Ece uwaterloo
Exposure to concepts from other Engineering plans.
Electrical and computer engineers shape the future through innovation. They develop and improve systems that serve everyday needs of society spanning from high-voltage engineering and sustainable energy, to breakthroughs in wireless technology. Our faculty and students do everything from creating low-cost digital x-ray imagers to combat tuberculosis in developing countries, to building real-time embedded systems to advance the design and reliability of commercial products. ECE - the future is what we do. The Department of Electrical and Computer Engineering is a dynamic and innovative hub of cutting-edge advancements in technology and engineering.
Ece uwaterloo
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Antireq: ECE
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ECE improves systems with creative solutions for the needs of society spanning from communications to energy and technology. This section provides information about the ECE program and how to apply. Whether you're a first-year student, or about to graduate, this section of our website provides all the important resources and information needed for personal and academic success. We offer a number of options to help you fund your studies and to reward entering and current students for their successes. The Electrical and Computer Engineering program gives you a solid technical background for many engineering fields.
Ece uwaterloo
Note: Milestones and courses with deadlines for successful completion are shown in the terms where they are normally completed. See the range of courses available in Electrical and Computer Engineering. You can also view all the courses required for your degree. You might have a lot of questions. We're here to help! If you have questions, email our admissions staff who would be happy to assist. Understanding requirements. How to choose a program. The University of Waterloo acknowledges that much of our work takes place on the traditional territory of the Neutral, Anishinaabeg and Haudenosaunee peoples. Our main campus is situated on the Haldimand Tract, the land granted to the Six Nations that includes six miles on each side of the Grand River.
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Thin films by chemical and physical vapor deposition. Set theory. Root-locus analysis. GRADflix is an annual competition that gives graduate students an opportunity to communicate their amazing and complex research to a broader public audience. Secure design principles, techniques and security evaluation. Analog electronics exploits the physical behaviour of electronic devices to create electronic systems. Profiling computer systems; bottlenecks, Amdahl's law. Review of Maxwell's equations and electromagnetic plane waves, dielectric waveguides, optical fibers, lasers and photonic transmitters, photodetectors and photonic receivers, optical amplifiers, and photonic systems and networks. Advanced Calculus 1 for Electrical and Computer Engineers. Fourier series. Topics include sufficient statistics, exponential families, hypothesis testing, error estimation, confidence intervals, chi-square tests, analysis of variance, regression, correlation, decision theory, and Bayesian and non-Bayesian statistics. A design project integrating content from physics, math, and programming courses. Fundamentals of power systems, analysis techniques including power flow and symmetrical fault analyses, and the basics of distribution systems and smart grids. Phase transitions. Elementary lead-lag compensation.
Our modern world is built on electricity.
Amplitude and angle modulation, generation and detection schemes. Boolean algebra and simplification of Boolean functions. Areas of research and professional practice in electrical and computer engineering. All upcoming events. Programming paradigms, compilation, interpretation, virtual machines. Reliability and fault tolerance. Physical optics: interference, Fraunhofer and Fresnel diffraction, polarization. The course covers the following main technical and economic issues relevant to system operators, utilities and analysts: power system economic operations; short-term operation of power systems; power flow; introduction to optimal power flows; overview of electricity markets; fault calculations; and basic concepts in power system stability and control. Forces in nature and Newton's laws, dynamics and circular motion, work, energy, and conservation of energy. Concurrency: threads and locks. If students did not secure a co-op position, they are to reflect on how they used their time to update their skills. Sampled data systems. Overview of wireless communications including standards. Other applications of thermodynamics.
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