temperature, stress concentrations, and fatigue are discussed. Introduction to Composite Materials. ME 299. Introduction to computer aided tolerance analysis. Project Engineering II. Lecture. Analyzes stream functions and the velocity potential, and vorticity dynamics. 3 Units. 3 Units. Sac State students interested in taking Mechanical Engineering online courses and classes can browse through UniversityParent’s directory of online courses to find top online college courses being offered from top universities, including engineering, math, science and more. Mechanical Engineering involves the design of all types of machines and equipment including vehicles used in ground, air, and space transportation; machines for the conversion of fuels into energy; food processing; consumer products; robots; biomedical devices; the machines used to manufacture all of the above; and the climate control of buildings. Linearization of the equation of motion about reference flight (trim) condition, and separation into longitudinal and lateral equations of motion. Computer use in gas dynamics. ME 241. Prerequisite(s): ME 114, ME 171, or CE 166. Applications of Finite Element Analysis. 3 Units. ME 141. ME 137. Study of the Event Data Recorders (EDRs), data analysis and verification with real cases using classical reconstruction techniques, and the use of computer simulations in two and three dimensions. Introduction to design of machine components; application of analytical methods in the design of complex machines. 1 Unit. 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