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Cassandra A. Paul; David J. Webb – Physical Review Physics Education Research, 2025
We have previously described the reformed introductory physics course, collaborative learning through active sense-making in physics (CLASP), for bioscience students at a large public research one university (Original University) and presented evidence that the course was more successful and more equitable than the course it replaced by several…
Descriptors: Physics, Science Instruction, Teaching Methods, Disadvantaged
Ryan Tapping – ProQuest LLC, 2021
In this dissertation I will present my work in both the fields of spintronics and physics education research. In the first section, I present a method to account for spin pumping in spin torque ferromagnetic resonance (ST-FMR) measurements. A spin current can be generated via the spin Hall effect (SHE), which is typically transverse to the charge…
Descriptors: Magnets, Electronics, Physics, Scientific Concepts
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Hyland, Diarmaid; van Kampen, Paul; Nolan, Brien – International Journal of Mathematical Education in Science and Technology, 2023
This paper reports on data obtained during semi-structured interviews with students who had recently experienced a guided inquiry approach to learning ordinary differential equations (ODEs) in a service-taught module. Previous research identified the strengths and weaknesses of similar cohorts of students. The results from that research informed…
Descriptors: Student Attitudes, Mathematics Instruction, Teaching Methods, Inquiry
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Widyaningsih, Sri Wahyu; Yusuf, Irfan – International Journal of Higher Education, 2020
This study aims to improve the quality of learning in physics learning planning courses through the implementation of Project-Based Learning (PjBL) assisted by E-Learning through Lesson Study activities. This was qualitative research through the stages of Lesson Study activities. Subjects in this study were the 5th-semester students who program 11…
Descriptors: Foreign Countries, Program Implementation, Student Projects, Active Learning
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Martinko, Sanja; Vorkapic, Sanja Tatalovic – International Journal for Talent Development and Creativity, 2017
A modern educational process should approach students by taking into account all of their characteristics. A purely intellectual approach to teaching and learning should be replaced with a different approach that takes into account all of the other students' characteristics. Therefore, students' attitudes toward learning specific school subjects…
Descriptors: Student Attitudes, Physics, Grade Prediction, Outcomes of Education
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Wan, Tong; Doty, Constance M.; Geraets, Ashley A.; Nix, Christopher A.; Saitta, Erin K. H.; Chini, Jacquelyn J. – Physical Review Physics Education Research, 2021
In this study, we evaluate the impact of rehearsing teaching skills in a mixed-reality classroom simulator on graduate teaching assistants' (GTAs) instructional practices as well as undergraduate student learning outcomes. The simulator training is intended to provide GTAs opportunities to deliberately practice essential pedagogical skills that…
Descriptors: Graduate Students, Physics, Science Instruction, Undergraduate Students
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Roll, Ido; Butler, Deborah; Yee, Nikki; Welsh, Ashley; Perez, Sarah; Briseno, Adriana; Perkins, Katherine; Bonn, Doug – Instructional Science: An International Journal of the Learning Sciences, 2018
Guiding inquiry learning has been shown to increase knowledge gains. Yet, little is known about the effect of guidance on attitudes and behaviours, its interaction with student attributes, and transfer of impact once guidance is removed. We address these gaps in the context of an interactive Physics simulation on electric circuits…
Descriptors: Inquiry, Active Learning, Discovery Learning, Physics
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Adorno, Dominique Persano; Pizzolato, Nicola; Fazio, Claudio – Physical Review Physics Education Research, 2018
This paper investigates the efficacy of an open-inquiry approach to achieve a long term stability of physics instruction. This study represents the natural continuation of a research project started four years ago when a sample of thirty engineering undergraduates, having already attended traditional university physics instruction, were involved…
Descriptors: Outcomes of Education, Undergraduate Students, Inquiry, Science Instruction
Van Meeteren, Beth Dykstra, Ed. – Teachers College Press, 2022
Children are intrigued by moving objects, even more so when they can engineer the movement. This volume in the STEM for Our Youngest Learners Series uses Ramps and Pathways as a context to provide children ages 3-8 with opportunities to engage in STEM every day. Ramps and Pathways is a meaningful and fun way for children to develop engineering…
Descriptors: STEM Education, Teaching Methods, Vignettes, Communities of Practice
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Drinkwater, Michael J.; Gannaway, Deanne; Sheppard, Karen; Davis, Matthew J.; Wegener, Margaret J.; Bowen, Warwick P.; Corney, Joel F. – Teaching & Learning Inquiry, 2014
Turning lectures into interactive, student-led question and answer sessions is known to increase learning, but enabling interaction in a large class seems an insurmountable task. This can discourage adoption of this new approach -- who has time to individualize responses, address questions from over 200 students and encourage active participation…
Descriptors: Active Learning, Learning Processes, Large Group Instruction, College Freshmen
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Caron, Darrell – Tech Directions, 2010
This article features Advanced Competitive Science (ACS), a two-year course introduced by a science teacher, Joe Pouliot, in 2004 at Trinity High School in Manchester, New Hampshire. More than a traditional STEM (science, technology, engineering, and math) course, ACS harnesses the excitement of robotics competitions to promote student…
Descriptors: Majors (Students), Student Projects, Physics, Active Learning
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Urban, Michael J., Ed.; Falvo, David A., Ed. – IGI Global, 2016
The application of technology in classroom settings has equipped educators with innovative tools and techniques for effective teaching practice. Integrating digital technologies at the elementary and secondary levels helps to enrich the students' learning experience and maximize competency in the areas of science, technology, engineering, and…
Descriptors: Elementary Secondary Education, STEM Education, Outcomes of Education, Technology Integration
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Shieh, Ruey S. – Computers & Education, 2012
Technology-Enabled Active Learning (TEAL) is a pedagogical innovation established in a technology-enhanced multimedia studio, emphasizing constructivist-oriented teaching and learning. In Taiwan, an increasing number of schools are adopting the TEAL notion to deliver courses. This study examines the impact of TEAL on both student performance and…
Descriptors: Foreign Countries, Educational Technology, Constructivism (Learning), Science Activities
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Dori, Yehudit Judy; Hult, Erin; Breslow, Lori; Belcher, John W. – Journal of Science Education and Technology, 2007
The introductory freshmen electromagnetism course at MIT has been taught since 2000 using a studio physics format entitled TEAL--Technology Enabled Active Learning. TEAL has created a collaborative, hands-on environment where students carry out desktop experiments, submit web-based assignments, and have access to a host of visualizations and…
Descriptors: Experimental Groups, Control Groups, Advanced Courses, Student Attitudes
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Dori, Yehudit Judy; Belcher, John – Journal of the Learning Sciences, 2005
Educational technology supports meaningful learning and enables the presentation of spatial and dynamic images, which portray relationships among complex concepts. The Technology-Enabled Active Learning (TEAL) Project at the Massachusetts Institute of Technology (MIT) involves media-rich software for simulation and visualization in freshman…
Descriptors: Undergraduate Students, College Science, Active Learning, Physics