国际学生入学条件
Senior Secondary school credential appropriate for entry to university in your home country
Academically rigorous grade 12 year
Minimum B- average (higher for some programs)
Ontario Secondary School Diploma (OSSD)
Minimum six Grade 12 4U or 4M-level credits, including program specific prerequisites
A minimum admission average of 70% (many programs require a higher average)
IELTS - Academic (overall 6.5, no band below 6.0)
TOEFL - overall 88, no band below 21
Duolingo - minimum score of 110
CAEL - overall 70, no band below 60
PTE - 58
IELP - Level 5 Successful completion of Level 5 of the Brock Intensive English Language program
CAE (A1 Advanced) -176 minimum score
CPE (C2 Proficiency) -176 minimum score
IB - Completion of the International Baccalaureate diploma with English A
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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:88
- 托福笔试总分:160
- 其他语言考试:PTE - 58
CRICOS代码:
申请截止日期: 请与IDP顾问联系以获取详细信息。
课程简介
我们拥有该领域一些最先进的设备。而其他学校通常会保留最新的设备专门用于研究
We have some of the most advanced equipment in the field. While other schools often reserve the newest equipment exclusively for research, all of Brock's facilities are used for both teaching and research.Our commitment to hands-on learning makes our graduates especially skilled and adept scientists. Youll be a key partner in our research activities, participating in special research courses and paid summer research. You might even have the opportunity to co-author a publication.<br><br>Our programs stress chemical principles and practice through research in organic, inorganic, analytical, physical and theoretical chemistry, with a strong emphasis on the interdisciplinary fields of bio-inorganic and bio-organic chemistry and chemical biophysics. Research interests of the department include development of new chiral ligands, organometallic reagents, methods for asymmetric synthesis, green chemistry as well as protein affinity labelling and protein-lipid interactions, and structure-activity correlations of anticancer pharmaceuticals. Other interests include ligand design and crystal engineering aimed at self-assembly of novel molecule-based materials, design of new ligand platforms for low oxidation state main-group compounds, advanced laser spectroscopy and microscopy, novel nanostructured materials synthesis, organic matter characterization and trace contaminant analysis. Theoretical research focuses on studies to understand charge and energy transfer reactions in photosynthetic proteins.
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