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Styers, Melanie L.; Van Zandt, Peter A.; Hayden, Katherine L. – CBE - Life Sciences Education, 2018
Although development of critical thinking skills has emerged as an important issue in undergraduate education, implementation of pedagogies targeting these skills across different science, technology, engineering, and mathematics disciplines has proved challenging. Our goal was to assess the impact of targeted interventions in (1) an introductory…
Descriptors: Active Learning, Biological Sciences, Science Instruction, Critical Thinking
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Reeves, Todd D.; Hake, Laura E.; Chen, Xinnian; Frederick, Jennifer; Rudenga, Kristin; Ludlow, Larry H.; O'Connor, Clare M. – CBE - Life Sciences Education, 2018
Graduate teaching assistants (GTAs) play important instructional roles in introductory science courses, yet they often have little training in pedagogy. The most common form of teaching professional development (PD) for GTAs is a presemester workshop held at the course, department, or college level. In this study, we compare the effectiveness of…
Descriptors: Teaching Assistants, Graduate Students, Faculty Development, Introductory Courses
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Auerbach, A. J.; Higgins, M.; Brickman, P.; Andrews, T. C. – CBE - Life Sciences Education, 2018
Active-learning strategies "can" improve science, technology, engineering, and mathematics (STEM) undergraduates' abilities to learn fundamental concepts and skills. However, the results instructors achieve vary substantially. One explanation for this is that instructors commonly implement active learning differently than intended. An…
Descriptors: Teacher Characteristics, Active Learning, Beginning Teachers, Experienced Teachers
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Cleveland, Lacy M.; Olimpo, Jeffrey T.; DeChenne-Peters, Sue Ellen – CBE - Life Sciences Education, 2017
In response to calls for reform in undergraduate biology education, we conducted research examining how varying active-learning strategies impacted students' conceptual understanding, attitudes, and motivation in two sections of a large-lecture introductory cell and molecular biology course. Using a quasi-experimental design, we collected…
Descriptors: Teaching Methods, Science Instruction, Active Learning, Undergraduate Study
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Stoltzfus, Jon R.; Libarkin, Julie – CBE - Life Sciences Education, 2016
SCALE-UP-type classrooms, originating with the Student-Centered Active Learning Environment with Upside-down Pedagogies project, are designed to facilitate active learning by maximizing opportunities for interactions between students and embedding technology in the classroom. Positive impacts when active learning replaces lecture are well…
Descriptors: Active Learning, Lecture Method, Classrooms, Student Centered Learning
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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
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Gutierrez, Arnel F. – CBE - Life Sciences Education, 2014
The complex concepts and vocabulary of biology classes discourage many students. In this study, a pretest-posttest model was used to test the effectiveness of an educational card game in reinforcing biological concepts in comparison with traditional teaching methods. The subjects of this study were two biology classes at Bulacan State…
Descriptors: Foreign Countries, Educational Games, Biology, Science Instruction
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Smith, James J.; Cheruvelil, Kendra Spence; Auvenshine, Stacie – CBE - Life Sciences Education, 2013
Phylogenetic trees provide visual representations of ancestor-descendant relationships, a core concept of evolutionary theory. We introduced "tree thinking" into our introductory organismal biology course (freshman/sophomore majors) to help teach organismal diversity within an evolutionary framework. Our instructional strategy consisted…
Descriptors: Biology, College Science, Introductory Courses, Undergraduate Students
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Knight, Jennifer K.; Smith, Michelle K. – CBE - Life Sciences Education, 2010
Introductory biology courses are frequently offered separately to biology majors and nonbiology majors, with the assumption that the two groups of students are different enough to merit different courses. To assess the evidence behind this assumption, we compared students in two different genetics classes at the University of Colorado-Boulder, one…
Descriptors: Nonmajors, Majors (Students), Fundamental Concepts, Genetics
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Perry, Judy; Meir, Eli; Herron, Jon C.; Maruca, Susan; Stal, Derek – CBE - Life Sciences Education, 2008
To understand evolutionary theory, students must be able to understand and use evolutionary trees and their underlying concepts. Active, hands-on curricula relevant to macroevolution can be challenging to implement across large college-level classes where textbook learning is the norm. We evaluated two approaches to helping students learn…
Descriptors: Evolution, Biology, Hands on Science, College Science