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Kamali Sripathi; Aidan Hoskinson – CBE - Life Sciences Education, 2024
Genetic variation is historically challenging for undergraduate students to master, potentially due to its grounding in both evolution and genetics. Traditionally, student expertise in genetic variation has been evaluated using Key Concepts. However, Cognitive Construals may add to a more nuanced picture of students' developing expertise. Here, we…
Descriptors: Genetics, Undergraduate Students, Science Instruction, Evolution
Clare G. -C. Franovic; Nicholas R. Williams; Keenan Noyes; Michael W. Klymkowsky; Melanie M. Cooper – CBE - Life Sciences Education, 2023
Concerns regarding students' difficulties with the concept of energy date back to the 1970s. They become particularly apparent for systems involving adenosine triphosphate (ATP), which plays a central role in maintaining the nonequilibrium state of biological systems and in driving energetically unfavorable processes. One of the most…
Descriptors: Energy, Biology, Misconceptions, Scientific Concepts
Ash Tea; Dax Ovid – CBE - Life Sciences Education, 2024
Informed by social science fields including psychology and public health, we propose a Model for Emotional Intelligence to advance biology education research in affective learning. The model offers a shared discourse for biology education researchers to develop and assess evidence-based strategies to perceive, use, understand, and manage emotions…
Descriptors: Undergraduate Students, Science Instruction, Biology, Emotional Intelligence
Joelyn de Lima; Tammy M. Long – CBE - Life Sciences Education, 2023
Evolution is foundational to understanding biology, yet learners at all stages have incomplete and incorrect ideas that persist beyond graduation. Contextual features of prompts (e.g., taxon of organism, acquisition vs. loss of traits, etc.) have been shown to influence both the learning process and the ideas students express in explanations of…
Descriptors: Evolution, Biology, Human Body, Animals
Megan Shiroda; Clare G.-C. Franovic; Joelyn de Lima; Keenan Noyes; Devin Babi; Estefany Beltran-Flores; Jenna Kesh; Robert L. McKay; Elijah Persson-Gordon; Melanie M. Cooper; Tammy M. Long; Christina V. Schwarz; Jon R. Stoltzfus – CBE - Life Sciences Education, 2024
Causal mechanistic reasoning is a thinking strategy that can help students explain complex phenomena using core ideas commonly emphasized in separate undergraduate courses, as it requires students to identify underlying entities, unpack their relevant properties and interactions, and link them to construct mechanistic explanations. As a…
Descriptors: Undergraduate Students, College Faculty, STEM Education, Science Instruction
Jeong, Sophia; Clyburn, Jakayla; Bhatia, Nikhil S.; McCourt, Jill; Lemons, Paula P. – CBE - Life Sciences Education, 2022
An important facet of inclusive, student-centered science teaching is for college instructors to reveal and respond to student thinking. Professional development (PD) provides formal settings for instructors to develop skills attending and responding to student ideas in their teaching. Using the lens of sociocultural theory, the purpose of this…
Descriptors: Professional Development, Science Instruction, College Faculty, Communities of Practice
Elise M. Walck-Shannon; Shaina F. Rowell; April E. Bednarski; Ashton M. Barber; Grace J. Yuan; Regina F. Frey – CBE - Life Sciences Education, 2024
Students struggle to regulate their learning during independent study sessions. In this study, we ask whether an online behavioral intervention helped introductory students decrease distraction while studying. The intervention consisted of exam 1 reflection, exam 2 planning, and exam 2 reflection exercises. During planning, students formed a goal,…
Descriptors: Introductory Courses, Biology, Science Instruction, Attention
Erin M. Ball; Robin A. Costello; Cissy J. Ballen; Rita M. Graze; Eric W. Burkholder – CBE - Life Sciences Education, 2024
Racial biases, which harm marginalized and excluded communities, may be combatted by clarifying misconceptions about race during biology lessons. We developed a human genetics laboratory activity that challenges the misconception that race is biological (biological essentialism). We assessed the relationship between this activity and student…
Descriptors: Race, Genetics, Misconceptions, Undergraduate Students
Ryan D. P. Dunk; Sarah J. Malmquist; Kristina K. Prescott; Sharday N. Ewell; Jeremiah A. Henning; Cissy J. Ballen – CBE - Life Sciences Education, 2024
Cisheteronormative ideologies are infused into every aspect of society, including undergraduate science. We set out to identify the extent to which students can identify cisheteronormative language in biology textbooks by posing several hypothetical textbook questions and asking students to modify them to make the language more accurate (defined…
Descriptors: Biology, Science Instruction, Textbooks, Textbook Content
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
Jeremy L. Hsu; Rou-Jia Sung; Su L. Swarat; Alexandra J. Gore; Stephanie Kim; Stanley M. Lo – CBE - Life Sciences Education, 2024
Existing research has investigated student problem-solving strategies across science, technology, engineering, and mathematics; however, there is limited work in undergraduate biology education on how various aspects that influence learning combine to generate holistic approaches to problem solving. Through the lens of situated cognition, we…
Descriptors: Problem Solving, Biology, Science Instruction, Holistic Approach
Diane K. Angell; Sharon Lane-Getaz; Taylor Okonek; Stephanie Smith – CBE - Life Sciences Education, 2024
Preparing for exams in introductory biology classrooms is a complex metacognitive task. Focusing on lower achieving students (those with entering ACT scores below the median at our institution), we compared the effect of two different assignments distributed ahead of exams by dividing classes in half to receive either terms to define or open-ended…
Descriptors: Test Preparation, Metacognition, Introductory Courses, Biology
A. C. Cooper; J. B. Osness; S. D. Hester; M. S. Bolger – CBE - Life Sciences Education, 2024
Undergraduate laboratory courses can provide opportunities for students to participate in science practices. This requires rethinking both curricula and instruction. Science practice--based courses require students to be positioned as epistemic agents, implying a shift in instructor role. Teaching assistants (TAs) are the primary instructors for…
Descriptors: Teaching Assistants, Science Laboratories, Science Instruction, Science Process Skills
G. B. Jablonski; A. S. Grinath – CBE - Life Sciences Education, 2023
Science advances through the interplay of idea construction and idea critique. Our goal was to describe varied forms of productive disciplinary engagement that emerged during primary literature discussions. Such descriptions are necessary for biology educators and researchers to design for and recognize diverse repertoires of participation in the…
Descriptors: Biology, Science Education, Primary Sources, Scientific Research
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