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ME 129. Both analytical and graphical tools will be used for applications. Le has been an instructor with SAC Engineering since 2014. Assignments include application of these principals to solving open-ended design problems using computing tools. Use of state of the art automated modeling and simulation methods to build models of multi-energy mechatronics and control systems. Systems Engineering approach to plan and direct engineering projects. Combined conduction, convection and radiation. ME 285. Study of tires, drivetrain and gear boxes in ground vehicles. IMPORTANT: Schedule Data is not real time.. Data was last updated: 11/25/2020 at 9:00 AM Students should login to the My Sac State and click on "Search the Class Schedule" for real-time class schedule information, including the number of open seats.. Table Of Contents 3 Units. This a list of engineering programs offered at 19 campuses of the California State University system. ME 256. Use of solid modeling, dynamic analysis and finite element methods. The faculty has a variety of research interests; the majority has industrial experience which contributes to the applied emphasis in the Mechanical Engineering program. Senior design projects that are company-funded and include a company engineer on the team. Lecture two hours; laboratory three hours. ME 132. 3 Units. ME 136. Fundamentals of Physical Metallurgy and Materials. Thermodynamics of Combustion Engines. 3 Units. SAC Engineering: Mr. Study of the interaction of human body kinematics and dynamic biomechanics in accidents involving human activities and vehicles. Design and analysis of multi-energy systems using Block Diagrams, Bond Graphs, and state space equation representation. Derivation of aircraft rigid body equations of motion. Evaluation of single and multiple degrees of freedom systems in the time and frequency domain. Kinematics and kinetics of mechanisms in two and three dimensions with applications to suspensions, steering mechanisms. ME 280. Stationary and transportation emission sources. Study of loads on linkages, cams, gears as integral functioning components of machines, ground and space vehicles. Gain ideas from the Sacramento State University Mechanical Engineering students’ end-of-semester presentations. ME 164. Prerequisite(s): ENGR 6, ME 105 and ME 116. Product Design & CAD. Fracture mechanics approach to mechanical design; role of microstructure in fracture toughness and embrittlement; environmentally-induced cracking under monotonic and fatigue loads; laboratory techniques; service failures in various industries and failure mechanisms. Admission requires approval of an instructor and the student's advisor. Prerequisite(s): ME 126, ENGR 201; ENGR 201 may be taken concurrently. 3 Units. 3 Units. ME 252. Prerequisite(s): ME 105, ME 138, MATH 45. ME 196M. Rotating reference frames. ME 296L. Model generation using computer graphics. Mechanical Properties of Materials. Product Design for Manufacturing and Automation. The Mathematics-Engineering-Science-Achievement Center was established to enhance Engineering, Mathematics, Science, and Technology student achievement by providing a diversity of resources. 1 - 3 Units. ME 195A. 3 Units. Vehicle Crash Reconstruction. Motorola - Semiconductor Division, Sendai, Japan September 1985 - July 1988 Basic principles of heat transfer, including processes of conduction, convection, radiation, evaporation and condensation. PLC logic controls, sensors and output devices, creating ladder logic diagrams for the PLCs. Programming and Problem Solving in Engineering. Digital Control of Manufacturing Processes. 2 Units. Students build real-world experience with budgets, objectives and deadlines. Introduction to analytical and systematic design methodologies in creative and quality product design. They will apply their engineering knowledge gained in the fundamental courses to design these systems. Fluid Mechanics for Mechanical Engineers. Based on real user feedback and statistics, csus.edu no longer supports Microsoft’s Internet Explorer browser. ME 196C. ME 173. Applications and computer-aided design of various types of turbomachines. Dynamics of Machinery and Multi-Body Systems. Quality product design including design of experiments, robust design techniques, and design optimization. 3 Units. ME 186. Room 4024 Ground Vehicle Aerodynamics. Rigid body dynamics: kinematics, linear and angular momentum, and kinetic energy of a rigid body, principle axes, equations of motion. Advanced modeling topics such as surface modeling, design for manufacturing, simulation-based design, top-down assembly, macros and API programming. ME 237. They will refine their communication skills by working one-on-one with the instructor to present their research in a professional setting. Application of expert systems, fuzzy logic and neural networks in product design and manufacturing. The Department has crowned itself with the glory by achieving remarkable success in academic, co-curricular and research activities. Fundamentals of acoustics and the engineering of musical instruments. ENGR 99 Special Projects in Engineering. Note: Units earned can not be used to satisfy major requirements. Generation of equations of motion for single and multiple degree freedom systems. Note: Lectures as well as some tutorial activities are covered in two 75-minute classes per week. Multibody Dynamics of Rigid and Flexible Systems. Study of seat belts, airbags, and electrohydraulic stabilizers. ME 251. ME 115. Kinematic and kinetic analysis in two and three dimensions; impulsive and impact forces; modes of vibration. ME 123. Analysis of Aircraft Structures. 1 Unit. Solar Energy, Geothermal Energy, and Bioenergy Systems. Analyzes convective heat and mass transfer. ME 196C. Prerequisite(s): ENGR110 or concurrent enrollment. Previously, he was an associate professor at Cal Poly Pomona after teaching at Rowan University in New Jersey and Kettering University in Michigan. (916) 278-6624 Prerequisite(s): Permission of Graduate Coordinator or Department Chair. Computer programming languages for automated manufacturing, including CNC manual programming, cutter compensation, geometric definition of products, cutting tool definition, continuous path part programming, computation, decision, looping, computer graphics programming and intelligent machines. ME 122. 1: Lower division requirements are essentially common for Civil, Electrical and Electronic, … Prerequisite(s): ENGR 201 or ENGR 202; ENGR 201 or ENGR 202 may be taken concurrently. 3 Units. Note: Open only to students who appear competent to carry on individual work. ME 280. Industrial applications for ceramic and glass components along with the processing and materials selection options available for a given material and application. Basic concepts of numerical analysis using computer, including the solutions of ordinary and partial differential equations. ME 299. ME 243. Prerequisite(s): ME 126 (may be taken concurrently). Topics include static and vibration analysis, stress analysis buckling, normal modes, direct and modal frequency response, transient analysis, and heat transfer. ME 240. Component and assembly design, basic drawing creation, and simulations. Introduction to Motors and Actuators. Introduction to the use of computers for engineering, science and mathematical computations. Also covers component and assembly design, basic drawing creation. ME 278. 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. ME 195. Introduction to computer aided tolerance analysis. Absorbing, emitting and scattering media. ME 196F. The average total number of students of all degrees enrolled in this specialty is 140 or more and 93.6% of students are men. Designed for Mechanical Engineering students making career decisions. ME 243. Computer Programming for Mechanical Engineering Applications. Use of mathematical models for the generation of equations of motion for mechanical and electrical systems. become effective participants or leaders in innovation and multi-disciplinary collaboration to address global technical, social, and industrial issues. Steam engine student project at CSUS California State University Sacramento for Mechanical Engineering 37 - Manufacturing Process. Geothermal and Bioenergy Systems. ME 296S. Design of Multi-Input/Multi-Output controllers using linear quadratic regulator method and advanced controls architectures. Investigations into the roles engineers play in society in working toward sustainability, and ethical decision making in a technological world. ME 121. 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° … Mathematical fundamentals of Finite Element Modeling (FEA). ME 206. Prerequisite(s): ENGR 112, and ME 37. 3 Units. For Mechanical Engineering undergraduate students seeking to further their studies in achieving a Master's Degree in Mechanical Engineering, the Department offers an accelerated dual-degree Bachelor's/Master's program. ME 157. Review of Laplace Transforms, matrix algebra, and aerodynamics. ME 171. 3 Units. Introduction to measurement for machine accuracy and process quality including the use of coordinate measuring machines; system considerations and sensor technology in automated visual inspection; applications of pattern recognition in automated inspection. Most of the faculty have doctorates; some are registered Professional Engineers (PE). Space Systems Engineering Management. Advanced Control System Design. ME 194. Advanced Thermodynamics. ME 151. My understanding (from current students) is now is not one of those times. Radiation transfer between surfaces. ME 273. Stochastic Modeling for Engineers. 2 Units. ME 196R. 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. Properties of surfaces, spectral characteristics and configuration factors. Field trips to energy efficient installations are included. The BS ME program is accredited by the Engineering Accreditation Commission of ABET. Solar Thermal and Energy Storage Systems. Introduction to linear algebra and matrix applications. Simulation of aircraft response to control and atmospheric inputs. 3 Units. ME 255. Introduction to Flight Dynamics. Any properly qualified student who wishes to pursue a problem of his/her own choice may do so if the proposed subject is acceptable to the faculty member with whom he/she works and to his/her advisor. Introduction to Flight Dynamics. ME 120. ME 278. Advanced CAD for Aerospace Applications. Multibody Dynamics of Rigid and Flexible Systems. Fluid Mechanics for Mechanical Engineers. Note: Units may not be applied toward meeting the 30-unit requirement of the degree. Prerequisite(s): ME 126, ENGR 202; ENGR 202 may be taken concurrently. Detail design of machine components; application of analytical methods in the design of complex machines. ME 156. Application of these principles to realistic design problems. Failure mode analysis, theories of failure, yield, fracture, deflection, and fatigue analysis of machine elements. Kinematic and kinetic analysis of mechanisms. 3 Units. Perturbation techniques: secular terms, Lindstedt's method, Duffing's equation. Modal analysis and modal testing. 3 Units. Various manufacturing and automation aspects of product design, including design for machining, design for automation, applications of CAD/CAM software in product design and automation, and rapid prototyping. Heat Transfer: Radiation. Fundamentals of design and application of industrial robotics. Heating and Air Conditioning Systems. Boundary layer theory and numerical techniques in solving convection problems. Study of devices that contribute to passenger safety and stability. Courses taken in the freshman and sophomore years form a foundation for the upper division program; e.g., the dynamics and strength of materials studied in the junior year depend on the sophomore mechanics, calculus, and physics courses. Study of alternative energy technologies, such as renewable fuels, wind, solar, oceanic and geothermal power. ME 285. Requires satisfactory completion of the work assignment and a written report. ME 128. Comprehensive study of material applications in extreme environments, with special attention to mechanical, thermal and electronic behavior. the Mechanical Engineering Technology profession. Advanced Heat Transfer. Space Mission Design and Analyses. ME 186. ME 137. Advanced topics in computer-aided design for mechanical product design. 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 258. 3 Units, Fundamental and applied subjects of aerodynamics for ground vehicle design and performance including flow features, aerodynamic forces, drag reduction strategies, and different methodologies for evaluation of aerodynamic forces and vehicle design. CNC machining processes, CNC programming. Prerequisite(s): ENGR 132, graduate status. Basic hands-on experience on using commercial computational fluid dynamics software packages. Balancing fundamentals, analytical methods, and design applications, the program prepares graduates for long-term engineering careers. 3 units. Thermodynamics of Combustion Engines. 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. Mon. Technical Sales Engineer, Dr. Akihiko Kumagai, Department Chair 3 Units. Applications to solar energy systems. 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. ME 190. Prerequisite(s): ENGR 124, ENGR 132, ME 105. 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. Heating and Air Conditioning Systems. Mechanical Properties of Materials Workshop. Heat transfer from extended surfaces. Project Engineering I. Vibration concepts, applied, natural frequencies, eigenvectors, and solution of differential equations using computer simulation. Computer solutions of static, dynamic, heat transfer, stress analysis, fluid mechanics and structural problems. 3 Units. ME 196M. Research methodology and engineering approach to problem solving. ME 296U. Analytical and numerical analysis of Navier-Stokes equations for laminar flow; stability of laminar flow and its transition to turbulence. Creative Engineering Design for Quality Products. Prerequisite(s): Graduate status in Mechanical Engineering. Materials Selection in Engineering Design. Motion and Dynamic Analysis using Solid Modeling. ME 296O. Advanced Computer-Aided Product Design. Human factors that influence the biomechanical reactions of people with their vehicles and the environment. ME 132. Digital product development using 3D Parametric Solid Modeling tools. Use of solid modeling, dynamic analysis and finite element analysis methods. Continuation of the project begun in ME 190. Project Engineering II. The PDF will include the entire 2020-2021 catalog. ME 296W. Starts with a review of the theory and design of HVAC systems. 3 Units, Prerequisite(s): ENGR 6 and ME 116, or graduate-level status. The course also includes Digital Control, Optimal Control, Introduction to Guidance, Navigation and Control techniques. Advanced topics in thermodynamics including applications of fundamental postulates to chemical, mechanical, magnetic and electric systems, theory of fluctuations, and irreversible thermodynamics. Two hours lecture, one three-hour lab. 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. Computer modeling and mathematical representation of mechanical, electrical, hydraulic, thermal, and electronic systems or combinations of these. Student Outcomes of the MET Program 1. Mariappan Jawaharlal, Ph.D., has been a professor of mechanical engineering at California State Polytechnic University, Pomona since 2010. A project that involves programming a robot to perform designated tasks is included. ME 76. Lectures and lab are arranged so students can participate in meaningful discussions and a real exchange of ideas between students and faculty. Computer programming languages such as C/C++, Java, Processing, and their applications to engineering problem solving using computer graphics, simulations, and physical prototyping. Finite-element methods in the analysis and optimal design of machine components, structures, and distributed systems. Trim analysis, static and dynamic stability and control. 3 Units. Analysis and design of rigid and flexible multi-body assemblies in two and three dimensions with applications to mechanisms, machinery, ground and space vehicles. Determination of aerodynamic stability derivatives and control effectiveness. Newtonian mechanics: Newton's laws, impulse and momentum, work and energy. Introduction to statistical methods applied to analysis of engineering systems. It isn't an elite school but, is accredited and its graduates are recruited by big firms for good jobs. Applications of Programming in Mechanical Engineering. Materials Selection in Engineering Design. Specific heat treatment and mechanical processing procedures for steel and aluminum alloys as well as application of these processes to other alloy systems. Photographic and video analysis, computer graphics, and computer simulations. Study of product design process and formal design methodologies. Solar Energy, Geothermal Energy, and Bioenergy Systems. 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