Advanced topics in computer-aided design for mechanical product design. 3 Units. Development of computer models and comparison of cycles in terms of applications to land, marine, and aerospace propulsion. Theory and analytical methods in steady-state and transient heat conduction. Riverside Hall, The PDF will include all information unique to this page. ME 273. Introduction to Tolerance Analysis. Room 4024 Euler angles. The mathematical analysis of incompressible turbulent flows; development of Reynolds stress equations, turbulent boundary layer equations, turbulent flow in pipes and channels, and turbulent jets and wakes. Accident Biomechanics. 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. Used various manufacturing processes to fabricate a … Solar Thermal and Energy Storage Systems. ME 236. ME 108. Theoretical analysis of energy transfer between fluid and rotor; principles of axial, mixed, and radial flow compressors and turbines. ME 296S. Note: Units may not be applied toward meeting the 30-unit requirement of the degree. Model generation using computer graphics. Stability and control. Failure mode analysis, theories of failure, yield, fracture, deflection, and fatigue analysis of machine elements. California State University-Sacramento offers on-campus housing. Power conversion hardware used in electromechanical systems. ME 186. ME 180. Combined conduction, convection and radiation. Forensic engineering to determine the dynamic forces that cause injury in different situations. Space Systems Engineering Management. Advanced Computer-Aided Design of Dynamic Systems. Mechanics and Thermodynamics of Compressible Flow. Computer Controlled Manufacturing Processes. Professional Topics for Mechanical Engineers. Introduction to Tolerance Analysis. ME 171. Product Design and 3D Parametric Solid Modeling. 3 Units. 3 Units. Advanced modeling topics such as surface modeling, design for manufacturing, simulation-based design, top-down assembly, macros and API programming. Digital product development using 3D Parametric Solid Modeling tools. Introduction to both the theory and applications of digital control of manufacturing processes, including the discrete controller for manufacturing, digital controlled systems for manufacturing, sensors of control loop for manufacturing, discrete process models for manufacturing, manufacturing system input and response, and stability analysis of manufacturing systems. Perturbation techniques: secular terms, Lindstedt's method, Duffing's equation. Space Mission Design and Analyses. ME 140. Frame design using finite element analysis, power trains, braking, auxiliary systems. Principles of combustion and pyrolysis of gaseous, liquid, and solid materials. Computer programming languages such as C/C++, Java, Processing, and their applications to engineering problem solving using computer graphics, simulations, and physical prototyping. 9 a.m. – 5 p.m. 1 Unit. Development of system design criteria and solutions using computer simulation. ME 253. corrosive or toxic environments and high rate deformation are considered. Fundamentals of Physical Metallurgy and Materials. 3 Units. Visit Sac State at Flickr Visit Sac State at Youtube California State University, Sacramento Sac State 6000 J Street , Sacramento , CA 95819 USA Campus Main Phone: (916) 278-6011 N 56° 38.5607423 W 42° … Multibody Dynamics of Rigid and Flexible Systems. ME 138. 3 Units. Introduction to analytical and systematic design methodologies in creative and quality product design. Principles of mechanical properties of metals, including strength under combined loads, fatigue, and fracture mechanics. The Mechanical Engineering Department offers the following degrees: Bachelor of Science (BS) Degree in Mechanical Engineering, Master of Science (MS) Degree in Mechanical Engineering. Materials for Extreme Environments. Research Methodology. Ground Vehicle Aerodynamics. Fundamentals of Physical Metallurgy and Materials. Design for Manufacturing (DFM) and Design for Assembly (DFA) of modern computer controlled machines. Introduction to techniques used in manufacturing tolerance analysis. Applications of Programming in Mechanical Engineering. ME 209. Air Resources Engineering. Introduction to the phenomena of corrosion and wear, including the electro-mechanical bases of corrosion, examples of corrosion of iron, steel and stainless steels, and prevention of corrosion. Project Engineering I. Riverside Hall 4024 Lagrange multipliers, principles of virtual work, D'Alembert's principle, Hamilton's principle, Lagrange's equation of motion. Note: Course may be repeated for no more than 6 units total. Numerical methods and computer usage in optimal design. Aircraft handling qualities and stability augmentation. 2 Units. 3 Units. ME 196D. Emphasizes systems engineering process, requirement design fundamentals, subsystem fundamentals, trade studies, integration, technical reviews, case studies and ethics. Method of characteristics, shock wave analysis for steady, unsteady and supersonic, one-dimensional flows. Prerequisite(s): ME 114, ME 171, or CE 166. ME 259. 3 Units. Computer use in gas dynamics. utilized a foundation in engineering and science to engage in successful careers in mechanical engineering or other fields to the benefit of society. Fundamentals of structure, processing and properties of engineering ceramics with an emphasis on the relationships between them. Multibody Dynamics of Rigid and Flexible Systems. Introduction to economic analysis applied to engineering designs. Beginning of a two semester project; design of a product, device, or apparatus that will be fabricated in ME 191. Vehicle Safety and Crash Reconstruction. Simulation of aircraft response to control and atmospheric inputs. Gain ideas from the Sacramento State University Mechanical Engineering students’ end-of-semester presentations. My understanding (from current students) is now is not one of those times. ME 233. Assignments include application of these principals to solving open-ended design problems using computing tools. Radiation transfer between surfaces. Concurrent product and process design using expert systems and fuzzy logic. ME 190. Provides basic computer operation skills, and includes the use of modern interactive symbolic and numerical computation packages as well as an introduction to programming methods for solving engineering problems. Fundamentals of design and application of industrial robotics. Concurrent Product and Process Design. Advanced Vibration Theory. Virtual design and manufacturing and agile manufacturing will also be discussed. ME 296L. They will refine their communication skills by working one-on-one with the instructor to present their research in a professional setting. ME 196D. Application of principles of dynamics for forensic investigation and reconstruction of vehicle collisions. 3 Units. Student Outcomes of the MET Program 1. Generation of FEA models using computers. Prerequisite(s): ME 37 and ME 105; ME 105 may be taken concurrently. Fundamentals of acoustics and the engineering of musical instruments. ME 173. Manufacturing Processes. Mechanical Properties of Materials. Introduction to Composite Materials. Introduction To Robotics. The PDF will include the entire 2020-2021 catalog. ME 256. Note: Open only to students who appear competent to carry on individual work. ME 164. Geothermal and Bioenergy Systems. ME 153. ME 164. Department of Mechanical Engineering Website, ME 37. The students will be conducting an independent supervised engineering research on an agreed-upon research project. Manufacturing considerations in product design including: design for manufacturing (DFM), design for assembly (DF A), design to cost (DTC), design to life cycle cost (DTLCC), design for quality and reliability (DFQR); introduction to concurrent engineering. Applications of logic and motion controls in manufacturing. Faculty members have backgrounds in Mechanical, Aeronautical, Manufacturing, and Materials Science. Applications of Programming in Mechanical Engineering. Air Quality measurement. ME 171. Professional Practice. Sac State has a solid engineering program. ME 296V. Mechanical Properties of Materials. Analysis of aircraft structures: materials, structural components of aircraft, airworthiness, airframe loads, fatigue, structural idealization, fuselages, wings. Uses solid modeling software to analyze the forces, moments and dynamic loads for parts and entire assemblies in motion. Fracture Mechanics in Engineering Design. 2 Units. Lecture two hours; laboratory three hours. Study of alternative energy technologies, such as renewable fuels, wind, solar, oceanic and geothermal power. ME 273. Motorola - Semiconductor Division, Sendai, Japan September 1985 - July 1988 Digital product development using an integrated CAD system. Exploring sustainable energy and power generation, through study of wind, hydro and ocean energy systems, including the characterization, theory, operation, analysis, modeling, planning impacts and design process. 3 Units. Fundamentals of structure, processing and properties of metals and metal alloys with emphasis on relationships between them. 3 Units. Modeling and Simulation of Mechatronics and Control Systems. Study of product design process and formal design methodologies. ME 196R. Optimization of mechanical elements and assemblies to meet design requirements, material characteristics and geometry. Practical applications involving design using a microcontroller. Thermal-Fluid Systems. Here is my experience so far as a senior undergraduate in mechanical engineering. 3 Units. Topics covered include common ceramic structures, thermal and physical properties of ceramics, powder processing, creep resistance and toughening mechanisms, electronic properties of ceramics, and glass forming. Laboratory 1 unit. Introduction to the use of computers for engineering, science and mathematical computations. 3 Units. ME 272. Study of natural frequencies, eigenvectors, free and forced response, modes of vibration and vibration control and isolation. ME 296M. Introduction to Computational Fluid Dynamics. ME 177. Advanced Solid Modeling. Reviews of fundamental parts, assembly modeling, and engineering drawings. Advanced Computer-Aided Design of Dynamic Systems. Computer Controlled Manufacturing Processes. 3 Units. ME 165. Heat transfer from extended surfaces. Mechanical properties of materials, with special attention to dislocations/defects and deformation and fracture control mechanisms. ME 196E. Thermodynamics and mechanics of one-dimensional compressible flow; isentropic flow; normal and oblique shock waves; Prandtl-Meyer flow. Analysis of Aircraft Structures. Effects of defects on mechanical behavior at ambient and elevated temperature are discussed with attention given to strengthening mechanisms, creep, fatigue and fracture. Building on analytical and communications skills learned in the lower division, students take a four semester design-project sequence which includes the study of design methods, and the procedures for developing a design solution from concept through a fully-developed design and finally to production. ME 129. ME 128 may be taken concurrently. 3 Units. Prerequisite(s): ME 126; may be taken concurrently. 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. ME 195. Note: Units earned can not be used to satisfy major requirements. ME 121. 3 Units. Analytical and numerical analysis of Navier-Stokes equations for laminar flow; stability of laminar flow and its transition to turbulence. ME 159. Introduction to digital control. Le has been an instructor with SAC Engineering since 2014. Application of expert systems, fuzzy logic and neural networks in product design and manufacturing. Introduction to Test Automation. ME 154. Computer models such as the Trane TRACE Program are used to size an HVAC system with an emphasis on high efficiency. Alternative Energy Systems. Two hours lecture, one three-hour lab. Mariappan Jawaharlal, Ph.D., has been a professor of mechanical engineering at California State Polytechnic University, Pomona since 2010. 3 Units. ME 196F. become effective participants or leaders in innovation and multi-disciplinary collaboration to address global technical, social, and industrial issues. Analyzes convective heat and mass transfer. In this course, the students will be able to understand the fundamentals of power industry, including electricity production, transmission, and distribution. Introduction to basic design methodology for mechanical systems and devices. Design of aerospace systems including profile definition, constraints, operations and visualizations, component design, transformation features, and insertions using advanced CAD software such as CATIA. Motion and Dynamic Analysis using Solid Modeling. The Civil and Mechanical Engineering Technology program at South Carolina State University attempts to go beyond technical competence to develop technologists who are leaders in their areas of specialization. Part II consists of fabrication and assembly of equipment, testing and evaluation, and reporting. Vibration concepts, applied, natural frequencies, eigenvectors, and solution of differential equations using computer simulation. The Mechanical Engineering program at South Dakota State University offers programs of study leading to a variety of careers in a challenging and rewarding profession. Prerequisite(s): ME 126, ENGR 202; ENGR 202 may be taken concurrently. ME 270. Prerequisite(s): ENGR 112, and ME 37. ME 180. Phone: (916) 278-6624 Topics include static and vibration analysis, stress analysis buckling, normal modes, direct and modal frequency response, transient analysis, and heat transfer. SAC Engineering: Mr. ME 196F. The process of optimization covers all the major elements of a space mission such as the ground systems, launch vehicles, spacecraft/payload, space environment, in-orbit operation and maintenance, and end-of-life disposal. The program includes the study of scientific and technical principles underlying modern engineering practice and advanced mathematical techniques needed for their application in research and design. ME 180W. Modal analysis and modal testing. An appropriate mastery of the knowledge, techniques, skills and modern tools of the Mechanical Engineering Technology profession. Research methodology and engineering approach to problem solving. 2.1% of students taking the Mechanical Engineering program are non-residents of the United States. Rotating reference frames. 3 Units. Master of Science (MS) Degree in Mechanical Engineering. Lecture one hour. ME 172. Linearization of the equation of motion about reference flight (trim) condition, and separation into longitudinal and lateral equations of motion. Topics include problem formulation, algorithm development, advanced graphical user-interface development, and generating simulations using software packages such as Simulink. 3 Units. ME 152. 3 Units. Rigid body dynamics: kinematics, linear and angular momentum, and kinetic energy of a rigid body, principle axes, equations of motion. Thermodynamics and kinetics of common phase transformations and resulting microstructures and mechanical properties. 3 Units. PLC logic controls, sensors and output devices, creating ladder logic diagrams for the PLCs. Supervised employment in a professional engineering or computer science environment. Fluid Mechanics for Mechanical Engineers. Lecture two hours, Laboratory three hours. The center, the only one in Texas, is open to all San Antonio College students. ME 259. Field trips to energy efficient installations are included. Supervised employment in industry or government that provides practical work experience. Theory and design of heating, ventilating and air conditioning for industrial and comfort applications. 3 Units. 3 Units. 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. Introduction to Test Automation. ME 151. ME 156. Advanced Mechanical Properties of Materials. Class Schedule For Mechanical Engineering - Spring2020. 3 Units. Instruction will include effective career planning strategies and techniques including skill assessment, employment search strategy, goal setting, time management, interview techniques and resume writing. Basic concepts of numerical analysis using computer, including the solutions of ordinary and partial differential equations. Applications and computer-aided design of various types of turbomachines. ME 299. Prerequisite(s): Student must pass ME 116. Advanced Control System Design. ME 206. ME 186. ME 177. ME 143. 3 Units. ME 136. 3 Units. ME 105. Introduction to Composite Materials. ENGR 112 and ME 37 may be taken concurrently. Introduction to air quality modeling, including atmospheric temperature effects due to longwave thermal radiation. Introduction to Technical Problem Solving. ME 120. ME 194. Concentration on fundamental thermodynamic principles, modern design features and non-technical aspects of each technology. Architectures include Proportional, Proportional Integrator and Proportional Integrator Derivative (filter) schemes. ME 237. ME 278. Career Development in Mechanical Engineering. ME 141. Sac state is kind of notorious for over enrolling students. 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. Advanced topics in thermodynamics including applications of fundamental postulates to chemical, mechanical, magnetic and electric systems, theory of fluctuations, and irreversible thermodynamics. Stochastic Modeling for Engineers. CNC machining processes, CNC programming. Creation of complete assembly design including creation of product files, identifying, inserting and displacing components, constraining parts, numbering parts and scene creation. Behavior of dynamic systems: motion about equilibrium points, stability, Lyapunov's direct method. Prerequisite(s): ME 156 or instructor permission. Analysis and design of rigid and flexible multi-body assemblies in two and three dimensions with applications to mechanisms, machinery, ground and space vehicles. Ground Vehicle Aerodynamics. Review of Laplace Transforms, matrix algebra, and aerodynamics. Numerical modeling approaches with experience of running a commercial computational fluid dynamics program. Product Design and 3D Parametric Solid Modeling. They will also apply their engineering knowledge gained in the fundamental courses to understand and conceptually design various modern power plant technologies for electric power generation and cogeneration, including steam power plants, gas turbines, combined cycles, and nuclear power plants and their components. Analyzes turbulence, transport by Reynold's stresses and Prandtl's mixing length theory. Dynamics of Machinery and Multi-Body Systems. ME 296W. 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