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Sharleen Flowers; Kal H. Holder; Gabrielle K. Rump; Stephanie M. Gardner – CBE - Life Sciences Education, 2023
Explaining biological phenomena requires understanding how different processes function and describing interactions between components at various levels of organization over time and space in biological systems. This is a desired competency yet is a complicated and often challenging task for undergraduate biology students. Therefore, we need a…
Descriptors: Undergraduate Students, Cytology, Biology, Scientific Concepts
Emily K. Bremers; Olive K. McKay; Julie Dangremond Stanton – CBE - Life Sciences Education, 2025
When students use metacognition, they can more effectively problem solve on their own and in groups. Most metacognition studies have focused on individual learners while a few studies have begun to explore the metacognition learners use in social settings. Little is known about the comparison between how an individual student may use metacognition…
Descriptors: College Science, Biology, Metacognition, Problem Solving
Song, Changsoo; Helikar, Resa; Smith, Wendy M.; Helikar, Tomáš – CBE - Life Sciences Education, 2023
Acquiring computational modeling and simulation skills has become ever more critical for students in life sciences courses at the secondary and tertiary levels. Many modeling and simulation tools have been created to help instructors nurture those skills in their classrooms. Understanding the factors that may motivate instructors to use such tools…
Descriptors: Science Teachers, Cytology, Influences, Computer Uses in Education
Zukswert, Jenna M.; Barker, Megan K.; McDonnell, Lisa – CBE - Life Sciences Education, 2019
The excessive "jargon" load in biology may be a hurdle for developing conceptual understanding as well as achieving core competencies such as scientific literacy and communication. Little work has been done to characterize student understanding of biology-specific jargon. To address this issue, we aimed to determine the types of biology…
Descriptors: Science Instruction, Scientific Literacy, Jargon, Biology
Uhl, Juli D.; Sripathi, Kamali N.; Meir, Eli; Merrill, John; Urban-Lurain, Mark; Haudek, Kevin C. – CBE - Life Sciences Education, 2021
The focus of biology education has shifted from memorization to conceptual understanding of core biological concepts such as matter and energy relationships. To examine undergraduate learning about matter and energy, we incorporated constructed-response (CR) questions into an interactive computer-based tutorial. The objective of this tutorial is…
Descriptors: Computer Assisted Testing, Writing Evaluation, Science Education, Biology
Gauthier, Andrea; Jantzen, Stuart; McGill, Gaël; Jenkinson, Jodie – CBE - Life Sciences Education, 2019
This paper discusses the results of two experiments assessing undergraduate students' beliefs about the random nature of molecular environments. Experiment 1 involved the implementation of a pilot adaptive assessment (n = 773) and focus group discussions with undergraduate students enrolled in first- through third-year biology courses; experiment…
Descriptors: Molecular Biology, Undergraduate Students, Student Attitudes, Misconceptions
CBE - Life Sciences Education, 2021
Abstract biological processes that occur at the submicroscopic level, such as osmosis and diffusion, are inherently difficult for many students to conceptualize when traditional learning and teaching methods are used. This study introduced an immersive 320° three-dimensional (3D) experience of osmosis in which students became engaged with the…
Descriptors: Science Instruction, Teaching Methods, Outcomes of Education, Multiple Choice Tests
Weber, Carolyn F. – CBE - Life Sciences Education, 2016
Western science has grown increasingly reductionistic and, in parallel, the undergraduate life sciences curriculum has become disciplinarily fragmented. While reductionistic approaches have led to landmark discoveries, many of the most exciting scientific advances in the late 20th century have occurred at disciplinary interfaces; work at these…
Descriptors: Cytology, College Science, Interdisciplinary Approach, Undergraduate Study
Hoskinson, Anne-Marie; Maher, Jessica Middlemis; Bekkering, Cody; Ebert-May, Diane – CBE - Life Sciences Education, 2017
Calls for undergraduate biology reform share similar goals: to produce people who can organize, use, connect, and communicate about biological knowledge. Achieving these goals requires students to gain disciplinary expertise. Experts organize, access, and apply disciplinary knowledge differently than novices, and expertise is measurable. By asking…
Descriptors: Undergraduate Students, Biology, Science Instruction, Expertise
Bass, Kristin M.; Drits-Esser, Dina; Stark, Louisa A. – CBE - Life Sciences Education, 2016
The credibility of conclusions made about the effectiveness of educational interventions depends greatly on the quality of the assessments used to measure learning gains. This essay, intended for faculty involved in small-scale projects, courses, or educational research, provides a step-by-step guide to the process of developing, scoring, and…
Descriptors: Sciences, Knowledge Level, Educational Research, High School Students
Malinska, Lilianna; Rybska, Eliza; Sobieszczuk-Nowicka, Ewa; Adamiec, Malgorzata – CBE - Life Sciences Education, 2016
University students often struggle to understand the role of water in plant cells. In particular, osmosis and plasmolysis appear to be challenging topics. This study attempted to identify student difficulties (including misconceptions) concerning osmosis and plasmolysis and examined to what extent the difficulties could be revised during a plant…
Descriptors: College Students, College Science, Water, Plants (Botany)
Zagallo, Patricia; Meddleton, Shanice; Bolger, Molly S. – CBE - Life Sciences Education, 2016
We present our design for a cell biology course to integrate content with scientific practices, specifically data interpretation and model-based reasoning. A 2-year research project within this course allowed us to understand how students interpret authentic biological data in this setting. Through analysis of written work, we measured the extent…
Descriptors: Undergraduate Students, Science Education, Cytology, Instructional Design
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
Goff, Eric E.; Reindl, Katie M.; Johnson, Christina; McClean, Phillip; Offerdahl, Erika G.; Schroeder, Noah L.; White, Alan R. – CBE - Life Sciences Education, 2017
Recent reports calling for change in undergraduate biology education have resulted in the redesign of many introductory biology courses. Reports on one common change to course structure, the active-learning environment, have placed an emphasis on student preparation, noting that the positive outcomes of active learning in the classroom depend…
Descriptors: Animation, Cytology, Science Instruction, Instructional Effectiveness
Barber, Nicola C.; Stark, Louisa A. – CBE - Life Sciences Education, 2014
Cells are bustling factories with diverse and prolific arrays of molecular machinery. Remarkably, this machinery self-organizes to carry out the complex biochemical activities characteristic of life. When Watson and Crick published the structure of DNA, they noted that DNA base pairing creates a double-stranded form that provides a means of…
Descriptors: Science Instruction, Biochemistry, Genetics, Molecular Structure