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Bhatia, Kush S.; Stack, Austin; Sensibaugh, Cheryl A.; Lemons, Paula P. – CBE - Life Sciences Education, 2022
Research on student thinking facilitates the design of instructional materials that build on student ideas. The pieces framework views student knowledge as consisting of independent pieces that students assemble in fluctuating ways based on the context at hand. This perspective affords important insights about the reasons students think the way…
Descriptors: Cognitive Processes, Undergraduate Students, Introductory Courses, Biology
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Price, Argenta M.; Kim, Candice J.; Burkholder, Eric W.; Fritz, Amy V.; Wieman, Carl E. – CBE - Life Sciences Education, 2021
A primary goal of science and engineering (S&E) education is to produce good problem solvers, but how to best teach and measure the quality of problem solving remains unclear. The process is complex, multifaceted, and not fully characterized. Here, we present a detailed characterization of the S&E problem-solving process as a set of…
Descriptors: Problem Solving, Science Education, Engineering Education, Teaching Methods
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Schramm, Thilo; Jose, Anika; Schmiemann, Philipp – CBE - Life Sciences Education, 2021
Evolutionary trees are central to learning about evolutionary processes, yet students at all educational levels struggle to read and interpret them. The synthetic tree-reading model (STREAM), based on published and not yet empirically tested models, was tested to determine whether the assumed hierarchy of the model could be substantiated and how…
Descriptors: Undergraduate Students, Graduate Students, Evolution, Visual Aids
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Tobler, Samuel; Köhler, Katja; Sinha, Tanmay; Hafen, Ernst; Kapur, Manu – CBE - Life Sciences Education, 2022
Undergraduate biology students' molecular-level understanding of stochastic (also referred to as random or noisy) processes found in biological systems is often limited to those examples discussed in class. Therefore, students frequently display little ability to accurately transfer their knowledge to other contexts. Furthermore, elaborate tools…
Descriptors: Undergraduate Students, Biology, Science Instruction, Molecular Biology
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Nelms, April A.; Segura-Totten, Miriam – CBE - Life Sciences Education, 2019
Student engagement in the analysis of primary scientific literature increases critical thinking, scientific literacy, data evaluation, and science process skills. However, little is known about the process by which expertise in reading scientific articles develops. For this reason, we decided to compare how faculty experts and student novices…
Descriptors: Primary Sources, Undergraduate Students, College Faculty, Novices
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Frey, Regina F.; McDaniel, Mark A.; Bunce, Diane M.; Cahill, Michael J.; Perry, Martin D. – CBE - Life Sciences Education, 2020
We previously reported that students' concept-building approaches, identified a priori using a cognitive psychology laboratory task, extend to learning complex science, technology, engineering, and mathematics topics. This prior study examined student performance in both general and organic chemistry at a select research institution, after…
Descriptors: Concept Formation, Problem Solving, Active Learning, Inquiry
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Prevost, Luanna B.; Lemons, Paula P. – CBE - Life Sciences Education, 2016
This study uses the theoretical framework of domain-specific problem solving to explore the procedures students use to solve multiple-choice problems about biology concepts. We designed several multiple-choice problems and administered them on four exams. We trained students to produce written descriptions of how they solved the problem, and this…
Descriptors: Biology, Undergraduate Students, Problem Solving, Multiple Choice Tests
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Angra, Aakanksha; Gardner, Stephanie M. – CBE - Life Sciences Education, 2017
Undergraduate biology education reform aims to engage students in scientific practices such as experimental design, experimentation, and data analysis and communication. Graphs are ubiquitous in the biological sciences, and creating effective graphical representations involves quantitative and disciplinary concepts and skills. Past studies…
Descriptors: Graphs, Biology, Science Instruction, College Science
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Deane, Thomas; Nomme, Kathy; Jeffery, Erica; Pollock, Carol; Birol, Gulnur – CBE - Life Sciences Education, 2014
Interest in student conception of experimentation inspired the development of a fully validated 14-question inventory on experimental design in biology (BEDCI) by following established best practices in concept inventory (CI) design. This CI can be used to diagnose specific examples of non-expert-like thinking in students and to evaluate the…
Descriptors: Foreign Countries, Undergraduate Students, Biology, Science Instruction
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Smith, Michelle K.; Wenderoth, Mary Pat; Tyler, Mary – CBE - Life Sciences Education, 2013
Many institutions require candidates for faculty positions to present a teaching demonstration as part of the interview process. To help job candidates prepare for this and to assist departments in planning how to structure this portion of the interview, we surveyed biology faculty from community and liberal arts colleges and master's- and…
Descriptors: College Faculty, Employment Interviews, Teacher Selection, Teacher Recruitment
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Newman, Dina L.; Catavero, Christina M.; Wright, L. Kate – CBE - Life Sciences Education, 2012
Cellular processes that rely on knowledge of molecular behavior are difficult for students to comprehend. For example, thorough understanding of meiosis requires students to integrate several complex concepts related to chromosome structure and function. Using a grounded theory approach, we have unified classroom observations, assessment data, and…
Descriptors: Genetics, Grounded Theory, Data Analysis, Concept Teaching
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Tsaushu, Masha; Tal, Tali; Sagy, Ornit; Kali, Yael; Gepstein, Shimon; Zilberstein, Dan – CBE - Life Sciences Education, 2012
This study offers an innovative and sustainable instructional model for an introductory undergraduate course. The model was gradually implemented during 3 yr in a research university in a large-lecture biology course that enrolled biology majors and nonmajors. It gives priority to sources not used enough to enhance active learning in higher…
Descriptors: Thinking Skills, Active Learning, Biology, Constructivism (Learning)
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Garvin-Doxas, Kathy; Klymkowsky, Michael W. – CBE - Life Sciences Education, 2008
While researching student assumptions for the development of the Biology Concept Inventory (BCI; http://bioliteracy.net), we found that a wide class of student difficulties in molecular and evolutionary biology appears to be based on deep-seated, and often unaddressed, misconceptions about random processes. Data were based on more than 500…
Descriptors: Molecular Biology, Misconceptions, Evolution, Scientific Concepts
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Ruble, Julie E.; Lom, Barbara – CBE - Life Sciences Education, 2008
A well-constructed, step-by-step protocol is a critical starting point for teaching undergraduates new techniques, an important record of a lab's standard procedures, and a useful mechanism for sharing techniques between labs. Many research labs use websites to archive and share their protocols for these purposes. Here we describe our experiences…
Descriptors: Research Methodology, Research Skills, Laboratory Training, Laboratory Procedures