There are multiple ways to be admitted into UBC Engineering: Applying from high school; Transferring from another school or faculty; Completing transfer programs; Learn about the different ways to apply to UBC and be sure to review the deadlines, admission requirements and application processes. Exception: Electrical Engineering and UBC BASc in Mech with Mechatronics Option graduates should substitute additional technical electives.1, Exception: Those with prior credit for UBC Mech 468 or UBC Mech 522 should substitute additional technical electives.1. Students interested in taking CPSC 544 should send an email to students@mech.ubc.ca to request for registration instructions. For those who did not receive a grade of 65% or greater in their English course, the Technical Communication course (MECH 226) will be taken as a summer course at UBC (MECH 227). A maximum of 6 credits of 500-level directed studies courses may be counted toward the program requirements. If interested, our graduate students may also pursue work experience through UBC Engineering’s co-op program. The School of Engineering supports an intensive research environment within Civil, Electrical, Manufacturing and Mechanical Engineering. Mechanical Engineering. We are the largest co-op program in Western Canada and one of … For those who did not receive a grade of 65% or greater in their … When you apply you will need to submit proof that you meet the following admission requirements. Director: Dr. Dana Grecov, CEME 2060, dgrecov@mech.ubc.ca. Please check the UBC Engineering website for admission requirements, deadlines and application procedure. Graduate students are restricted to taking a maximum of 6 credits of undergraduate (300 or 400 level) courses throughout their program. Students must rank their preferences and write a short essay supporting their first choice program online at the Engineering Academic Services Website. This list needs to be submitted to students@mech.ubc.ca for approval. Students need to follow the project guidelines given below: The project must be solicited from industry or a research laboratory at the university. Mechanical Engineering. Degree Requirements Students will be granted a B.A.Sc. UBC Mechanical Engineering offers MEng, MASc, and PhD programs for people wishing to pursue advanced degrees. The project must be submitted in a UBC Master of Engineering format (similar to UBC MASc) to the supervisor who will arrange an oral defense with another faculty member or senior researcher. Co-director: Dr. Ryozo Nagamune, Kaiser 3104. If students wish to take a technical elective (T.ELEC) in term 2 instead of term 1, that is also permitted, however it will make your term 2 course load heavier. SILVER STAR SKI RESORT CIVIL ENGINEERING ELECTRICAL ENGINEERING MECHANICAL ENGINEERING … Prospective Students Interested in graduate studies at UBC? At a minimum, they must take 3 courses a term, and complete the degree within 16 months. The project must demonstrate the application of knowledge from solid mechanics, vibrations, kinematics, fluid mechanics, heat transfer, control theory and circuit theory in the machine design project (MECH 526) or electronics/software design project (MECH 527). The design project can be solicited from industry or the research laboratories at UBC, with the approval of the MEng program supervisor. When choosing courses, students should keep in mind the following general MEng requirements: For more information on general MEng requirements, please refer to the Academic Calendar: http://www.calendar.ubc.ca/vancouver/index.cfm?tree=12,195,838,0. Students are strongly encouraged to choose technical electives offered by the Department of Mechanical Engineering, however are permitted to take up to 6 credits from the courses listed below offered by the Department of Computer Science, and the Department of Electrical and Computer Engineering. It is a second-year entry program, and you apply for admission upon completion of a general first year engineering program which is common to all engineering departments at UBC. Students normally register in the full session section of the course (Term 1-2). (Mechatronics MEng students can take analog/digital electronics, software engineering, computer control of machines and processes as core requirements.). Chemical Engineering fuses the physical and chemical sciences with mathematics, process engineering, design, and economics. The program offers students an opportunity to work at the highest level of research, under the supervision of a faculty member. at least 12 credits from Categories 1 and 2 (below), up to 12 additional credits from Category 3 (with approval of the supervisor), at least 24 credits from Categories 1-2 (below), with, at least 6 credits from each of Categories 1, 2 and 4. For students who are completing all degree requirements in Summer term: All grades will need to be entered at least 5 days prior to the tuition & fees deadline and programs will need to be closed before the same deadline to avoid additional tuition charged. ; Choosing a Specialization. Applications & Admissions Click the buttons below to read more about our programs, to find out how to apply to specific programs, or—when you’re ready—to submit your application. Faculty research groups cover all of the major areas of mechanical engineering, including design and applied mechanics, fluid mechanics, thermodynamics and heat transfer, manufacturing, and controls. Substitute courses must primarily be 500 level from Mechanical Engineering, Computer Science, and Electrical and Computer Engineering Departments. 2nd Year Placement is the process by which first-year engineering students are placed in discipline-specific engineering programs for the remainder of their BASc degree. Register for the summer session of PHYS 170 in another institution, if possible. Read the Engineering Undergraduate Viewbook [6.4 MB PDF] Why UBC? The final report with the assessment by the supervisor must be submitted to the Mechatronics MENG coordinator, who will assign the final grade. LaTeX: https://www.grad.ubc.ca/current-students/dissertation-thesis-preparation/style-guides-computer-tools, The grades should be reported to Dr. Altintas by the respective supervisor after the defense. Registration for graduate students opens on June 16, 2020. Program rankings will take into consideration a student’s Winter (Term 1 & Term 2) session average and personal statement. Not available to those with prior credit for UBC Mech 464. https://researchcommons.library.ubc.ca/thesis-formatting-tips-tricks-and-resources/, https://www.grad.ubc.ca/current-students/dissertation-thesis-preparation/style-guides-computer-tools, http://www.calendar.ubc.ca/vancouver/index.cfm?tree=12,195,838,0, MEng Naval Architecture & Marine Engineering (NAME), MECH 550E – Principles of Mechatronics Instrumentation (3 hours lecture/week), MECH 575B – Mechatronics Design Laboratory (3 hour labs/ alternating weeks), MECH 550C – Software Design for Mechatronics Systems (3 hours lecture/week), MECH 575A - Software Design Laboratory (2 hour labs/week), MECH 522 – Modern Control Engineering (3 hours lecture/week), MECH 551 - Electro-Mechanical System Design Project I (Integrated Mechanical Design/analysis), MECH 552 - Electro-Mechanical System Design Project I (Integrated Electronics, control, software design), MECH 589 – Computer Control of Multi-Axis Machines*, MECH 592 - Machine Tool Structures and Vibrations, MECH 421 - Mechatronics System Instrumentation*, MECH 596 - CAD/CAM Principles and Practice, MECH 540A – Emerging Topics in Mechatronics, Manufacturing, Controls, & Automation  - SFTWR DSGN MECH, MECH 540B – Emerging Topics in Mechatronics, Manufacturing, Controls, & Automation - PRNCPLS MECHTRCS, MECH 526 – Mechatronic System Design Project I (Integrated Mechanical Design/analysis), MECH 527 – Mechatronic System Design Project II (Integrated Electronics, control, software design), MECH 421 – Mechatronics System Instrumentation, MECH 514 – Linear FEA in Solids and Heat Transfer, MECH 541 – Computer Control of Multi-Axis Machines, MECH 563 – Robotics: Kinematics, Dynamics and Control, MECH 544 – Machine Tool Structures and Vibrations, MECH 542 – CAD/CAM Principles and Practice, ELEC 401 - Analog CMOS Integrated Circuit Design, ELEC 403 -  Advanced Digital VLSI Systems, ELEC 412 Optical Waveguides and Photonics, ELEC 421 - Digital Signal and Image Processing, ELEC 462 - Sensors and Actuators in Microsystems, ELEC 463 - Micro/Nanofabrication and Instrumentation Laboratory, ELEC 473 - Biological Micro-Electro-Mechanical Systems, CPEN 431 - Design of Distributed Software Applications, CPEN 441 - Human Computer Interfaces in Engineering Design, EECE 514 - Software Verification and Testing, EECE 549 - Dynamic Modeling of Electric Machines and Controls, CPSC 420 – Advanced Algorithms Design and Analysis, CPSC 444 - Advanced Methods for Human Computer Interaction, CPSC 505 - Image Understanding I: Image Analysis, CPSC 509 - Programming Language Principles, CPSC 521 - Parallel Algorithms and Architectures, CPSC 530P - Topics in Information Processing - SENSORIMOTOR CMP, CPSC 530K - Topics in Information Processing - DIGITAL LEARNING, CPSC 531H - Topics in Theory of Computation - MACH LRN THEORY, CPSC 532C - Topics in Artificial Intelligence - USER-CENTERED AI, CPSC 532L - Topics in Artificial Intelligence - VISION&LANGUAGE, CPSC 532R - Topics in Artificial Intelligence - GRAPHICAL MODELS, CPSC 532S - Topics in Artificial Intelligence - COMP NEUROSCI, CPSC 532S - Topics in Artificial Intelligence - VISION&LANGUAGE, CPSC 535P - Topics in Simulation and Optimization - DIGITAL HUMANS, CPSC 539F - Topics in Programming Languages - SD PRODUCTIVITY, CPSC 543 - Physical User Interface Design and Evaluation, CPSC 554C  - Topics in Human-Computer Interaction - ADAPTIVE INTERF, CPSC 554K - Topics in Human-Computer Interaction - DESGN FOR PPL, CPSC 554Y - Topics in Human-Computer Interaction - MULTMDAL INTRCTN, MECH 596 – CAD/CAM Principles and Practice, MTRL 515 – Advanced Simulation and Modelling Tools for Materials Manufacturing, MECH 510 – Computational Methods in Transport Phenomena I, MECH 511 – Computational Methods in Transport Phenomena II, SOCI 514 – Analyzing Quantitative Data in Sociology, KIN 371 – Introduction to Statistics in Kinesiology, STAT 305 – Introduction to Statistical Inference, RES 505 – Qualitative Methods in Interdisciplinary Contexts, SPPH 519 – Qualitative Methods in Health Research Design, KIN 571 – Qualitative Methods in Sport, Leisure, and Health Studies, APSC 541 – Technology Entrepreneurship for Engineers, To be chosen in consultation with supervisor, MECH 473 – Heating, Ventilating and Air Conditioning, ARCH 513 – Environmental Systems and Controls I, ARCH 533 – Environmental Systems and Controls II, CIVIL 406 – Water Treatment and Waste Management, RES 520 – Climate Change: Science, Technology and Sustainable Development, MECH 550J – Dynamics of Aerosols and Sprays, MECH 550P – Advanced Mechanics of Materials, MECH 555 – Fundamentals of Microelectromechanical Systems, EECE 531 – Nanoscale Modeling and Simulations, EECE 576 – Semiconductor Theory for Device Applications, MTRL 578 – Microstructural Evolution of Deformed Materials, MTRL 579 – Physics of Microfabrication: Front End Processing, ELEC 546 – Micro and Nano Fabrication Technologies, EECE 571Z – CMOS Design for Optoelectronics Applications, EECE 580 – Emerging Electronic Materials and Devices, MECH 479 – Introduction to Computational Fluid Dynamics, IWME 505 – Water Resources Systems Planning and Management, Others to be chosen in consultation with supervisor, MECH 550P – Special Advanced Courses - ADV SOLID MECH, MECH 521 – Fundamentals of Microelectromechanical Systems, 33 credits of coursework, including the seminar (if applicable), 30 credits of coursework, including the seminar (if applicable) and thesis. 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