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Suárez, Álvaro; Martí, Arturo C.; Zuza, Kristina; Guisasola, Jenaro – Physical Review Physics Education Research, 2023
Textbooks play a fundamental role in teaching and learning in school science classrooms. In this paper, we investigate the presentation of the nature of the electromagnetic field in a dozen of the world's most popular introductory university physics textbooks. We analyze, from an epistemologically based teaching approach, the didactic treatment of…
Descriptors: Teaching Methods, Physics, Science Instruction, Textbooks
Etherington, Sarah J.; Callan, Natalie; Koh, Shu Hui; Hourani, Tamara; Nolton, Marnie – Advances in Physiology Education, 2023
This article showcases the redesign of an introductory undergraduate vertebrate physiology unit at Murdoch University (BMS107) to promote student mastery of six Core Concepts of Physiology (Michael J, Cliff W, McFarland J, Modell H, Wright A, SpringerLink. "The Core Concepts of Physiology: a New Paradigm for Teaching Physiology," 2017).…
Descriptors: Introductory Courses, Physiology, Concept Formation, Scientific Concepts
Bapty, Hannah – Science & Education, 2023
It is 157 years since Mendel presented his results on hybridisation in peas to the Brünn Society for Natural Science. The discipline of genetics has dramatically changed since then, with technological advancements revealing multifactorial causation and trait variability. Whilst none of this complexity featured in the discovery of classical…
Descriptors: Introductory Courses, Science Education, Genetics, Science Instruction
Mary Jane Brundage; David E. Meltzer; Chandralekha Singh – Physical Review Physics Education Research, 2024
We use the Survey of Thermodynamic Processes and First and Second Laws-Long, a research-based survey instrument with 78 items at the level of introductory physics, to investigate introductory and advanced students' difficulties with internal energy, work, and heat transfer. We present analysis of data from 12 different introductory and advanced…
Descriptors: Physics, Science Instruction, Teaching Methods, Difficulty Level
Elijah J. Cole; Jennifer H. Doherty – Advances in Physiology Education, 2025
Research shows that when students use core concepts to guide their reasoning, they are able to construct more accurate, mechanistic explanations. However, there is scant research exploring student's perceptions of the usefulness of core concepts. Knowing students' perceptions could be influential in encouraging faculty to adopt core concept…
Descriptors: Physiology, Science Education, Student Attitudes, Thinking Skills
Aguiar, C. E.; Barroso, M. F.; Dias, P. M. C.; Francisquini, M. F. B. – Physics Education, 2022
Difficulties presented by students on the concept of instantaneous velocity are well known. This is in part due to instantaneous speed being often defined in terms of the notion of mathematical limit, which may not be clear to many students in introductory physics courses. In this work we present a complementary teaching proposal that can help…
Descriptors: Physics, Scientific Concepts, Difficulty Level, Mathematics
Miquel Solà; F. Matthias Bickelhaupt – Journal of Chemical Education, 2022
Simple mathematical models can serve to reveal the essence of experimental phenomena and scientific concepts. The particle in a box (PIB), for example, is widely used in undergraduate programs to teach the quantum mechanical principles behind the UV--vis spectra of conjugated polyenes and polyynes. In this work, the particle on a ring (POR) and…
Descriptors: Scientific Concepts, Teaching Methods, Chemistry, Energy
Vegard Gjerde; Sivert Hagane – Physical Review Physics Education Research, 2024
Peer Instruction gives practice in the abstract language of physics, addresses common misconceptions among students, and is more effective than traditional lecturing. However, it is not clear what makes Peer Instruction effective nor how we might improve the method. An emerging perspective is that what makes Peer Instruction effective is how it…
Descriptors: Science Instruction, Peer Teaching, Scientific Concepts, Models
Ronald L. Reyes; Junjun A. Villanueva – Journal of Chemical Education, 2024
In pursuit of active learning and fostering conceptual understanding, educators and researchers have tirelessly endeavored to reshape the perception of chemistry, transcending its apparent barriers of technical jargon, semantics, and symbolism. One innovative approach that aligns with this mission is the integration of narratives into chemical…
Descriptors: Introductory Courses, Chemistry, Science Instruction, Visualization
Alistair McInerny; Andrew Boudreaux; Mila Kryjevskaia – Physical Review Physics Education Research, 2025
This article reports on a controlled study to investigate the efficacy of incorporating explicit discussions about the duality of human reasoning and its implications for learning in physics instruction. The central goal is to probe to what extent, if at all, such discussions improve student performance on tasks that tend to elicit intuitively…
Descriptors: Discussion (Teaching Technique), Physics, Science Instruction, Science Achievement
Ravishankar Chatta Subramaniam; Nikhil Borse; Amir Bralin; Jason W. Morphew; Carina M. Rebello; N. Sanjay Rebello – Physical Review Physics Education Research, 2025
Reform documents advocate for innovative pedagogical strategies to enhance student learning. A key innovation is the integration of science and engineering practices through engineering design (ED)-based physics laboratory tasks, where students tackle engineering design problems by applying physics principles. While this approach has its benefits,…
Descriptors: Physics, Laboratory Experiments, Teaching Methods, Science Instruction
Ian Descamps; Sophia Jeon; N. G. Holmes; Rachel E. Scherr; David Hammer – Physical Review Physics Education Research, 2024
In introductory physics laboratory instruction, students often expect to confirm or demonstrate textbook physics concepts. This expectation is largely undesirable: labs that emphasize confirmation of textbook physics concepts are generally unsuccessful at teaching those concepts and even in contexts that do not emphasize confirmation, such…
Descriptors: Physics, Science Instruction, Teaching Methods, Personal Autonomy
Melaku, Samuel; Dabke, Rajeev B. – Journal of Chemical Education, 2021
Interlocking toy building blocks (e.g., Lego) as chemistry teaching modules are presented. Interlocking building blocks were assembled on a baseplate to depict chemistry concepts of Lewis structures, chemical bonding, conjugate acid-base pairs, types of chemical reactions, irregularity in ionization energy trends, and the decay of a radioactive…
Descriptors: Toys, Teaching Methods, Undergraduate Students, Introductory Courses
Mart, T. – Physics Education, 2021
In this paper I explain how I usually introduce the Schrödinger equation during the quantum mechanics course. My preferred method is the chronological one. Since the Schrödinger equation belongs to a special case of wave equations I start the course with introducing the wave equation. The Schrödinger equation is derived with the help of the two…
Descriptors: Science Instruction, Teaching Methods, Quantum Mechanics, Equations (Mathematics)
Mary Jane Brundage; Alexandru Maries; Chandralekha Singh – Physical Review Physics Education Research, 2023
The Energy and Momentum Conceptual Survey (EMCS) is a multiple-choice survey that contains conceptual problems involving a variety of energy and momentum concepts covered in a typical introductory physics course for science and engineering majors. Prior studies suggest that many concepts on the survey are challenging for introductory physics…
Descriptors: Physics, Energy, Scientific Concepts, Concept Formation