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Ainhoa Arana-Cuenca; Fernando Morcillo; Guiomar Garrido – Educational Process: International Journal, 2025
Background/purpose: Practical work is a key component of science education that can contribute to comprehensive learning and scientific literacy. This study presents the results of an Inquiry-Based Learning (IBL) approach using a DNA extraction practice with 4th-year secondary education Spanish students. The findings highlight significant…
Descriptors: Critical Thinking, High School Students, Self Concept, Inquiry
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Asmus, Stephen E.; Batey, Kaylind G.; Gale-Butto, Serena N.; Schmitt, Barrie L. – Journal of Biological Education, 2019
Cell migration, a fundamental process in development, wound healing, and immune function, is a common topic in undergraduate cell biology courses. We developed laboratory exercises with an inquiry-based learning (IBL) approach in which cell migration could be examined with the scratch assay, adapted from the primary literature. A narrow scratch…
Descriptors: Science Laboratories, Biology, Cytology, Inquiry
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Silveira, Lucas Fagundes; Xavier, Christian Santos; Perez, MaĆ­ra Alexandre; Bozza, Dandie Antunes; Furtado-Alle, Lupe; Hass, Iris; Tureck, Luciane Viater – Journal of Biological Education, 2023
In this paper, we describe a dynamic-model as a strategy to teach DNA transcription and translation in an active way. This activity aims to provide learning beyond memorisation through the simulation of molecular processes, stimulating the elaboration of questions and hypotheses by students. The dynamic consists of four steps, starting with…
Descriptors: Foreign Countries, Biology, Science Instruction, Teaching Methods
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Krzysiak, Amanda; Doyle, Caroline; Huff, Mary O. – Biochemistry and Molecular Biology Education, 2022
Project-based (research-driven) laboratory courses stimulate student involvement, improve critical thinking and initiate cooperative learning. To this end, a 7-week laboratory project was designed for a sophomore cell biology course to reinforce the fundamental relationship between genotype and phenotype using yeast alcohol dehydrogenase I (ADH1).…
Descriptors: Genetics, Biochemistry, Student Projects, Laboratory Experiments
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Prashanth Ramesh Rao; Ashok Belle Upadhyaya; Meera Nanjundan – International Journal of Teaching and Learning in Higher Education, 2023
In Cell Biology, a sophomore/junior undergraduate-level high-enrollment core course, students areexpected to develop a broad and detailed understanding of the functioning of eukaryotic cells. Forexample, some of the more challenging biological concepts include machinery involved in thereplication and translational processes, protein…
Descriptors: Cytology, Biology, Science Instruction, Scientific Concepts
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Newman, Dina L.; Stefkovich, Megan; Clasen, Catherine; Franzen, Margaret A.; Wright, L. Kate – Biochemistry and Molecular Biology Education, 2018
The essence of molecular biology education lies in understanding of gene expression, with subtopics including the central dogma processes, such as transcription and translation. While these concepts are core to the discipline, they are also notoriously difficult for students to learn, probably because they cannot be directly observed. While nearly…
Descriptors: Models, Molecular Biology, Hands on Science, Manipulative Materials
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Birnbaum, Mark J.; Picco, Jenna; Clements, Meghan; Witwicka, Hanna; Yang, Meiheng; Hoey, Margaret T.; Odgren, Paul R. – Biochemistry and Molecular Biology Education, 2010
A key goal of molecular/cell biology/biotechnology is to identify essential genes in virtually every physiological process to uncover basic mechanisms of cell function and to establish potential targets of drug therapy combating human disease. This article describes a semester-long, project-oriented molecular/cellular/biotechnology laboratory…
Descriptors: Cytology, Biotechnology, Molecular Biology, Genetics
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Knutson, Kristopher; Smith, Jennifer; Wallert, Mark A.; Provost, Joseph J. – Biochemistry and Molecular Biology Education, 2010
A successful laboratory experience provides the foundation for student success, creating active participation in the learning process. Here, we describe a new approach that emphasizes research, inquiry and problem solving in a year-long biochemistry experience. The first semester centers on the purification, characterization, and analysis of a…
Descriptors: Motivation, Biochemistry, Inquiry, Laboratory Training
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Knight, Jonathan D.; Fulop, Rebecca M.; Marquez-Magana, Leticia; Tanner, Kimberly D. – CBE - Life Sciences Education, 2008
Active-learning strategies are increasingly being integrated into college-level science courses to make material more accessible to all students and to improve learning outcomes. One active-learning pedagogy, case-based learning (CBL), was developed as a way to both enhance engagement in the material and to accommodate diverse learning styles.…
Descriptors: Learning Strategies, Science Laboratories, Molecular Biology, Cytology
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Kumar, Anuj – Cell Biology Education, 2005
With genomics well established in modern molecular biology, recent studies have sought to further the discipline by integrating complementary methodologies into a holistic depiction of the molecular mechanisms underpinning cell function. This genomic subdiscipline, loosely termed "systems biology," presents the biology educator with both…
Descriptors: Student Reaction, Scientific Methodology, Active Learning, Molecular Biology
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Klymkowsky, Michael W.; Garvin-Doxas, Kathy; Zeilik, Michael – Cell Biology Education, 2003
The introduction of the Force Concept Inventory (FCI) by David Hestenes and colleagues in 1992 produced a remarkable impact within the community of physics teachers. An instrument to measure student comprehension of the Newtonian concept of force, the FCI demonstrates that active learning leads to far superior student conceptual learning than…
Descriptors: Physics, Active Learning, Biomedicine, Biology