Engaging Indigenous Youth in Science with the High-Altitude Balloon Experiment
- 1 Department of Chemistry and Biochemistry, University of Regina, Regina, Canada
- 2 Department of Indigenous Science, The Environment and Economic Development, First Nations University of Canada, Regina, Canada
- 3 Department of Indigenous Science, The Environment and Economic Development, First Nations University of Canada, Regina, Canada
- 4 Department of Computer Science, University of Regina, Regina, Canada
Abstract
Our custom high-altitude balloon experiment kit with the complete set of instructions has been successfully used to engage high school and post-secondary students across Canada. This article describes how the high-altitude balloon experiment was adapted to engage Indigenous students from two on-reserve schools in science with the presence of an Elder. Based on the results from our research, while the balloon experiment is an effective tool to engage Indigenous students, the project doesn’t change the participants’ interest in science. We are making several suggestions to bring the experiment to its full potential. It would be more beneficial to make the high-altitude balloon experiment as a multi-day workshop or a major component of a science summer camp. Further, it would be more effective to integrate the balloon experiment into the high school science curriculum rather than run it as an independent event in the on-reserve schools. Finally, we are suggesting how student participation of the survey can be improved for on-reserve schools.
- Aikenhead, G. S. (2013). Science, Technology, Engineering and Mathematics Education and Related Employment for Indigenous Students and Citizens of Saskatchewan. Melbourne: Australian Council of Learned Academies.
- Anderson, B., & Richards, J. (2016). Students in Jeopardy: An Agenda for Improving Results in Band-Operated Schools. Toronto, ON: C.D. Howe Institute. https://doi.org/10.2139/ssrn.2724140
- Assembly of First Nations (2012). 2011 AFN School Survey Results. http://www.afn.ca/2013/08/28/afn-2011-education-survey-results/
- Beck-Winchatz, B., & Bramble, J. (2014). High Altitude Ballooning Student Research with Yeast and Plant Seeds. Gravitational & Space Biology, 25, 117-127.
- Castellano, M. B. (2004). Ethics of Aboriginal Research. Journal of Aboriginal Health, 1, 98-114.
- Coleman, J. M., & Mitchell, M. (2014). Active Learning in the Atmospheric Science Classroom and beyond through High Altitude Ballooning. Journal of College Science Teaching, 44, 26-30. https://doi.org/10.2505/4/jcst14_044_02_26
- Faltersack, B., Maraccini, J., Petrie, J., & Rasmussen, T. T. (2016). 2016 Elijah High Altitude Balloon Launch Team Summer Proceedings Report. In Proceedings of the 26th Wisconsin Space Conference: Beyond the Horizon. Kenosha, WI: Wisconsin Space Grant Consortium.
- Fong, B. N., Kennon, J. T., & Roberts, E. (2016). Integrating BalloonSAT and Atmospheric Dynamic Concepts into the Secondary Classroom. The Physics Teacher, 54, 264-267. https://doi.org/10.1119/1.4947150
- Gottfried, M. A., & Williams, D. N. (2013). STEM Club Participation and STEM Schooling Outcomes. Education Policy Analysis Archives, 21, 1-23.
- Henderson, R. I., Williams, K., & Crowshoe, L. (2015). Mini-Med School for Aboriginal Youth: Experiential Science Outreach to Tackle Systemic Barriers. Medical Education Online, 20, 1-7. https://doi.org/10.3402/meo.v20.29561
- Hike, N., & Beck-Winchatz, B. (2015). Near Space Science: A Ballooning Project to Engage Students with Space beyond the Big Screen. The Science Teacher, 82, 29-36.
- Ji, P. Y., Pokorny, S. B., & Jason, L. A. (2004). Factors Influencing Middle and High Schools’ Active Parental Consent Return Rates. Evaluation Review, 28, 578-591. https://psycnet.apa.org/doi/10.1177/0193841X04263917 https://doi.org/10.1177/0193841X04263917
- Kanu, Y. (2007). Increasing School Success among Aboriginal Students: Culturally Responsive Curriculum or Macrostructural Variables Affecting Schooling? Diaspora, Indigenous, and Minority Education, 1, 21-41.