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Hamideh Talafian; Morten Lundsgaard; Maggie S. Mahmood; Eric Kuo; Timothy J. Stelzer – Physical Review Physics Education Research, 2025
Although most teachers recognize the importance of taking investigative, open-ended approaches to students' learning experiences, implementing them in high school classes can be challenging for teachers. In this work, we analyzed data from multiple sources from a teaching Community of Practice (CoP) to investigate (a) barriers to taking an…
Descriptors: Physics, Science Teachers, Science Instruction, Laboratory Procedures
Katarina Andreasen; Marcus Lundberg; Stefan Pålsson; Nicusor Timneanu – Innovations in Education and Teaching International, 2025
We investigated the impact that teachers' participation in a short compulsory course on active learning had on their teaching practice. The course was offered at all departments of a STEM faculty with a total of 516 participants. Evaluations showed that teachers especially appreciated collegial discussions and examples of teaching practices in the…
Descriptors: Active Learning, Teaching Methods, STEM Education, College Faculty
Bart G. Schutte; Dury Bayram; Johanna Vennix; Jan van der Veen – Environmental Education Research, 2025
Challenge-based learning (CBL) offers a promising approach for integrating education for sustainable development (ESD) in secondary schools. However, despite the growing body of knowledge on the implementation of CBL in higher education, less is known about its implementation in secondary education. This qualitative study investigated how…
Descriptors: Foreign Countries, Secondary School Teachers, Environmental Education, Sustainable Development
Joseph J. Slade; Stephanie M. Byers; Kathryn A. Becker-Blease; Regan A. R. Gurung – Teaching of Psychology, 2025
Introduction: The integration of artificial intelligence (AI) into higher education ushers in a new era of teaching and learning possibilities for both educators and students. Statement of the Problem: These technologies not only offer unparalleled opportunities for personalized learning and instructional support, but also introduce challenges…
Descriptors: Artificial Intelligence, Computer Software, Technology Integration, Teaching Methods
Lucie Mingla – Mathematics Teaching Research Journal, 2025
Achieving meaningful educational outcomes requires scalable strategies for mastering mathematical concepts and skills, with student engagement at the core. This paper examines the use of comprehensive, technology-enhanced activities designed to promote active learning and deeper conceptual understanding. Specifically, it focuses on the integration…
Descriptors: Mathematics Education, Mathematical Applications, Mastery Learning, Mathematical Concepts
Stephen P. Gordon – Educational Considerations, 2025
Society is currently experiencing a wave of misinformation and disinformation spread through social media and other means. Widespread false information threatens our social relationships and our democracy. A shift toward inquiry learning in PreK-12 education can both improve student learning in general and teach students to assess the validity of…
Descriptors: Inquiry, Active Learning, Citizenship Education, Elementary School Students
Angie Hodge-Zickerman; Cindy S. York; Max C. Anderson – Journal on Excellence in College Teaching, 2025
This article explores inquiry-based learning (IBL) pedagogy, particularly in mathematics education, examining how it differs from problem-based learning (PBL) and case-based learning (CBL). IBL is defined as a student-centered approach involving sequenced problems or tasks that build engagement and understanding through group work. While IBL, PBL,…
Descriptors: Active Learning, Problem Based Learning, Case Method (Teaching Technique), Inquiry
Eley, Alison – Primary Science, 2022
There is broad agreement in the literature (e.g. Furtak et al., 2012; Harlen and Qualter, 2018) that the purpose of primary science is for children to develop: (1) scientific skills; (2) knowledge and understanding of some scientific concepts; (3) positive attitudes to science; an understanding of the nature of science; and (4) an appreciation of…
Descriptors: Teaching Methods, Science Instruction, Elementary School Science, Teacher Role
Commeford, Kelley; Brewe, Eric; Traxler, Adrienne – Physical Review Physics Education Research, 2022
The vast majority of research involving active learning pedagogies uses passive lecture methods as a baseline. We propose to move beyond such comparisons to understand the mechanisms that make different active learning styles unique. Here, we use COPUS observations to record student and instructor activities in six known styles of active learning…
Descriptors: Active Learning, Teaching Methods, Cognitive Style, Physics
Neumann, David J. – Social Education, 2022
This article argues that the best way to increase inquiry-based instruction is paradoxically to pay more attention to direct instruction because excessive attention to practices like close reading of texts and facilitating text-based discussions has led to neglect of content knowledge explanation as a core instructional practice. This article…
Descriptors: Direct Instruction, History Instruction, Knowledge Level, Prior Learning
Poe, Laura; Mew, Lionel – Industry and Higher Education, 2022
The objective of traditional software development courses focuses on competencies in the programming languages and technical tools. Project methodologies and software development are typically taught as theory-driven and separate courses in Information Systems undergraduate programs. Rather than teaching project methodologies as secondary to the…
Descriptors: Computer Software, Active Learning, Courses, Teaching Methods
Zhong, Baichang; Liu, Xiaofan; Xia, Liying; Sun, Wang – SAGE Open, 2022
Many countries and regions have reached a consensus to promote science, technology, engineering, and mathematics (STEM) education in the past decade. A body of studies have demonstrated that the design and organization of interdisciplinary teaching activities are important for the effective implementation of STEM education. So far, however, little…
Descriptors: STEM Education, Models, Teaching Methods, Robotics
Xiao Li; Marc Mun~iz; Karlun Chun; Jonathan Tai; Francesca Guerra; Darrin M. York – Journal of Chemical Education, 2022
Atomic orbitals represent an essential construct used to develop chemical bonding models, upon which other more advanced chemistry topics are built. In this article, we share a series of active-learning activities and a gamified approach to develop students' representational competence about atomic orbitals and to engage students in learning the…
Descriptors: Learner Engagement, Chemistry, Science Instruction, Active Learning
Lahiru Ariyananda – ProQuest LLC, 2022
DEVS (Discrete Event System Specification) is a formalism that was introduced in the mid-1970s by Bernard Zeigler, for modeling and analysis of discrete event systems. DEVS is essentially a formal mathematical language for specifying complex systems through models that can be simulated and has been executed in object-oriented software, DEVSJava…
Descriptors: Active Learning, Programming, Computer Software, Computer Science Education
Jamal, Aneesa; Jamal, Abubakr Mohammed; Yusof, Sanitah Mohd – Journal of Creative Behavior, 2023
Project-Based Learning (PBL) is inherently creative. But little is known about children's process of creativity during a PBL experience or how PBL supports the creative process. This qualitative study explores 14 Indian schoolchildren's creative journey during a book-authoring PBL program. Transcripts for the structured interviews, assignments,…
Descriptors: Foreign Countries, Indians, Metacognition, Creativity

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