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Vrentas, Catherine E.; Zinnen, Thomas M. – Journal of Extension, 2018
Small-scale science activities provide an opportunity for engagement of diverse, large audiences at settings such as 4-H fairs. We present practical information for implementation of small-scale food science experiences in the Extension education context. Our focus is description of a tool for adaptation of activities for inquiry-based learning…
Descriptors: Science Activities, Youth Programs, Food, Inquiry
Goodman, Barbara E. – Advances in Physiology Education, 2016
The American Physiological Society (APS) Teaching Section annually honors an educator through its Claude Bernard Distinguished Lecture at the Experimental Biology meeting. Since I knew about my selection for almost a year, I had a long time to think about what I wanted to say and how I wanted to say it. The theme of my presentation was…
Descriptors: Student Centered Learning, Active Learning, Physiology, Team Teaching
Batzli, Janet M.; Smith, Amber R.; Williams, Paul H.; McGee, Seth A.; Dosa, Katalin; Pfammatter, Jesse – CBE - Life Sciences Education, 2014
Genetics instruction in introductory biology is often confined to Mendelian genetics and avoids the complexities of variation in quantitative traits. Given the driving question "What determines variation in phenotype (Pv)? (Pv=Genotypic variation Gv + environmental variation Ev)," we developed a 4-wk unit for an inquiry-based laboratory…
Descriptors: Genetics, Units of Study, Plants (Botany), Statistical Analysis
Bergtrom, Gerald – Journal of Asynchronous Learning Networks, 2011
The principles of course redesign that were applied to a gateway Cell Biology course at the University of Wisconsin-Milwaukee are applicable to courses large and small, and to institutions of any size. The challenge was to design a content-rich science course that kept pace with present and future content and at the same time use principles of…
Descriptors: Active Learning, Cytology, Biology, Science Curriculum
Lu, Fong-Mei; Eliceiri, Kevin W.; Squirrell, Jayne M.; White, John G.; Stewart, James – CBE - Life Sciences Education, 2008
This study was undertaken to gain insights into undergraduate students' understanding of early embryonic development, specifically, how well they comprehend the concepts of volume constancy, cell lineages, body plan axes, and temporal and spatial dimensionality in development. To study student learning, a curriculum was developed incorporating…
Descriptors: Undergraduate Students, Inquiry, Active Learning, Scientific Concepts