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Fatni Mufit; Yeka Hendriyani; Muhammad Dhanil – Journal of Turkish Science Education, 2024
This research aims to design immersive virtual reality with cognitive conflict to support practical learning of quantum physics. This type of research is design research through the stages of needs analysis, product design, validity test, and practicality test. The needs analysis used questionnaire sheets distributed with Google Forms and obtained…
Descriptors: Teaching Methods, Physics, Science Instruction, Quantum Mechanics
Sirnoorkar, Amogh; Bergeron, Paul D. O.; Laverty, James T. – Physical Review Physics Education Research, 2023
Researchers in physics education have advocated both for including modeling in science classrooms as well as promoting student engagement with sensemaking. These two processes facilitate the generation of new knowledge by connecting to one's existing ideas. Despite being two distinct processes, modeling is often described as sensemaking of the…
Descriptors: Physics, Science Instruction, Learner Engagement, Student Attitudes
W. Brian Lane; Daniela Zavala; Gabriella Khazal; Naomi Laird – Physical Review Physics Education Research, 2024
The communities of practice (COP) framework describes learning as a process of navigating one's position of membership within a community of professionals pursuing a set of common goals using established practices. As students navigate their membership within a community like a physics research group, they develop a mental model of the community…
Descriptors: Student Research, Research Training, Physics, Science Instruction
Jared P. Canright; Suzanne White Brahmia – Physical Review Physics Education Research, 2024
We report on a study of the effects of laboratory activities that model fictitious laws of physics in a virtual reality environment on (i) students' epistemology about the role of experimental physics in class and in the world; (ii) students' self-efficacy; and (iii) the quality of student engagement with the lab activities. We create…
Descriptors: Physics, Science Instruction, Self Efficacy, Computer Simulation
Hoehn, Jessica R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2022
Students sometimes learn about a model of the "scientific method" that is linear and clear cut. While this approach may have pedagogical advantages, it does not reflect how science is often done in practice. The Experimental Modeling Framework (EMF) describes the complex and iterative process of experimentation in the domain of physics,…
Descriptors: Undergraduate Students, Student Attitudes, Scientific Attitudes, Scientific Methodology
Bahng, E. J.; Hauptman, John; Lowery, Jennifer – Journal of College Science Teaching, 2023
This article describes and illustrates a physics course for first-year college students whose only knowledge of physics is that they do not like the subject. The physics content is driven entirely by what appears in the daily newspapers and generally covers most physics topics in a semester. This course was structured as a learning community that…
Descriptors: Physics, College Freshmen, Course Descriptions, Newspapers
Ryan, Qing X.; Wilcox, Bethany R.; Pollock, Steven J. – Physical Review Physics Education Research, 2018
Identifying and understanding student difficulties with physics content in a wide variety of topical areas is an active research area within the physics education research community. Of particular value are investigations of physics topics that appear multiple times in different contexts across the undergraduate physics curriculum. As these common…
Descriptors: Physics, Science Instruction, Energy, Difficulty Level
Monroe, Christin B.; Stein, Andrew; Tolman, Cynthia – Journal of Science Education for Students with Disabilities, 2022
It is essential for introductory level chemistry students to understand atomic models and how atoms interact to form chemical bonds. The tactile model in this article utilizes marbles to represent subatomic particles, a cup to represent the nucleus and wooden rings to simulate the electron orbitals. These inexpensive items can be combined to…
Descriptors: Introductory Courses, Chemistry, Nuclear Physics, Models
Felker, Zachary; Chen, Zhongzhou – Physical Review Physics Education Research, 2023
We examine the effectiveness of a planning prompt intervention to reduce procrastination on online homework for college students. The intervention asked students to indicate their intention to earn small amounts of extra credit for completing assignments earlier and form a plan to realize their intentions. Students' learning behavior is measured…
Descriptors: Physics, Science Instruction, Introductory Courses, Homework
Fatmaryanti, Siska Desy; Pratiwi, Umi; Akhdinirwanto, Raden Wakhid; Sulisworo, Dwi – International Journal of Evaluation and Research in Education, 2022
Comprehensive monitoring in virtual laboratory learning needs a task model. This model was design based on inquiry skills, social and scientific communication of prospective physics teachers. The development of these three skills is still a problem in recent research on virtual laboratory learning. This research was research and development (RD)…
Descriptors: Foreign Countries, College Faculty, Physics, Preservice Teachers
Smith, Emily M.; Stein, Martin M.; Holmes, N. G. – Physical Review Physics Education Research, 2020
Many instructional physics labs are shifting to teach experimentation skills, rather than to demonstrate or confirm canonical physics phenomena. Our previous work found that many students engage in questionable research practices in attempts to confirm the canonical physics phenomena, even when confirmation is explicitly not the goal of the lab.…
Descriptors: Science Laboratories, Physics, Science Instruction, Scientific Concepts
Aksit, Osman; Wiebe, Eric N. – Journal of Science Education and Technology, 2020
Computational thinking (CT) and modeling are authentic practices that scientists and engineers use frequently in their daily work. Advances in computing technologies have further emphasized the centrality of modeling in science by making computationally enabled model use and construction more accessible to scientists. As such, it is important for…
Descriptors: Thinking Skills, Science Instruction, Teaching Methods, Computer Science Education
Mike Verostek; Casey W. Miller; Benjamin M. Zwickl – Physical Review Physics Education Research, 2024
Studying the factors that influence the quality of physics Ph.D. students'doctoral experiences, especially those that motivate them to stay or leave their programs, is critical for providing them with more holistic and equitable support. Prior literature on doctoral attrition has found that students with clear research interests who establish an…
Descriptors: Physics, Science Education, Scientific Research, Student Research
Langbeheim, Elon; Ben-Eliyahu, Einat; Adadan, Emine; Akaygun, Sevil; Ramnarain, Umesh Dewnarain – Chemistry Education Research and Practice, 2022
Learning progressions (LPs) are novel models for the development of assessments in science education, that often use a scale to categorize students' levels of reasoning. Pictorial representations are important in chemistry teaching and learning, and also in LPs, but the differences between pictorial and verbal items in chemistry LPs is unclear. In…
Descriptors: Science Instruction, Learning Trajectories, Chemistry, Thinking Skills
Geller, Benjamin D.; Rubien, Jack; Hiebert, Sara M.; Crouch, Catherine H. – Physical Review Physics Education Research, 2022
A goal of introductory physics for life sciences (IPLS) curricula is to prepare students to effectively use physical models and quantitative reasoning in biological and medical settings. To assess whether this goal is being met, we conducted a longitudinal study of the impact of IPLS on student work in later biology and chemistry courses. We…
Descriptors: Physics, Biology, Science Instruction, Capstone Experiences