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Wei-Zhao Shi; Chunying Zuo; Jingying Wang – Physical Review Physics Education Research, 2025
Previous research has shown that in prehigher education stages, inquiry-based teaching is not sufficient for forming a mature understanding of the nature of science (NOS). However, there is relatively little research conducted on colleges. Inquiry-based teaching should not overlook cognitive frameworks, as students' limited scientific reasoning…
Descriptors: Teaching Methods, Inquiry, Active Learning, College Science
Campos, Esmeralda; Hernandez, Eder; Barniol, Pablo; Zavala, Genaro – Physical Review Physics Education Research, 2023
Identifying students' difficulties in understanding Gauss's and Ampere's laws is important for developing educational strategies that promote an expertlike understanding of the field concept and Maxwell's equations of electromagnetic phenomena. This study aims to analyze and compare students' understanding of symmetry when applying Gauss's and…
Descriptors: Scientific Principles, Teaching Methods, Scientific Concepts, Concept Formation
Kim, Thomas; Wright, L. Kate; Miller, Kathryn – Chemistry Education Research and Practice, 2019
Students in chemistry often demonstrate difficulty with the principle of resonance. Despite many attempts to mitigate this difficulty, there have been few attempts to examine the root cause of these issues. In this study, students were assessed for their perception of Kekule structures based on perceptual learning theory, which is grounded in…
Descriptors: Science Instruction, Chemistry, Scientific Principles, Concept Formation
Coletta, Vincent P.; Bernardin, Josh; Pascoe, Daniel; Hoemke, Anatol – Physics Teacher, 2019
Physics instructors recognize the value of kinesthetic experience in learning fundamental physics concepts. We describe a kinesthetic experiment appropriate for both college and high school physics students. The experiment helps students achieve an intuitive understanding of Newton's second law in a way they find quite enjoyable. It was devised by…
Descriptors: Physics, Science Instruction, Scientific Concepts, Teaching Methods
Briggs, Michael – Physics Teacher, 2019
The mystery tube is a fairly well known activity among science teachers for illustrating the nature of science. A variety of procedures have been presented for carrying out this activity, such as Scott Miller's method based on the BCSE 5E Instructional Model. Mystery tubes and other "black box" activities allow the students to engage in…
Descriptors: Physics, Science Instruction, Scientific Principles, Teaching Methods
Keeports, David – Physics Teacher, 2017
On the first day of class I ask my students, "What makes a true statement true?" Then I tell them that they might be surprised to learn that there are only two types of true statements in physics, and I encourage them to try to discover the two categories.
Descriptors: Physics, Classroom Techniques, Scientific Concepts, Scientific Principles
Michie, Michael; Hogue, Michelle; Rioux, Joël – Research in Science Education, 2018
The issue of Indigenous engagement, participation and success in the sciences is a concern both in Australia and in Canada. The authors of this paper have taught Indigenous students in tertiary enabling programs, undergraduate science and science education. Their experiences bridging Indigenous and Western cultures in science and science education…
Descriptors: Foreign Countries, College Students, Indigenous Populations, Teaching Methods
Loth, Matthew; Gibbons, Chad; Belaiter, Sami; Clarage, James B. – Physics Teacher, 2017
One of the canonical, and memorable, classroom demonstrations from an upper-division mechanics course is to toss a rigid body with three distinct principal moments of inertia into the air, giving it a spin along one of its three principal axes. A student's mechanics textbook itself works great for the body, secured rigidly shut with a rubber band.…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Teaching Methods
Sokolowski, Andrzej – Physics Education, 2017
Graphs in physics are central to the analysis of phenomena and to learning about a system's behavior. The ways students handle graphs are frequently researched. Students' misconceptions are highlighted, and methods of improvement suggested. While kinematics graphs are to represent a real motion, they are also algebraic entities that must satisfy…
Descriptors: Graphs, Physics, Science Instruction, Misconceptions
Lindsay, John; Arok, Adhieu; Bybee, Seth M.; Cho, Walter; Cordero, April Maskiewicz; Ferguson, Daniel G.; Galante, Leontine L.; Gill, Richard; Mann, Mark; Peck, Steven L.; Shively, Cassidy L.; Stark, Michael R.; Stowers, Joshua A.; Tenneson, Michael; Tolman, Ethan R.; Wayment, Thomas; Jensen, Jamie L. – CBE - Life Sciences Education, 2019
Too many students reject the theory of evolution because they view it as incompatible with their religious beliefs. Some have argued that abandoning religious belief is the only way to help religious individuals accept evolution. Conversely, our data support that highlighting faith/evolution compatibility is an effective means to increase student…
Descriptors: College Students, Church Related Colleges, Religious Factors, Beliefs
Bloom, Mark A.; Binns, Ian C.; Meadows, Lee – Electronic Journal for Research in Science & Mathematics Education, 2021
In this manuscript, three science educators describe strategies used to effectively communicate about religiously and culturally sensitive science content and share lessons learned from their experiences. Mark A. Bloom (2019-2021 Fellow) describes the challenges he overcame in teaching climate change science at an evangelical university by…
Descriptors: Religion, Cultural Differences, Science Instruction, Christianity
Carter, B. Elijah; Wiles, Jason R. – International Journal of Environmental and Science Education, 2017
This qualitative study explores the experiences of six students enrolled in a special topics biology class that exclusively used primary literature as course material. Nature of science (NOS) conceptions have been linked to students' attitudes toward scientific subjects, but there has been little research specifically exploring the effects of…
Descriptors: Qualitative Research, Primary Sources, Biology, Literature
Fulford, Janice Marie; Rudge, David Wÿss – Science & Education, 2016
The phenomenon of industrial melanism (IM) became widely acknowledged as a well-documented example of natural selection largely as a result of H.B.D. Kettlewell's pioneering research on the subject in the early 1950s. It was quickly picked up by American biology textbooks starting in the early 1960s and became ubiquitous throughout the 1970s,…
Descriptors: Biology, Textbooks, Evolution, Phenomenology
Cooper, A. Kat; Oliver-Hoyo, M. T. – Chemistry Education Research and Practice, 2016
Argument construction is a valuable ability for explaining scientific phenomena and introducing argumentation skills as part of a curriculum can greatly enhance student understanding by promoting self-reflection on the topic under investigation. This article aims to use argument construction as a technique to support an activity designed to…
Descriptors: Persuasive Discourse, Rhetorical Invention, Scientific Literacy, Scientific Principles
Marshman, Emily; Singh, Chandralekha – Physical Review Physics Education Research, 2017
Single photon experiments involving a Mach-Zehnder interferometer can illustrate the fundamental principles of quantum mechanics, e.g., the wave-particle duality of a single photon, single photon interference, and the probabilistic nature of quantum measurement involving single photons. These experiments explicitly make the connection between the…
Descriptors: Quantum Mechanics, Difficulty Level, Problem Solving, Action Research