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Showing all 13 results Save | Export
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Walsh, Cole; Lewandowski, H. J.; Holmes, N. G. – Physical Review Physics Education Research, 2022
Instructional labs are fundamental to an undergraduate physics curriculum, but their possible learning goals are vast with limited evidence to support any particular goal. In this study, we evaluate the efficacy of labs with different goals and structures on students' critical thinking skills and views about experimentation, using an extensive…
Descriptors: Science Process Skills, Science Instruction, Critical Thinking, Science Experiments
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Viennot, Laurence; Décamp, Nicolas – Contributions from Science Education Research, 2020
This chapter illustrates the main warning signals that could help us to detect the flaws of an explanation in physics: internal contradiction (two examples); direct contradiction of a law of physics (one example); indirect contradiction of a law of physics (one example); logical incompleteness of an explanation (three examples); overgeneralization…
Descriptors: Critical Reading, Critical Thinking, Physics, Misconceptions
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Michael Vignal; Gayle Geschwind; Benjamin Pollard; Rachel Henderson; Marcos D. Caballero; H. J. Lewandowski – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Measurement uncertainty is a critical feature of experimental research in the physical sciences, and the concepts and practices surrounding measurement uncertainty are important components of physics lab courses. However, there has not…
Descriptors: Scientific Concepts, Science Experiments, Physics, Science Laboratories
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Adrian Adams; Lauren Barth-Cohen – CBE - Life Sciences Education, 2024
In undergraduate research settings, students are likely to encounter anomalous data, that is, data that do not meet their expectations. Most of the research that directly or indirectly captures the role of anomalous data in research settings uses post-hoc reflective interviews or surveys. These data collection approaches focus on recall of past…
Descriptors: Undergraduate Students, Physics, Science Instruction, Laboratory Experiments
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Walsh, Cole; Quinn, Katherine N.; Wieman, C.; Holmes, N. G. – Physical Review Physics Education Research, 2019
Introductory physics lab instruction is undergoing a transformation, with increasing emphasis on developing experimentation and critical thinking skills. These changes present a need for standardized assessment instruments to determine the degree to which students develop these skills through instructional labs. In this article, we present the…
Descriptors: Critical Thinking, Physics, Cognitive Tests, Science Experiments
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Smith, Emily M.; Holmes, N. G. – Physical Review Physics Education Research, 2020
The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper, we describe a theoretically motivated scheme to evaluate instructional lab curricula and apply that scheme to three implementations of an electricity and magnetism lab curriculum. The…
Descriptors: Critical Thinking, Thinking Skills, Physics, Teaching Methods
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González, Manuel Á.; González, Miguel Á.; Vegas, Jesús; Llamas, César – Physics Education, 2017
A simple experiment on the determination of the coefficient of restitution of different materials is taken as the basis of an extendable work that can be done by students in an autonomous way. On the whole, the work described in this paper would involve concepts of kinematics, materials science, air drag and buoyancy, and would help students to…
Descriptors: Science Instruction, Science Experiments, Physics, Scientific Concepts
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Holmes, N. G.; Lewandowski, H. J. – Physical Review Physics Education Research, 2020
Physics lab instruction is evolving in response to changing technology, a desire to better prepare students for diverse careers, and renewed focus from physics education researchers. To prepare researchers to evaluate progress in instructional labs in the future, this study set out to understand the current state of instructional physics labs in…
Descriptors: Physics, Laboratory Experiments, Teaching Methods, Science Instruction
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Tamang, Sushmika; Nopparatjamjomras, Suchai; Chitaree, Ratchapak; Nopparatjamjomras, Thasaneeya R. – Physics Education, 2015
A container was placed on top of a piece of white paper, and a pin positioned so that it vertically touched an outside wall of the container. Students were asked to predict the image of the pin when it was observed from the top of the container. Two scenarios of either an empty container or a container completely filled with water were considered…
Descriptors: Scientific Concepts, Scientific Principles, Critical Thinking, Science Activities
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Holmes, N. G.; Kumar, Dhaneesh; Bonn, D. A. – Physical Review Physics Education Research, 2017
Developing critical thinking skills is a common goal of an undergraduate physics curriculum. How do students make sense of evidence and what do they do with it? In this study, we evaluated students' critical thinking behaviors through their written notebooks in an introductory physics laboratory course. We compared student behaviors in the…
Descriptors: Critical Thinking, Cues, Instructional Effectiveness, Thinking Skills
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Chun, Man-Seog; Kang, Kwang Il; Kim, Young H.; Kim, Young Mee – Universal Journal of Educational Research, 2015
This case study aims to verify the benefits of theme-based project learning for convergent science experiments. The study explores the possibilities of enhancing creative, integrated and collaborative teaching and learning abilities in science-gifted education. A convergent project-based science experiment program of physics, chemistry and biology…
Descriptors: Student Projects, Active Learning, Science Experiments, Thematic Approach
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Rosen, Robert D. – Physics Teacher, 2008
Our school has a very small budget for equipment. So finding a gem like a conservation of momentum lab requiring only basic materials ("TPT", October 2005) adds a great deal to my physics course. In this lab, a "shooter" nickel makes a non-head-on collision with a stationary "target" nickel. Students measure the distance each nickel slides after…
Descriptors: Physics, Critical Thinking, Energy, Science Laboratories
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Pushkin, David B. – Journal of College Science Teaching, 1997
Recommends a constructivist approach to physics laboratory activities to make laboratories a place for personal maturation and cognitive growth. Describes class design in which ideas and techniques are exchanged which allow students the opportunity to initiate investigations based on early conceptual assumptions, and extend the investigation…
Descriptors: Cognitive Development, Constructivism (Learning), Creative Thinking, Critical Thinking