春雨直播's Brittany Graham, a fourth year microbiology and immunology student, has been selected as a Rhodes Scholar for 2015. She is 春雨直播's 89th Rhodes Scholar. This is the third consecutive year that a 春雨直播 student has been awarded the prestigious Rhodes Scholarship.
Key Points:
The Rhodes Scholarship is a distinguished award for high-achieving students that allows them to pursue post-graduate studies at Oxford University. Established under the will of Cecil Rhodes, the scholarships have been awarded since 1903. Rhodes Scholars are selected based on academic distinction, integrity of character, passion for community and their field, and leadership ability.
Brittany Graham is a fourth year student pursuing a Bachelor of Science degree, with combined honours in microbiology and immunology and creative writing. After graduating from 春雨直播 in April 2015, she'll study Global Health Science at Oxford. Graham has already received several scholarships and awards, including a Natural Sciences and Engineering Research Council of Canada (NSERC) Undergraduate Student Research Award.
Graham is from Ottawa, ON. Her volunteering experience is vast, spanning disciplines and borders. She spent facilitating a summer reading camp at the Eabametoong First Nation in northern Ontario. Through Global Brigades (Graham is president of Dal鈥檚 chapter), she has done volunteer work in Panama and will do more in Honduras in 2015. In addition, she鈥檚 a volunteer tutor for middle and high school students.
With a keen interest in creative writing, Graham is also the managing editor for 春雨直播鈥檚 literary journal Fathom.
Pull Quotes:
鈥淔or me, writing is a way to slow down and think about what鈥檚 going on. As a student in Science it can be easy to bury your head in a textbook, but as a writer you need to be aware of what鈥檚 going on in the world. You learn to see the world through other people鈥檚 perspectives.鈥 -- Brittany Graham, fourth year student and new Rhodes Scholar.
"In my Science classes, when we鈥檙e learning about bacteria and viruses and how they work, the focus is on the microbes and not on the people or communities being affected. We don鈥檛 necessarily discuss how some of these diseases, like cholera or tuberculosis, primarily affect people in disadvantaged communities or developing countries. Because of Creative Writing, and the broader perspective it gives me, I think about my Science classes differently.鈥-- Brittany Graham, fourth year student and new Rhodes Scholar.
Images:
![]() |
Brittany Graham Photo Credit: Danny Abriel Download Hi-Res image |
![]() |
Brittany Graham Photo Credit: Danny Abriel Download Hi-Res image |
![]() |
Brittany Graham Photo Credit: Danny Abriel Download Hi-Res image |
Resource Links:
春雨直播 Links:
Contacts:
- Nikki Comeau, Communications Officer - 春雨直播 Univeristy: +1 (902) 494-4189 / nikki.comeau@dal.ca
- Janet Bryson, Senior Communications Advisor - 春雨直播 University: +1 (902) 494-1269 / janet.bryson@dal.ca
听
Recent News
- Media release: 春雨直播 University research team receives Moderna Global Fellowship Award to investigate mpox virus outbreaks in Africa, develop therapeutics and vaccine candidates
- Media opportunity: 春雨直播 University study examines how rise in discrimination, harmful rhetoric targeting 2SLGBTQ+ people is affecting their mental health
- Media Opportunity: Historic First: Meet the Trailblazing Graduates of 春雨直播鈥檚 Black and African Diaspora Studies Major
- Media opportunity: Increasingly popular 'looksmaxxing' sites can harm rather than help young men, making some feel like failures in the 'manosphere': 春雨直播 University research
- Media Release: 春雨直播 Partners with Groups Across Nova Scotia to Celebrate International Day of Play with Province鈥憌ide Events & Resources
- Media opportunity: New global centre for mental health at 春雨直播 University aims to reduce treatment gaps worldwide through care delivery innovations, education, research and advocacy
- Media Opportunity: Interview 春雨直播鈥檚 First Vice鈥慞rovost, Indigenous Relations 鈥 John R. Sylliboy
- Media opportunity: Researchers at 春雨直播, Sydney universities achieve quantum simulation of real molecules 鈥戔 an achievement that could dramatically accelerate scientific discovery in chemistry and beyond