Searching the World's top universities for courses with:

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UC Santa Barbara (X)
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true *,score on 1 425 source:"UC Santa Barbara" AND 2.2 25
Total results: 8714

UC Santa Barbara - ME 110 - Aerodynamics and Aeronautical Engineering

Concepts from aerodynamics, including lift and drag analysis for airfoils as well as aircraft sizing/scaling issues. Structural mechanics concepts are applied to practical aircraft design. Intended for students considering a career in aeronautical engineering.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 112 - Energy Conversion

Overview of energy usage and production from prehistory to present times (technical, environmental, and societal issues). Technical analysis of the modern means of energy production (fossil, nuclear, hydro, wind, solar, geothermal, biomass, etc.): operating principles, hardware, engineering issues, environmental impact, etc.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 113 - Desalination

Chemical and physical properties of ocean water, geothermal brine, and groundwater. Fundamentals of theories of distillation, freezing, reverse osmosis, electrodialysis, and other demineralization techniques. Design and application of desalination systems. Energy sources for desalination. Efficiency and economy of desalination plants.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 114 - Water Supply and Pollution Control

Water supply and quality requirements fo domestic, industrial, agricultural, and recreational uses. Properties of natural surface and groundwaters. Pollutants in surface and groundwaters. Transport and fates of waterborne pollutants. Water and sewage treatment processes. Waste waterreclamation. Water quality management in ground and surface water environments.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 115 - Introduction to Air Pollution Principles

Adverse effects, the atmosphere, macroscale motion, meso- and micrometerology, effluent dispersion, sulfurous smog, photochemical smog, stationary sources and their control, emission formations in gasoline-powered engines, effects of design and operating variables on gasoline-engine exhaust emissions, and present and future emission control systems for gasoline engines.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 119 - Introduction to Coastal Engineering

Quantitative description of waves and tides; refraction, shoaling. Nearshore circulation. Sediment characteristics and transport; equilibrium beach profile; shoreline protection.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 124 - Advanced Topics in Transport Phenomena/Safety

Hazard identification and assessments, runaway reactions, emergency relief. Plant accidents and safety issues. Dispersion and consequences of releases.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 125 - Special Topics in Mechanical Engineering

Individual courses each concentrating on one area in the following subjects: applied mechanics, cad/cam, controls, design, environmental engineering, fluid mechanics, materials science, mechanics of solids and structures, ocean and coastal engineering, robotics, theoretical mechanics,thermal sciences, and recent developments in mechanical engineering.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 126 - Introduction to Environmental Engineering and Science

An introduction to environmental problems and their solutions. We will discuss surface water, ground water, and air pollution as well as risk analysis and the treatment of hazardous wastes.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 128 - Design of Biomedical Devices

Introductory course addresses the challenges of biomedical device design, prototyping and testing, material considerations, regulatory requirements, design control, human factors and ethics.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 134 - Advanced Thermal Science

This class will address advanced topics in fluid mechanics, heat transfer, and thermodynamics. Topics if interest may include combustion, phase change, experimental techniques, materials processing, manufacturing, engines, HVAC, non-newtonian fluids, etc.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 135 - Numerical Heat Transfer

This class will introduce basic numerical technique such as finite differences or finite elements, and their application to flow and heat transfer problems. Industrial software packages may also be studied and used in hands-on projects.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 136 - Introduction to Multiphase Flows

Development from basic concepts and techniques of fluid mechanics and heat transfer, to local behavior in multiphase flows. Key multiphase phenomena, related physics. Extension to local conservation principles to usable formulations in multiphase flows, modelling approaches. Practical examples.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 138 - Risk Assessment and Management

Conceptual foundations of risk and its utility for decision making. Determinism, statistical inference, and uncertianty. Formulation of safety goals and approaches to risk management. Generalized methodology and tools for assessing risks in the industrial, ecological, and public health context.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 140A - Numerical Analysis in Engineering

Numerical analysis and analytical solutions of problems described by linear and nonlinear differential equations with an emphasis on MATLAB. First and second order differential equations; systems of differential equations; linear algebraic equations, matrices and eigenvalues; boundary value problems; finite differences.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 140B - Theoretical Analysis in Mechanical Engineering

Analysis of engineering problems formulated in terms of partial differential equations. Solutions of these mathematical models by means of analytical and numerical methods. Physical interpretation of the results.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 141A - Introduction to MicroElectroMechanical Systems (MEMS)

Analsysis of MEMS actuators and displacement sensors with emphasis on the analysis of capacitor-based sensing and actuation. Analysis and design of operational-amplifier models and circuits for capacitor sensors including feedback concepts. Vibration analysis of MEMS structures including wave equations for 'string' and bar structures. MEMS scaling concepts.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 141B - MEMS: Semiconductor Processing and Device Characterization with Laboratory

Lectues and laboratory on semiconductor processing for MEMS. Description and analysis of key semiconductor and equipment used for MEMS. Design and fabrication of MEMS capacitor-actuator and accelerometers, includes a description of MEMS characterization tools.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 141C - Introduction to Microfluidics and BioMEMS

Introduces physical phenomena associated with microscale/nanoscale fluid mechanics, microfluids, and bioMEMS. Analytical methods and numerical simulation tools are used for analysis of microfluids.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 150 - Introduction to Design

Introduction to the design process. Generating ideas; brainstorming, analysis of alterntives, trade studies and special topics. Design project preparation for ME 197.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 151A - Thermosciences 1

Basic concepts in thermodynamics, system analysis, energy, thermodynamic laws, and cycles.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 151B - Thermosciences 2

Introduction to heat transfer processes, steady and unsteady state conduction, multidimensional analysis. Introduction to convective heat transfer.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 151C - Thermosciences 3

Convective heat transfer, external and internal flow, forced and free convection, phase change, heat exchangers. Introduction to radiative heat transfer.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 151L - Thermoscience Laboratory

Experiments in heat transfer and thermodynamics. Characteristics of heat exchangers, and the performance of vapor and gas cycles will be determined.Flow over a heated cylinder and expansion and compression of gases will be studied. Heat transfer by conduction, and radiation will be investigated. Introduction to measuring techniques for the determination of mass and energy flow rates, pressure, temperature, and heat transfer coefficients.
Score: 4.808741 Details | Listing | Web page

UC Santa Barbara - ME 152A - Fluid Mechanics

Introduction to the fundamental concepts in fluid mechanics and basic fluid properties. Basic equations of fluid flow. Dimensional analysis and similitude. Hydrodynamics.
Score: 4.808741 Details | Listing | Web page

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