国际学生入学条件
A Master's degree, or equivalent, from a recognized university in an academic discipline relevant to the proposed field of study.
A cumulative weighted average of at least 70% (USask grade system equivalent) in the Master's degree.
Demonstrated ability for independent thought, advanced study, and research.
English language proficiency requirements
- IELTS - Fully qualified: Overall score of 6.5 with no score below 6.0 in each area
- TOEFL iBT - Fully qualified: Overall score of 86 with minimum scores of 19 in each area
- Cambridge C1 Advanced - Fully qualified: Overall score of 176
- Duolingo English Test (DET) - Overall score of 115, with minimum individual scores of 95 in each area
- PTE Academic - Fully qualified: Overall score of 63 with minimum scores of 59 in each area
- CAEL - Minimum score of 70%, with minimum individual scores of 60
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IDP—雅思考试联合主办方

雅思考试总分
6.5
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雅思考试指南
- 雅思总分:6.5
- 托福网考总分:86
- 托福笔试总分:160
- 其他语言考试:PTE Academic - Overall score of 63 With minimum individual skills scores of Reading 59, Listening 59, Speaking 59, Writing 59
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申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
化学和生物工程系由15名教职员工(包括1名加拿大研究主席)和4名技术人员组成。学院从事四个主要主题的研究
This research-based program will allow you to conduct original research with access to state-of-the-art facilities, research centres, and labs. Our faculty have a focus on the following research areas:<br><br>Biochemical engineering<br>Research in the area of biotechnology involves the studies of biodegradation, biofilms, bioreactor design, drying of spores, gasohol purification, VOC bioremediation, recombinant fermentation, and metabolic engineering and functional genomics.<br><br>Corrosion<br>Predictive modelling and experimental studies are underway relating to corrosion in a wide range of industrial systems.<br><br>Fluid mechanics<br>Multiphase pipeline flow, rheology and fluidization are at the centre of both experimental and theoretical studies of fluid mechanics<br><br>Reaction engineering<br>In the area of chemical reaction engineering, conversion of biomass and other waste materials to synthesis gas and value-added bioproducts, biodiesel production and utilization, alkylation and isomerization to value-added bio-products, hydrotreating of heavy gas oil, conversion of mercaptans and hydrogen sulphide on carbon catalysts, production and utilization of activated carbon and production and applications of carbon nano-tubes, the development of renewable source of energy and chemicals from biomass-derived oils under catalytic reaction conditions was studied. The role of catalysts in the abatement of gaseous pollutants from coal-fired power plants has also been examined.<br><br>Thermodynamics<br>The phase equilibria of industrially important systems have been studied with a view to improving existing process design.
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