Fundamentals of psychrometrics, heat transfer and refrigeration; determination of heating and cooling loads driven by occupant requirements and the building envelope; heating and cooling equipment types and HVAC system configurations; controls and maintenance issues that influence performance; evaluation of various HVAC systems with respect to energy and indoor environmental quality performance. Initially the focus is on the kinematics and kinetics of particles. Observed materials behaviour includes mechanical, electrical, magnetic, optical, and corrosive behaviour. The principles necessary for the selection of engineering materials suitable for a given application from the full range of materials available are developed through a series of case studies. Vibration measuring instruments. The proposal must: 1) Explain how the research project builds upon one or more aspects of engineering science introduced in the student's academic program, 2) provide an estimate of a level of effort not less than 130 productive hours of work per term, 3) specify a deliverable in each term to be submitted by the last day of lectures, 4) be signed by the supervisor, and 5) be received by the Undergraduate Office one week prior to the last add day. These topics allow engineers to apply principles learned in the first two years in: computer fundamentals, dynamics, calculus, basic EM theory, algebra and differential equations, signals systems. Beginning with the Business Processes, it explores the concept of Business Process Re-engineering. Students also have the option of doing a one- or two-term thesis in their fourth year of study, allowing independent study and research with faculty members. Production Fundamentals: Metal casting; metal forming - rolling, forging, extrusion and drawing, and sheet-metal forming; plastic/ceramic/glass forming; metal removal - turning, drilling/ boring/reaming, milling, and grinding; non-traditional machining - ECM, EDM and laser cutting; welding; surface treatment; metrology. data analytics & ai An applied approach will be taken, where students get hands-on exposure to the covered techniques through the use of state-of-the-art machine learning software frameworks. Beyond research partnership, Hatch attracts top engineering talent by hiring through the Professional Experience Year Co-op Program and offering several scholarships to exceptional engineering students. Classification. 35 St. George Street Toronto, Ontario Discussion of how the decision theories can be applied to design algorithms and processes for real-world cases. Modeling processes with simulation. 2020 Fall Term engineering course timetable (as of July 2, 2020) 2021 Winter Term engineering course timetable (as of July 2, 2020) 2020 Summer Term engineering course timetable (as of April 8, 2020) Note: The Faculty of Applied Science & Engineering will move 2020 Summer Term courses to remote delivery. Topics include: identification of an items failure distribution and reliability function, reliability of series, parallel, and redundant systems design configurations, time-to-repair and maintainability function, age and block replacement policies for components, the economic life model for capital equipment, provisioning of spare parts. At least two of the four half credit Complementary Studies Electives to be taken between second and fourth year must he Humanities/Social Sciences courses (see the Complementary Studies section at the beginning of this chapter). Understanding these practices is essential to developing effective engineering processes. Pressure vessels, design of members of strength criteria, deflection of beams. Industrial engineers share the common goal of increasing an organizationâs efficiency, profitability and safety in a variety of industries including health care, finance, retail, entertainment, government, information technology, transportation, energy, manufacturing and consulting. Students are expected to analyze cases based on real applications on their own, in small groups and during lecture sessions, and solve them using commercial software packages. Jason Bazylak brings his engineering, education, and design experience to his role at the University of Toronto. Provide fundamental knowledge of the various subdisciplines. M5S 1A4, © 2020 Faculty of Applied Science & Engineering. Business dynamics. This course is structured around the principle of the structure-property relationship. The third and final module will cover a range of other fluid problems in modern biology. Functional, economic, and societal analysis taught for use in a major team-written project to compare and contrast two product or process alternatives for a client. Guest speakers are used to provide domain background. Students will be asked to address open-ended design problems in various activities of the course. Topics will cover: Review of principles and characteristics of sound and ultrasonic waves; thermal waves; optical (light) waves; photons: light waves behaving as particles; black body radiation, continuous wave and pulsed lasers. Fundamental concepts of vibration of mechanical systems. All are based on adequate preparation in mathematics and in such fundamental subjects as physics and chemistry. This course provides an understanding of the principles and techniques of information modelling and data management, covering both relational theory and SQL database systems (DBMS), as well as entity-relation conceptual modelling. Statistically indeterminate problems. Make graduates fully conversant with modern facilities, such as CAD/CAM and microprocessor control, by which design concepts can be produced and competitively manufactured. Response of receiving waters to pollution and introduction to waste water treatment. Do not use spaces within course code values, Faculty of Applied Science and Engineering, Course in Python, differential and integral calculus, linear algebra, APS111/112 or Praxis, MIE258 or an equivalent engineering economics course Emphasis is placed on gaining practical skills by solving realistic design problems. Consideration is given to the characteristics and selection of machine elements such as bearings, shafts, power screws and couplings. The Centre for Healthcare Engineering (CHE) at the University of Toronto provides a bridge between academia and the healthcare sector, translating the latest research findings to impact practice and offering educational opportunities for students and ⦠undergrad@mie.utoronto.ca. Discussions will centre around circuits and instrumentation. This course covers systems of linear equations and Gaussian elimination, applications; vectors in Rn, independent sets and spanning sets; linear transformations, matrices, inverses; subspaces in Rn, basis and dimension; determinants; eigenvalues and diagonalization; systems of differential equations; dot products and orthogonal sets in Rn; projections and the Gram-Schmidt process; diagonalizing symmetric matrices; least squares approximation. Financial analysis topics include: financial statements, depreciation, income tax, and basic accounting techniques. Test the interaction features of a new software application. This is a first course in medical imaging. Applications include the design of pipe and microfluidic networks, transient flow phenomena, compressible flow and shocks, characteristics of pumps, open channel flow and an overview of flow measurement techniques. Students select many upper-year courses from a list of electives, permitting them to choose subjects compatible with their individual interests. The goal of this course is to provide an understanding of how humans and machines can be integrated with information systems. Continuous quality improvement is a key factor leading to a company's success. Topics include demand forecasting, inventory management, supply chain management, capacity planning, and lot size planning. An introduction to computer systems and software. Solutions of one-dimensional and multidimensional systems. Examples of HFI drawn from energy, healthcare, military, and software systems. Topics include: structure, processing, and properties of composite materials; design of fillers reinforcements and matrices reinforcements, reinforcement forms, nanocomposites systems, manufacturing processes, testing and properties, micro and macromechanics modeling of composite systems; and new applications of composites in various sectors. This is a basic course in engineering thermodynamics. This course covers the basic principles, current technologies and applications of selected alternative energy systems. Using a quantitative, problem solving approach, this course will introduce basic concepts in cell biology and physiology. Students will be introduced to different modules and their specific applications. Principles of convection and solutions under laminar and turbulent flow over flat plates and inside and over pipes. Design of combustion systems for gaseous, liquid and solid fuels. Topics include: techniques of integration, an introduction to mathematical modeling with differential equations, infinite sequences and series, Taylor series, parametric and polar curves, vector-valued functions, partial differentiation, and application to mechanics and other engineering problems. Kinematics of flow, velocity field, streamlines. The broad disciplinary base and design orientation of the field will continue to make the skills of the mechanical engineer crucial to the success of virtually all technical systems that involve energy, motion, materials, design, automation and manufacturing. Role of optimization in simulation studies. This is a seminar series that will preview the core fields in Mechanical and Industrial Engineering. Classification of types. An equivalent full credit course is also acceptable. Ansys software will be the commercial package that will be used in this course. They will then be able to utilize the CFD package to simulate any particular problem. Green's theorem. With chapters around the globe, on corporate, professional, and student level, IISE is the largest worldwide non-profit organization of industrial and systems engineers. Functions of random variables. Design of operations research models to solve a variety of open-ended problems. 15:58. UofT Engineering Graduate Studies Fair. This course introduces and provides a framework for the design process, problem solving and project management. Development of analysis and design methods for basic analog and digital electronic circuits and devices using analytical, computer and laboratory tools. The course will cover basic technologies for information analysis, knowledge-based problem solving methods such as heuristic search, automated deduction, constraint satisfaction, and natural language understanding. Analysis of open-ended design problems for improving thermal transport in commercial products. This course will provide a framework for identifying and resolving problems in a complex, unstructured decision-making environment. New MEng project opportunities available for 2020: Department of Chemical Engineering & Applied Chemistry (ChemE), Department of Civil & Mineral Engineering (CivMin), The Edward S. Rogers Sr. Department of Electrical & Computer Engineering (ECE), Department of Mechanical & Industrial Engineering (MIE), Department of Materials Science & Engineering (MSE), Institute of Biomedical Engineering (BME), Institute Transdisciplinary Engineering Education & Practice (ISTEP), News Item – As a southwest Ontario hospital postpones some surgeries, experts warn more delays could be coming. The explosive growth in the availability of lower-cost, compact and high-speed computing hardware and software is already revolutionizing the analysis, design, manufacture and operation of many mechanical engineering systems. Expectation, variance, and covariance. Corrosion and degradation of materials; Phase transformation and strengthening mechanisms; Mechanical failure, fatigue, creep, impact; Electrical, thermal, magnetic, optical properties of materials; Composite materials. Most CFD packages have a variety of modules to deal with a specific type of flow. It considers the energy redistribution role of large scale atmospheric systems, of warm and cold ocean currents, the role of the polar regions, and the functioning of various hydrological systems. Gayle Lesmond This course will introduce students to the basics of integration, methodology of design, tools, and team project work. Engineering a better healthcare system We pioneer data-driven research to improve system efficiency and enhance patient care. In addition to basic background material, the course includes case studies of current micro/nano-systems, challenges and future trends, and potential applications. Knowledge modelling will focus on knowledge types and their semantic representation. Hands-on experience of these topics in lectures, tutorials, and labs support successful application of the methods for the course project, as well as future design activities. Pollutant formation. is a professor in the Department of Mechanical and Industrial Engineering at the University of Toronto.. A main goal is to bring the methods, means and spirit of the industrial design world to the class room. Its purpose is to give students an opportunity to integrate the Industrial Engineering tools learned in previous courses by applying them to real world problems. Response of organisms, populations, dynamic predator-prey and competition processes, and ecosystems to human activities. Chi-Guhn Lee. Note: BME520H1 will not be offered for the 2018-19 academic year. MIE 561 is a "cap-stone" course. This course will cover the principles of molecular and cellular biology as they apply to both prokaryotic and eukaryotic cells. Multiple comparisons. This course will teach students how to apply fundamental fluid mechanics to the study of biological systems. Vibration of continuous systems. The demonstration of engineering judgement in integrating economic, health, safety, environmental, social or other pertinent interdisciplinary factors, Elements of teamwork, project management and client interaction, and. Inputs are the number of COVID patients expected per day, average LOS of these patients, total number of beds, and desired coverage of COVID patients as % probability. An experience in engineering practice through a significant design project whereby student teams meet specific client needs through a creative, iterative, and open-ended design process. Introduction to robotics. U of T Engineering Timetables. The project must include: The application of disciplinary knowledge and skills to conduct engineering analysis and design. TQM. Divergence, curl and gradient operators. Topics include: additive manufacturing, 3D printing, micro and nanomanufacturing, intelligent manufacturing, Advanced Materials, lean manufacturing, AM in machine design and product development, process control technologies. While the specific focus of the case studies used to illustrate the application of Industrial Engineering will be the Canadian health care system, the approach to problem solving adopted in this course will be applicable to any setting. Engineering applications of thermodynamics in the analysis and design of heat engines and other thermal energy conversion processes within an environmental framework. Application examples. Knowledge management will explore the acquisition, indexing, distribution and evolution of knowledge within and among organizations. Exact and numerical analysis of steady and transient conduction in solids. Linear control. Organization of manufacturing systems. Beginning Engineers 12,647 views. Search. The human operator in process control and the supervisory control of automated and robotic systems. Shekhar Kumar (IndE2T0) listed as part of UofT Engineering Grads to Watch 2020. Urban metabolism and material flow analysis of cities. Derivation and application of Bernoulli and Poisson processes, Markov chains, and queuing models. Linear equations of order n. Equations of second order. Beyond research partnership, Hatch attracts top engineering talent by hiring through the Professional Experience Year Co-op Program and offering several scholarships to exceptional engineering students. Quality standards and certification. Goodness-of-fit tests. 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