Combinatorics and Optimization (Quantum Information) is a Master of Mathematics at the University of Waterloo, developed in collaboration with the Institute for Quantum Computing (IQC). The program strengthens your mathematical research skills while building advanced understanding of quantum information theory and its applications.Through graduate-level coursework and research-focused training, you’ll develop the tools to tackle problems at the intersection of combinatorics, optimization, and quantum information processing.
Combinatorics and Optimization (Quantum Information) is a Master of Mathematics program offered at the University of Waterloo, created in partnership with the Institute for Quantum Computing (IQC). This program enhances your mathematical research capabilities while providing an in-depth understanding of quantum information theory and its practical applications.
The curriculum is designed around graduate-level coursework and research training, allowing you to develop essential tools for addressing complex challenges at the intersection of combinatorics, optimization, and quantum information processing.
Typical components of the program include:
It is recommended that you check the official University of Waterloo program page for the most current degree requirements and curriculum structure.
Applicants should possess a four-year honours bachelor degree (or equivalent) in mathematics or a closely related field, typically with a strong academic record. While no specific GRE/GMAT scores are mandatory, it is advisable for applicants from outside Canada to consider taking the GRE subject test in mathematics.
English proficiency is essential. The program accepts the following minimum scores:
Application materials include a Supplementary Information Form (SIF), transcripts, and references. It is beneficial to highlight any relevant coursework or research experience in quantum information, optimization, or combinatorics in your application.
Graduates of the Combinatorics and Optimization (Quantum Information) program are well-positioned for a variety of career paths in academia, research institutions, and industries that leverage quantum computing technologies. The skills acquired during this program open doors to roles in data analysis, algorithm development, and theoretical research, among others.
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