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Elise M. Walck-Shannon; Heather D. Barton; Shaina F. Rowell; Douglas L. Chalker; Angela Fink – CBE - Life Sciences Education, 2025
Recently, our course team transformed a large-enrollment introductory genetics course from being predominantly lecture based to active learning based. During class sessions, students engaged in problem solving, which occurs when a student attempts to solve a problem without knowing the path to complete it. We designed class activities…
Descriptors: Active Learning, Genetics, Learning Activities, Inquiry
Xinjian Cen; Maci Kight; Rachel Lee; Petra Kranzfelder; Stanley M. Lo; Jeffrey Maloy; Melinda T. Owens – CBE - Life Sciences Education, 2025
Instructors often provide feedback to their class in multiple ways. One way is through their follow-up behaviors, which are the specific strategies instructors implement after active learning activities. These behaviors could play an important role in student learning as students receive feedback from the instructor. However, there is little…
Descriptors: Teacher Behavior, Active Learning, Feedback (Response), Lesson Observation Criteria
Stacy M. Alvares; J. Gwen Shlichta; Jenny L. McFarland; Elli J. Theobald – CBE - Life Sciences Education, 2023
Random call has been proposed as an inclusive and equitable practice that engages students in learning. However, this inclusion may come with a cost. In some contexts, students experience anxiety and distress when being called on. Recently, focus has shifted to critical components of random call that may mitigate this cost. We examined how…
Descriptors: Community College Students, Biology, Student Participation, Student Attitudes
Eli Meir; Denise Pope; Joel K. Abraham; Kerry J. Kim; Susan Maruca; Jennifer Palacio – CBE - Life Sciences Education, 2024
Active learning approaches to biology teaching, including simulation-based activities, are known to enhance student learning, especially of higher-order skills; nonetheless, there are still many open questions about what features of an activity promote optimal learning. Here we designed three versions of a simulation-based tutorial called…
Descriptors: Learning Activities, Thinking Skills, Feedback (Response), Active Learning
Cooper, Katelyn M.; Schinske, Jeffrey N.; Tanner, Kimberly D. – CBE - Life Sciences Education, 2021
A key tenet of the nature of science is that "knowledge, although reliable and durable, is never absolute or certain" and is subject to change with the accrual of new bodies of evidence (Lederman "et al." 2002). Similarly, pedagogical choices grounded in scientific teaching would also be expected to be modified, refined, and…
Descriptors: Science Instruction, Cooperative Learning, Active Learning, Instructional Effectiveness
Katherine A. Clements; Kyle T. Vallone; Thomas P. Clements; Elizabeth H. Catania; Lily L. Claiborne; Katherine L. Friedman; Todd R. Graham; Heather J. Johnson; Savanna R. Starko; Tara D. Todd; Jessica Watkins; Cynthia J. Brame – CBE - Life Sciences Education, 2025
Students often experience science, technology, engineering, and mathematics (STEM) courses as competitive, weed-out spaces. Learning Assistants (LAs) have potential to improve students' experiences in these courses. Previously, we elucidated themes describing the impact of LAs on students' sense of STEM belonging and science-related confidence in…
Descriptors: STEM Education, Sense of Belonging, Self Esteem, Teaching Assistants
Pfeifer, Mariel A.; Cordero, Julio J.; Stanton, Julie Dangremond – CBE - Life Sciences Education, 2023
Our understanding of how active learning affects different groups of students is still developing. One group often overlooked in higher education research is students with disabilities. Two of the most commonly occurring disabilities on college campuses are attention-deficit/hyperactivity disorder (ADHD) and specific learning disorders (SLD). We…
Descriptors: Active Learning, Educational Experience, Self Advocacy, STEM Education
Gouvea, Julia Svoboda – CBE - Life Sciences Education, 2021
Inspired by the biology education research community's collective reading of Kendi's "How to Be an Antiracist," I draw together recent articles related to "achievement gaps"--a construct identified by Kendi as perpetuating racist ideas. At the same time, I recognize that, for many in science, technology, engineering, and…
Descriptors: Racial Bias, Racial Discrimination, Achievement Gap, STEM Education
Tala Araghi; Carly A. Busch; Katelyn M. Cooper – CBE - Life Sciences Education, 2023
College science courses continue to transition from traditional lecture to active learning, which has been shown to have both alleviating and exacerbating effects on undergraduate mental health. Notably, existing studies have primarily examined the relationship between active learning and anxiety, and no studies have specifically assessed the…
Descriptors: Active Learning, Science Education, Depression (Psychology), Undergraduate Students
McConnell, Melody; Boyer, Jeffrey; Montplaisir, Lisa M.; Arneson, Jessie B.; Harding, Rachel L. S.; Farlow, Brian; Offerdahl, Erika G. – CBE - Life Sciences Education, 2021
There is a growing need for valid and reliable measures to monitor the efficacy of undergraduate science, technology, engineering, and mathematics (STEM) reform initiatives. The Classroom Observation Protocol for Undergraduate STEM (COPUS) is a widely used tool originally designed to measure the presence of overt instructor and student behaviors.…
Descriptors: Teaching Methods, STEM Education, Undergraduate Students, Evaluation Methods
Bolger, Molly S.; Osness, Jordan B.; Gouvea, Julia S.; Cooper, Alexandra C. – CBE - Life Sciences Education, 2021
Modeling is a scientific practice that supports creative reasoning, motivates inquiry, and facilitates community sense-making. This paper explores students' perspectives on modeling in an undergraduate laboratory course, Authentic Inquiry through Modeling (AIM-Bio), in which they proposed, tested, and revised their own models. We conducted…
Descriptors: Inquiry, Active Learning, Models, Undergraduate Students
Hyson, Audrey Rose; Bonham, Branden; Hood, Suzanne; Deutschman, Megan C.; Seithers, Laura C.; Hull, Kerry; Jensen, Murray – CBE - Life Sciences Education, 2021
This paper presents community college (CC) instructors' responses to the Community College Anatomy and Physiology Educational Research (CAPER) project, a professional development program focused on active learning and educational research. We engage with conceptual change theory to better understand why and how CC instructors shifted their…
Descriptors: Faculty Development, Attitude Change, Teacher Attitudes, Teaching Methods
Keller, Arielle S.; Davidesco, Ido; Tanner, Kimberly D. – CBE - Life Sciences Education, 2020
Attention is thought to be the gateway between information and learning, yet there is much we do not understand about how students pay attention in the classroom. Leveraging ideas from cognitive neuroscience and psychology, we explore a framework for understanding attention in the classroom, organized along two key dimensions: internal/external…
Descriptors: Attention, Attention Control, Classroom Techniques, Cognitive Processes
Jacob Woodbury; Erika Offerdahl – CBE - Life Sciences Education, 2024
Team-based learning (TBL) is a highly intense active learning pedagogy that uses a cycle of preclass preparation, formative assessment for readiness, mini-lectures, and complex team exercises. Consistent with the literature on active learning, prior research on TBL consistently shows its benefits for student outcomes as compared with previous…
Descriptors: Academic Achievement, Biochemistry, Cooperative Learning, Teamwork
Clements, Thomas P.; Friedman, Katherine L.; Johnson, Heather J.; Meier, Cole J.; Watkins, Jessica; Brockman, Amanda J.; Brame, Cynthia J. – CBE - Life Sciences Education, 2022
Large introductory science courses are a particularly important and challenging target for creating inclusive learning environments. In this study, we examined the impact of incorporating learning assistants (LAs) on the learning environment in an introductory biology course taught with two different structures: an in-person lecture with…
Descriptors: Introductory Courses, Science Education, Large Group Instruction, Teaching Assistants

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