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Joshua Forstenzer – Educational Theory, 2025
How should Deweyan educators teach their students about engaging in efforts to bring about social change in a political context marked by polarization, power differentials, and oppression? In this article, Joshua Forstenzer argues that Deweyan educators must encourage their students to engage in pluralistic and creative experiments rather than…
Descriptors: Progressive Education, Teaching Methods, Social Change, Power Structure
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Karen Zwanch; Brooke Mullins – Educational Studies in Mathematics, 2025
To understand the ways that manipulatives might support changes in students' reasoning about algebraic generalizations, a constructivist teaching experiment was conducted with two sixth-grade students. The students interpreted numerical situations with units of one and could construct units of units in mental activity. Initially, the students'…
Descriptors: Mathematics Education, Mathematics Instruction, Teaching Methods, Algebra
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Chris Della Vedova; Gareth Denyer; Maurizio Costabile – Biochemistry and Molecular Biology Education, 2025
Innovative approaches to teaching genetics are essential for improving student engagement and comprehension in this challenging field. Laboratory-based instruction enhances engagement with the subject while fostering the development of practical competencies and deepening comprehension of theoretical concepts. However, constraints on time and…
Descriptors: Undergraduate Students, Genetics, Science Instruction, Laboratory Experiments
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Rebeckah K. Fussell; Megan Flynn; Anil Damle; Michael F. J. Fox; N. G. Holmes – Physical Review Physics Education Research, 2025
Recent advancements in large language models (LLMs) hold significant promise for improving physics education research that uses machine learning. In this study, we compare the application of various models for conducting a large-scale analysis of written text grounded in a physics education research classification problem: identifying skills in…
Descriptors: Physics, Computational Linguistics, Classification, Laboratory Experiments
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Adil Hamamous; Nadia Benjelloun – Journal of Learning for Development, 2025
CAEx (Computer-Assisted Experimentation) enables real-time experiments to be carried out using a computer; it includes data acquisition and sensor systems, as well as real-time measurement of numerous physical properties. The use of computer-assisted experimentation in the teaching of physics and chemistry in Moroccan secondary schools underwent…
Descriptors: Computer Assisted Instruction, Science Education, Physical Sciences, Science Experiments
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Ali Kürsat Erümit; Rabia Özdemir Sarialioglu – Discover Education, 2025
There is increasing interest in the use of artificial intelligence technologies, which have become a transformative force in the field of education, in educational fields that include subject areas that support lifelong learning, such as science and chemistry education. In this study, a systematic review was conducted on the use and effects of…
Descriptors: Artificial Intelligence, Science Education, Chemistry, Interdisciplinary Approach
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Dayna Jean DeFeo; Sarah Gerken; Trang C. Tran; Dmitry Khodyakov; Arlene Fink – Discover Education, 2025
Introductory biology courses at most colleges and universities have two components: a lecture and a lab. However, for students who are not majoring in biology and taking the introductory course as part of their general education requirements, the distinct role of the lab has not been clearly articulated. We performed an online modified-Delphi…
Descriptors: Biology, Science Instruction, College Faculty, Outcomes of Education
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Ravishankar Chatta Subramaniam; Nikhil Borse; Amir Bralin; Jason W. Morphew; Carina M. Rebello; N. Sanjay Rebello – Physical Review Physics Education Research, 2025
Reform documents advocate for innovative pedagogical strategies to enhance student learning. A key innovation is the integration of science and engineering practices through engineering design (ED)-based physics laboratory tasks, where students tackle engineering design problems by applying physics principles. While this approach has its benefits,…
Descriptors: Physics, Laboratory Experiments, Teaching Methods, Science Instruction
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Yan Wang; Peng He; Jinling Geng; Zhiwei Zhu – Journal of Chemical Education, 2025
This paper presents an innovative teaching approach that integrates photoelectric technology with analytical chemistry instruction through inquiry-based learning (IBL), using cerium as a selected analyte. With the advancement of science and technology, a strong foundation of basic knowledge and methodologies is crucial in analytical chemistry…
Descriptors: Instructional Innovation, Chemistry, Science Instruction, Active Learning
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Robert F. Mauldin – Journal of College Science Teaching, 2025
Preliminary evidence regarding the effectiveness of a participation-based, formative assessment pedagogy in the laboratory component of undergraduate science classes is presented in this paper. The formative approach to teaching lab is unique in science education given the prevailing paradigm of summative assessment via grading lab reports. The…
Descriptors: Teaching Methods, Science Instruction, Laboratory Experiments, Chemistry
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Smadar Levy; Adi Noga; Edit Yerushalmi – Physical Review Physics Education Research, 2025
Teachers' goals and orientations underlie their instructional decision making and can make the difference between "talking the talk" and "walking the walk" when trying to change lab instruction. Schoenfeld's "Resources, Orientations, and Goals" (ROG) framework was employed to shed light on the challenges involved in a…
Descriptors: Physics, Science Instruction, Educational Objectives, High School Teachers
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Mark W. Patterson; Teresa P. Raczek – Journal of Geography in Higher Education, 2025
To improve student outcomes in four-credit asynchronous online physical geography classes that included a lab component, we employed three different experimental techniques in spring 2022. Fifteen faculty who collectively taught 24 sections of Introduction to Landforms or Weather and Climate modified one element of their course to foster improved…
Descriptors: Physical Geography, Online Courses, Laboratory Experiments, Instructional Effectiveness
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Brett Criswell; Kadir Demir; Michelle Zoss – Science Education, 2025
This qualitative case study delved into students' understanding and positioning while they participated in solving an authentic, conceptually-based problem in a high-school chemistry class. Verbal and nonverbal cues, particularly gestures, offered broader awareness of students' engagement in sensemaking during the learning experience. The…
Descriptors: High School Students, Chemistry, Science Instruction, Student Attitudes
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Victoria Borish; H. J. Lewandowski – Physical Review Physics Education Research, 2025
As quantum technologies transition from the research laboratory into commercial development, the opportunities for students to begin their careers in this new quantum industry are increasing. With these new career pathways, more and more people are considering the best ways to educate students about quantum concepts and relevant skills. In…
Descriptors: Physics, Science Instruction, Quantum Mechanics, Computer Software
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Verena Petermann; Andreas Vorholzer; Claudia von Aufschnaiter – Journal of Research in Science Teaching, 2025
Science teachers' beliefs about teaching and learning are a vital component of teachers' professional competence and are often assumed to impact classroom practice. To date, these beliefs have been predominantly investigated regarding teaching and learning in general or for a particular science subject (e.g., physics). It remains to be determined…
Descriptors: Foreign Countries, Science Teachers, Science Education, Teacher Attitudes