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Jason M. May – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Physics instructional labs have long been an area of pedagogical innovation and educational research. While current stakeholders in instructional labs are undoubtedly aware of the day's concerns, reform efforts, and empirical research…
Descriptors: Physics, Science Instruction, Science Laboratories, Educational History
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Caballero, Marcos D.; Chonacky, Norman; Engelhardt, Larry; Hilborn, Robert C.; Lopez del Puerto, Marie; Roos, Kelly R. – Physics Teacher, 2019
The need to integrate computation into the physics curriculum has long been established: using simulations and computational modeling can enhance students' conceptual understanding, and the computational skills students acquire are both useful and necessary in their careers. However, making changes to an established physics course is a challenge…
Descriptors: Physics, College Science, Undergraduate Students, Computation
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Harlow, Danielle B.; Otero, Valerie K.; Leak, Anne E.; Robinson, Steve; Price, Edward; Goldberg, Fred – Physical Review Physics Education Research, 2020
[This paper is part of the Focused Collection on Curriculum Development: Theory into Design.] Fifteen years ago, following recommendations from research on science education for prospective teachers and for students more broadly, "Physics and Everyday Thinking" introduced activities within an inquiry-based undergraduate physics course…
Descriptors: Science Curriculum, Curriculum Development, Physics, College Science
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Traxler, Adrienne L.; Suda, Tyme; Brewe, Eric; Commeford, Kelley – Physical Review Physics Education Research, 2020
This study uses positional analysis to describe the student interaction networks in four research-based introductory physics curricula. Positional analysis is a technique for simplifying the structure of a network into blocks of actors whose connections are more similar to each other than to the rest of the network. This method describes social…
Descriptors: Physics, Science Instruction, Active Learning, Interaction
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Sohr, Erin Ronayne; Gupta, Ayush; Johnson, Brandon J.; Quan, Gina M. – Physical Review Physics Education Research, 2020
[This paper is part of the Focused Collection on Curriculum Development: Theory into Design.] Common models of curricular development in physics education research (PER) have typically involved a hierarchical relationship between researchers and students, where researchers lead the design and testing of curriculum for students. We draw from work…
Descriptors: Participative Decision Making, Curriculum Design, Physics, Science Instruction
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LeGresley, Sarah E.; Delgado, Jennifer A.; Bruner, Christopher R.; Murray, Michael J.; Fischer, Christopher J. – Physical Review Physics Education Research, 2019
Here we demonstrate the benefits of a new curriculum for introductory calculus-based physics that motivates classical mechanics using a modified version of Hamiltonian mechanics. This curriculum shifts the initial focus of instruction away from forces and the associated vector mathematics, which are known to be problematic for students, to the…
Descriptors: Undergraduate Students, College Science, Science Instruction, Introductory Courses
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Fleenor, Matthew C. – Global Education Review, 2018
David Galenson's bifurcation of creative types is well-founded across several strata of the traditional fine arts. According to Galenson, experimental innovators outwardly express their creativity at a later age after long periods of development. I reason that many of the students in undergraduate classrooms are experimental innovators, since…
Descriptors: Undergraduate Students, Physics, Majors (Students), Educational Innovation
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Geller, Benjamin D.; Turpen, Chandra; Crouch, Catherine H. – Physical Review Physics Education Research, 2018
We explore the sources of student engagement with curricular content in an Introductory Physics for Life Science (IPLS) course at Swarthmore College. Do IPLS students find some life-science contexts more interesting than others, and, if so, what are the sources of these differences? We draw on three sources of student data to answer this question:…
Descriptors: College Students, College Science, Learner Engagement, Introductory Courses
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Yates, Lyn; Millar, Victoria – Curriculum Journal, 2016
A stream of debate (including a previous special issue of this journal [25(1) 2014)] has made claims not just for "bringing knowledge back in" as the framing underpinning of the school curriculum, but that subjects associated with disciplinary and disciplined knowledge forms have a particular power and that these characteristics are…
Descriptors: Physics, Foreign Countries, Science Instruction, Science Curriculum
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Hull, Michael M.; Lindsey, Beth A.; Archambault, Matthew; Davey, Kathleen; Liu, Amy Y. – Physical Review Physics Education Research, 2016
In this paper, we show data from the Colorado Learning Attitudes about Science Survey that suggests that Georgetown physics majors become increasingly expert in their attitudes towards physics learning and knowing after taking a course that combines two reformed curricula, Matter and Interactions (M&I) and Tutorials in Introductory Physics…
Descriptors: Science Instruction, Science Curriculum, Physics, Majors (Students)
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Balbag, Mustafa Zafer – International Journal of Instruction, 2018
States of matter are structures that we may easily encounter in the universe as well as our close environment. The plasma state is the fourth state of matter, and it has much different properties in comparison to the solid, liquid and gas states of matter. In order to understand the universe and the environment we live in better, one needs to have…
Descriptors: Preservice Teachers, Science Teachers, Science Curriculum, Foreign Countries
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Main, Peter – School Science Review, 2014
The physics curriculum is usually defined by content but this does not provide students with an authentic experience of the subject. An alternative is that physics is defined more as a way of thinking and this idea is explored in terms of the purposes of physics education, assessment and the relationship of the subject with other disciplines. A…
Descriptors: Science Instruction, Physics, Science Curriculum, Secondary School Science
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Ding, Lin; Caballero, Marcos D. – Physical Review Special Topics - Physics Education Research, 2014
In a recent study, Caballero and colleagues conducted a large-scale evaluation using the Force Concept Inventory (FCI) to compare student learning outcomes between two introductory physics curricula: the Matter and Interactions (M&I) mechanics course and a pedagogically-reformed-traditional-content (PRTC) mechanics course. Using a conventional…
Descriptors: Science Instruction, Physics, Scientific Concepts, Mechanics (Physics)
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Manthey, Seth; Brewe, Eric – CBE - Life Sciences Education, 2013
University Modeling Instruction (UMI) is an approach to curriculum and pedagogy that focuses instruction on engaging students in building, validating, and deploying scientific models. Modeling Instruction has been successfully implemented in both high school and university physics courses. Studies within the physics education research (PER)…
Descriptors: Physics, Self Efficacy, Curriculum Design, Biology
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Woolmer, Cherie; Sneddon, Peter; Curry, Gordon; Hill, Bob; Fehertavi, Szonja; Longbone, Charlotte; Wallace, Katherine – International Journal for Academic Development, 2016
This paper reflects upon the development of a multidisciplinary lesson plan aimed at developing science skills for Physics and Astronomy, Geographical and Earth Sciences, and Chemistry students at a research intensive Scottish university. The lesson plan was co-developed with a small group of staff and undergraduate students from these…
Descriptors: Foreign Countries, Undergraduate Students, Research Universities, Teacher Student Relationship
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