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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
Inas Sausan; Elda Frediana Rety Kartika; Faizal Akhmad Adi Masbukhin; Sukma Wahyu Wijayanti; Ayu Fahimah Diniyah Wathi; Dola Suciana – Journal of Chemical Education, 2025
STEAM (Science, Technology, Engineering, Arts, Mathematics) learning is designed to contextualize the abstract concepts of science in chemistry learning. Integration STEAM in chemistry learning needs a learning model to help students understand real-world problems. For this reason, STEAM-PBL (Project Based Learning) was employed. This paper…
Descriptors: Science Education, Chemistry, Information Sources, Social Media
Clara Dumebi Moemeke; Joy Nkiruka Chukwunenye; Nasrudeen Ayinde Malik – Educational Considerations, 2025
Inquiry-based learning (IBL) represents a dynamic pedagogical approach in science education, driven by a foundation of deep theoretical constructs. This paper meticulously examines the cornerstone theoretical underpinnings of IBL, centering on constructivism, situated cognition, and cognitive load theories. Constructivism, epitomized by Piaget's…
Descriptors: Inquiry, Active Learning, Science Education, Constructivism (Learning)
Stephanie L. Mitchell; Jill S. McCourt; Diane J. Nesset-Tollefson; Gabrielle L. Kimball; Jasmine N. Mikesell; Emily J. Tollefson; Erin E. Carlson – Journal of Chemical Education, 2023
Common over-the-counter medicines can be an exciting entry point for introducing students to the interesting chemistries that they encounter in their daily lives. In this inquiry-based activity, students are tasked with using a list of given supplies and information about four medications (Aspirin, Tums, Pepto-Bismol, and Tylenol) to design three…
Descriptors: Medicine, Chemistry, Science Education, Active Learning
Meenakshi Sharma; Divya Gangadin; Francy Gomez – Journal of Educational Research and Practice, 2025
We examined an outdoor, experiential learning approach within a science methods course for nontraditional adult learners who are often career changers or individuals transitioning into teaching later in life. Through immersive, nature-based experiences, the course connected adult learners to science via direct engagement with the natural world. We…
Descriptors: Adult Students, Outdoor Education, Experiential Learning, Nontraditional Students
Vincent, Valeria; Powell, Frieda; Miller, Emily Adah; Kelly, Susan Codere – Science and Children, 2022
In this essay from a teacher in Argentina, Valeria Vincent describes how she employed Multiple Literacies in Project-based Learning (MLPBL) (Krajcik, Palincsar, and Miller 2015). ML-PBL, an open education free resource, has three design principles that support teacher and student learning and satisfaction. ML-PBL builds on teacher ingenuity and…
Descriptors: Foreign Countries, Multiple Literacies, Active Learning, Student Projects
Hodges, Johnna – Online Journal of Distance Learning Administration, 2021
Regulatory Sciences courses taught in an online asynchronous environment pose challenges for sustaining student engagement and encouraging active learning. Impediments include limited contact with the instructor and classmates, inadequate interaction with learning materials, content that can be ever-changing, and limited tools for assessing…
Descriptors: Learner Engagement, Active Learning, Online Courses, Asynchronous Communication
Niwat Srisawasdi; Tawinan Jan-in; Banjong Prasongsup; Patcharin Panjaburee – Journal of Chemical Education, 2025
Real-world applications can be potent tools in chemistry teaching, fostering highly beneficial learning for students. By involving students in real-world phenomena, we not only alter their perceptions of chemistry but also cultivate crucial chemistry competencies, preparing them for the future as scientists and citizens. In this report, we…
Descriptors: Foreign Countries, Science Education, Chemistry, Grade 4
Lukes, Laura A.; Jones, Jason P.; McConnell, David A. – Journal of Geoscience Education, 2021
Self-regulated learning (SRL) models provide a framework for understanding the observed variance of student performance in geoscience learning contexts. Instructors can potentially use a SRL framework to support students in self-identifying the specific approaches to learning they use when engaging in geoscience learning situations (coursework,…
Descriptors: Independent Study, Science Education, Geology, College Science
García-Carmona, Antonio – Science & Education, 2020
For years, inquiry-based learning has been conceived of and promoted as one of the best approaches to learning science. However, there is currently a movement within the science education community that suggests promoting science learning based on scientific practices, instead of inquiry, because in this way, science learning would be more…
Descriptors: Inquiry, Active Learning, Science Education, Teaching Methods
Shaghayegh Fateh; Oluwatobiloba Theresa Ayangbola; Joshua W. Reid; Sylvia W. Zakher; Zubeyde Demet Kirbulut Gunes; Amy J. Phelps; Aspen Malone; Gregory T. Rushton – Journal of Chemical Education, 2024
Collaboration is an aspect of engagement that focuses on learning through group work and having discussions with other learners. Active learning approaches are a way to foster collaborative engagement because they provide more opportunities for interaction among learners. Process Oriented Guided Inquiry Learning (POGIL), a socially mediated active…
Descriptors: English Language Learners, Inquiry, Cooperative Learning, Active Learning
Salimpour, Saeed; Fitzgerald, Michael T.; Tytler, Russell; Eriksson, Urban – Journal of Science Education and Technology, 2021
The changing landscape of science and science education has provided an impetus to re-imagine how science can be taught in schools. The dawn of the Big Data era, especially in astronomy, and the notion of "Science as Practice" are some of the developments driving this need for a re-imagination of science education. This current work…
Descriptors: Web Based Instruction, Computer Interfaces, Design, Science Education
Calalb, Mihail – International Baltic Symposium on Science and Technology Education, 2021
A new didactical approach named "Learning by Being" (LBB) is proposed and its correlation with current educational paradigms in science teaching is analysed. The key idea in LBB is the assumption by the students of cognitive goals, and three components are mandatory in LBB: a) student's personal learning effort, b) student-teacher mutual…
Descriptors: Science Education, Goal Orientation, Learning Processes, Correlation
Pedretti, Erminia; Iannini, Ana Maria Navas – Canadian Journal of Science, Mathematics and Technology Education, 2020
Once dominated by a focus on collecting and preserving, and later communicating science through hands-on experiences, science museums are slowly reshaping their identities and purposes to explicitly include and promote active citizenship, social responsibility, engagement with complex science and technology issues, and agency. Informed by…
Descriptors: Science Education, Museums, Citizenship, Social Responsibility
Tan, Seng-Chee; Tan, Aik-Ling – Cultural Studies of Science Education, 2020
This forum paper offers alternative insights into Pei-Ling Hsu's "'It's a magic circle'! Using cogenerative dialogues to create a safe environment to address emotional conflicts in a project-based learning science internship." In her paper, she presented how cogenerative dialogues can be used to create an emotionally safe environment for…
Descriptors: Science Education, Science Instruction, Teaching Methods, Psychological Patterns

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