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Lottero-Perdue, Pamela; Blaney, Kathryn; Sandifer, Cody – Science and Children, 2022
The "Next Generation Science Standards" (NGSS) encourages educators to help kindergarteners formalize a big idea in physics: A push or pull can cause an object to begin moving, speed up, slow down, stop, or change the direction it is going (NGSS Lead States 2013). In this article, the authors share an exciting, classroom-tested…
Descriptors: Physics, Kindergarten, Preschool Children, Learner Engagement
Lee, Jiwon; Didis Körhasan, Nilüfer – Physical Review Physics Education Research, 2022
Peers play an important role in an individual's learning via collaboration. This study examined three semesters worth of student data collected through collaborative exams in a calculus-based introductory physics course. Participants were asked 142 physics problems over two rounds, and they answered the problems first individually (first round)…
Descriptors: Grouping (Instructional Purposes), Cooperative Learning, Physics, Problem Solving
Torcal-Milla, Francisco Jose – Physics Education, 2022
Diffraction refers to a kind of optical phenomena which occurs when light approaches an element (object or aperture) whose features are in the range of the illuminating wavelength (small apertures, sharp edges). It can be explained by means of the undulatory nature of light or also geometrically by using simple ray optics. Diffraction phenomena…
Descriptors: Light, Optics, Experiments, Class Activities
Hughes, Stephen; Wegener, Margaret; Gurung, Som – Physics Education, 2022
In this paper, a simple method is described for visually demonstrating that the wavelength of light reduces when entering a medium of higher refractive index. When a violet laser (405 nm) is reflected off the surface of a Blu-ray disc (track spacing 320 nm) diffraction cannot occur since the wavelength is greater than the track spacing. However,…
Descriptors: Science Instruction, Physics, Light, Lasers
Kun Su – ProQuest LLC, 2022
This dissertation provides a start-to-finish description of development, administration, and validation for an online middle-school physics test using a DCM framework with response-time. The first paper illustrated the process of implementing DCM with a careful selection of the content domain and a simulation approach for a Q-matrix construction.…
Descriptors: Science Instruction, Physics, Middle Schools, Testing
András Juhász – European Journal of Physics Education, 2022
In this part we introduce the Smart Dreamcatcher (SD) network, a visualization of the Microcosmos. The SD-network is a geometrical structure (3-uniform hypergraph) which allows a comprehensible explanation of quantitative characteristics of hadron particles at the level of elaboration by physics of 1970's-80's. The elementary particles correspond…
Descriptors: Networks, Nuclear Physics, Models, Science Instruction
Xie, Li; Liu, Qiaoyi; Lu, Hui; Wang, Qingyong; Han, Jing; Feng, XiuMei; Bao, Lei – Physical Review Physics Education Research, 2021
A deep understanding of mechanical waves is crucial for students to succeed in studying many advanced physics topics. Studies in existing literature have revealed that students often have widespread difficulties and misconceptions on wave propagation. This research develops and applies a conceptual framework model to examine students'…
Descriptors: Physics, Scientific Concepts, Mechanics (Physics), Comprehension
Beth Thacker; Stephanie Hart; Kyle Wipfli; Jianlan Wang – Research in Science Education, 2025
As introductory physics courses increasingly focus on student engagement, the use of Learning Assistants (LAs) has increased. LAs and other instructors need to have sufficient PCK to effectively guide student learning. Our goal was to research LAs observed PCK in the classroom and to develop a set of questions to assess LAs' PCK. Our research…
Descriptors: Science Teachers, Teaching Assistants, Pedagogical Content Knowledge, Science Instruction
José Arão; Laurinda Leite; Emília Nhalevilo – Science & Education, 2025
Chemistry students should learn not only the key concepts and processes of the discipline but also how they arise, are established, and develop over time. Undergraduate programs for chemistry teachers seldom include training in the history of chemistry to prepare future teachers to put concepts in a historical context. In schools, atom and atomic…
Descriptors: Foreign Countries, Preservice Teachers, Science Teachers, Chemistry
William D. Riihiluoma; Zeynep Topdemir; John R. Thompson – Physical Review Physics Education Research, 2025
The ability to relate physical concepts and phenomena to multiple mathematical representations--and to move fluidly between these representations--is a critical outcome expected of physics instruction. In upper-division quantum mechanics, students must work with multiple symbolic notations, including some that they have not previously encountered.…
Descriptors: Undergraduate Students, College Faculty, Physics, Science Instruction
Lisa Giachini; Isabelle Cabot – Journal of Education and Learning, 2025
This study examines the effects of the pedagogical use of context-rich problems on motivation and learning, as compared to traditional problems, in mechanical physics courses at the college level. The results indicate that the treatment has appreciable outcomes on conceptual learning gain, on the perception of task value and on a perceived sense…
Descriptors: Mechanics (Physics), Science Instruction, Student Motivation, Problem Solving
Secil Alniak-Daye; Feral Ogan-Bekiroglu – Science Insights Education Frontiers, 2025
The aim of this study was to examine the effects of STEM activities on students' attitudes towards STEM and problem-solving skills by taking their components into account. An experimental design with pretest-posttest control group was applied in the study. Quantitative and qualitative data collection tools were used. The participants of the study…
Descriptors: STEM Education, Science Activities, Physics, Student Attitudes
Gerd Kortemeyer; Julian Nöhl – Physical Review Physics Education Research, 2025
This study explores the use of artificial intelligence in grading high-stakes physics exams, emphasizing the application of psychometric methods, particularly item response theory, to evaluate the reliability of AI-assisted grading. We examine how grading rubrics can be iteratively refined and how threshold parameters can determine when…
Descriptors: Physics, Science Tests, Grading, Artificial Intelligence
Mary Jane Brundage; David E. Meltzer; Chandralekha Singh – Physical Review Physics Education Research, 2025
We use a validated conceptual multiple-choice survey instrument focusing on thermodynamic processes and the first and second laws of thermodynamics at the level of introductory physics to investigate the problem-property dependence of introductory and advanced student responses to introductory thermodynamics problems after traditional…
Descriptors: Problem Solving, Science Process Skills, Introductory Courses, Scientific Concepts
Ching-Huei Chen; Victor Law – Educational Technology Research and Development, 2025
This study explores the roles of students' help-seeking profiles when seeking help from AI chatbots, specifically ChatGPT, in a digital game-based learning environment, "Summon of Magicrystal." The study involved 102 middle school students who played an online game with the provision of ChatGPT and sought help from ChatGPT while solving…
Descriptors: Help Seeking, Game Based Learning, Artificial Intelligence, Computer Software

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