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Jeremy L. Hsu; Anjali Misra; Michael J. Wolyniak; Carlos C. Goller; Stephanie Mathews; Uma Swamy; Dina L. Newman; Michael E. Moore – Journal of Microbiology & Biology Education, 2025
The 2011 "Vision & Change" report outlined several recommendations for transforming undergraduate biology education, sparking multiple pedagogical reform efforts. Among these was the Promoting Active Learning and Mentoring (PALM) network, an NSF-funded program that provided mentorship and training to instructors on implementing…
Descriptors: Biology, Science Education, Educational Change, Undergraduate Study
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Tomas Linder – Journal of Microbiology & Biology Education, 2024
Anaerobic respiration reactions are of fundamental importance to global biogeochemical cycling of elements. Yet, the idea that cellular respiration can occur not only in the absence of oxygen but also involve the oxidation of inorganic substrates (e.g., AsO[subscript 3 superscript 3-], Fe[superscript 2+], H[subscript 2], H[subscript 2]S,…
Descriptors: Science Education, Undergraduate Study, College Science, Scientific Concepts
Pia M. So¨rensen – Journal of Chemical Education, 2023
The interdisciplinary nature of food makes it an effective teaching vehicle in many fields. This article shows specifically how flavor and food fermentation, two topics not usually featured in the undergraduate STEM curriculum, can inspire a powerful interdisciplinary learning experience. Importantly, because of their accessible nature and…
Descriptors: Undergraduate Study, Food, Sensory Experience, Student Research
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Amy J. Prunuske; Heather J. Evans-Anderson; Katherine L. Furniss; Carlos C. Goller; Jaime E. Mirowsky; Michael E. Moore; Samiksha A. Raut; Uma Swamy; Sue Wick; Michael J. Wolyniak – Discover Education, 2022
One promising practice for increasing active learning in undergraduate science education is the use of a mentoring network. The Promoting Active Learning and Mentoring (PALM) Network was launched with practitioners from several professional societies and disciplines to make changes in their teaching based on evidence-based practices and to…
Descriptors: Active Learning, Undergraduate Study, Sustainable Development, Science Education
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John C. Pinti; Elizabeth A. Kras; Akanksha Patel; Chloe L. Schrier; Christopher S. Stoj; Janet R. Morrow – Journal of Chemical Education, 2022
This undergraduate laboratory experiment is designed for first-year general chemistry students with the goal of introducing the brilliant colors and magnetic properties of transition metal complexes within a bioinorganic/cell biology context. In the first laboratory period, a coordination complex formed from ferric chloride and maltol is…
Descriptors: Magnets, Metallurgy, Undergraduate Study, Laboratory Experiments
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Chatchadaporn Pinthong; Pimchai Chaiyen; Somchart Maenpuen; Pirom Chenprakhon – Journal of Chemical Education, 2022
This research developed learning activities for students to explore and connect the concepts of acid-base titration, equivalence points, pK[subscript a], and molar absorption coefficients. Polyphenolic compounds consisting of p-coumaric acid (CMA), caffeic acid (CFA), and 3,4,5-trihydroxycinnamic acid (3,4,5-THCA) were selected as study models.…
Descriptors: Active Learning, Inquiry, Science Laboratories, Chemistry
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T. Meixner; B. Ciancarelli; E. P. Farrell; D. Silva García; T. Josek; M. M. Kelly; P. Meister; D. Soule; R. Darner – Journal of Geoscience Education, 2024
Learning in asynchronous online environments has gained importance over the last several decades, and educational environment shifts from the COVID-19 pandemic appear to have increased this need. Science educators and students need information about which approaches work in the asynchronous environment where informal feedback tends to be reduced,…
Descriptors: Learner Engagement, Climate, Asynchronous Communication, Science Education
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Shirley Lin; Marianne E. Burnett; Melonie A. Teichert – Journal of Chemical Education, 2022
Acid-base titration concepts and experiments are ubiquitous, yet challenging, aspects of the general chemistry curriculum. Most general chemistry courses include at least one acid-base titration laboratory experiment, though the focus is often on determining the concentration, pK[subscript a], or molar mass of an analyte rather than on the details…
Descriptors: Research Design, Active Learning, Inquiry, Science Experiments
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Metcalf, Leah E.; Bernacki, Matthew L.; Bernacki, Lucas E. – Journal of Research in Science Teaching, 2023
Discipline-based educational researchers and institutions that provide guidance on Science, Technology, Engineering, and Mathematics instruction have long documented the impact of active learning strategies on student learning and achievement, the lack of incorporation of active learning into undergraduate instruction, and the languishing rates of…
Descriptors: Active Learning, Textbooks, Biology, Electronic Publishing
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Samer Doughan; Anna Shahmuradyan – Journal of Chemical Education, 2022
Advancements in technology have led to significant changes in the workforce and created a demand for expertise in science, technology, engineering, and mathematics (STEM). In response, curricula have evolved to emphasize essential skills such as critical thinking and communication to prepare students for STEM-based careers. To this end,…
Descriptors: Chemistry, Science Education, Undergraduate Study, Laboratories
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Raker, Jeffrey R.; Dood, Amber J.; Srinivasan, Shalini; Murphy, Kristen L. – Chemistry Education Research and Practice, 2021
Pedagogies of engagement (i.e., Peer-Led Teaming Learning, Problem-Based Learning, and Process-Oriented Guided Inquiry Learning) are active learning approaches used in postsecondary chemistry courses. In this study, we use data from a national survey of postsecondary chemistry instructors in the United States to estimate use of three pedagogies in…
Descriptors: Active Learning, Cooperative Learning, Problem Based Learning, Inquiry
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Miller, Sarah; Tanner, Kimberly D. – CBE - Life Sciences Education, 2015
In an introductory biology course, undergraduate students are expected to become familiar with, and be able to use, hundreds of new terms to navigate the complex ideas in biology. And this is just in the introductory course! Juxtapose this student situation with the common frustration expressed by biologists that there is "just too much…
Descriptors: Biology, Vocabulary, College Science, Undergraduate Study
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Auerbach, A. J.; Higgins, M.; Brickman, P.; Andrews, T. C. – CBE - Life Sciences Education, 2018
Active-learning strategies "can" improve science, technology, engineering, and mathematics (STEM) undergraduates' abilities to learn fundamental concepts and skills. However, the results instructors achieve vary substantially. One explanation for this is that instructors commonly implement active learning differently than intended. An…
Descriptors: Teacher Characteristics, Active Learning, Beginning Teachers, Experienced Teachers
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Kim, Kyoungna; Sharma, Priya; Land, Susan M.; Furlong, Kevin P. – Innovative Higher Education, 2013
To enhance students' critical thinking in an undergraduate general science course, we designed and implemented active learning modules by incorporating group-based learning with authentic tasks, scaffolding, and individual reports. This study examined the levels of critical thinking students exhibited in individual reports and the students'…
Descriptors: Active Learning, Learning Strategies, Learning Modules, Critical Thinking
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Zupanc, Gunther K. H. – Bioscience Education, 2012
The past few decades have witnessed an increasing separation of research and teaching, particularly in the area of undergraduate education. Supporters of such a separation have argued that involvement of undergraduates in research is incompatible with the idea of the research university. However, one of the founding principles of the research…
Descriptors: Undergraduate Study, Student Research, Research Universities, Active Learning
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