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Minchul Kim; Sangwoo Ha – Science & Education, 2024
Although Ohm's law contains various possibilities in teaching and learning scientific inquiry, it is rare for students to experience an authentic inquiry. Thus, we designed an open-ended in-depth inquiry about Ohm's law and made students conduct it. To do this, we developed a laboratory activity for students following a standard method of Ohm's…
Descriptors: Physics, Scientific Concepts, Concept Formation, Science Instruction
Anne van der Linden; Ralph F. G. Meulenbroeks; Wouter R. van Joolingen – Journal of Computer Assisted Learning, 2024
Background: Research on cognitive effects of educational games in general shows promising results. However, there are large variations in learning outcomes between individual educational games. Research on the design process and different design elements of educational games has led to some interesting directions, but some design aspects remain…
Descriptors: Scientific Principles, Mechanics (Physics), Educational Games, Science Education
Zhu, Emily Y. – Physics Education, 2022
Vector cross product transformations are essential components in general physics. The numerous mnemonic devices catered towards each potential transformation result in confusion, defeating their purpose of reducing learning barriers. Therefore, a general mnemonic device, subject-environment interaction or the subject, is proposed to help students…
Descriptors: Physics, Mnemonics, Barriers, Teaching Methods
Meli, Kalliopi; Koliopoulos, Dimitrios; Lavidas, Konstantinos – Science & Education, 2022
Teaching and learning introductory thermodynamics has drawn considerable research attention over the last two decades, especially in several disciplines of higher education. Under particular investigation is the First Law of Thermodynamics (FLT), which offers an expression of energy conservation in thermodynamic systems, as the evidence shows that…
Descriptors: Thermodynamics, Science Instruction, Scientific Principles, Teaching Methods
Myungsoo Yoo – ProQuest LLC, 2024
Spatio-temporal processes are ubiquitous and prevalent across disciplines. Understanding the mechanisms underlying processes and integrating this information into models is of great interest, as it can improve forecasting accuracy and align with scientific motivation. Examples of such models include Partial Differential Equation (PDE) Models or…
Descriptors: Physics, Teaching Methods, Spatial Ability, Accuracy
Héctor Ruiz Martín – Jossey-Bass, An Imprint of Wiley, 2024
The international bestseller "How Do We Learn?" decodes years of cognitive science research into actionable strategies for K-12 teachers, curricula designers, and administrators. You'll discover how classic and emerging findings can transform pedagogy by pointing at practices that take advantage of the innate structures of the human…
Descriptors: Educational Practices, Evidence Based Practice, Learning Processes, Scientific Principles
Fayadh Hamed Alanazi; Mustafa Ali Khalaf; Mohammed Saleh Alzamil; Abdo Noman M. Almufti – Journal of Turkish Science Education, 2023
This study investigates the perceptions of a sample of Arab science teachers pertaining to the cultural factors affecting pupils learning processes in three Arab countries. A randomly sampled group of 169 science teachers from the three countries comprised the participants, Egypt (N=37), Yemen (N=53), and Saudi Arabia (N=79). A questionnaire…
Descriptors: Science Teachers, Teacher Attitudes, Foreign Countries, Cross Cultural Studies
Bøe, Maria Vetleseter; Viefers, Susanne – Science & Education, 2023
Teaching and learning of quantum physics at secondary level is an active field of research. One important challenge is finding ways to promote understanding of quantum concepts without the mathematical formalism that is embedded in quantum mechanics but unavailable on the secondary level. We investigated Norwegian secondary students' (N = 291)…
Descriptors: Secondary School Students, Scientific Principles, Physics, Science Instruction
Hendra Y. Agustian; Bente Gammelgaard; Muhammad Aswin Rangkuti; Jonas Niemann – Science Education, 2025
Affect and emotions matter to science learning. They also matter because they are integral to science identity formation and sense of belonging. This study aims to foreground the epistemic and affective character of laboratory work in higher science education by conceptualizing it as epistemic practice, in which students activate their body and…
Descriptors: College Students, Chemistry, Science Instruction, Laboratory Experiments
Joel D. Cebrero – Journal of Turkish Science Education, 2025
This study systematically analysed, evaluated and synthesised published studies on 21stcentury skills and science achievement among secondary school students. By scouring 17 well-known online journal databases, 684 related studies were found. After the three-stage screening process, only 17 research papers were included in the study, which were…
Descriptors: 21st Century Skills, Science Achievement, Databases, Secondary School Students
Hunter, Kevin H.; Rodriguez, Jon-Marc G.; Becker, Nicole M. – Chemistry Education Research and Practice, 2021
Beyond students' ability to manipulate variables and solve problems, chemistry instructors are also interested in students developing a deeper conceptual understanding of chemistry, that is, engaging in the process of sensemaking. The concept of sensemaking transcends problem-solving and focuses on students recognizing a gap in knowledge and…
Descriptors: Chemistry, Science Process Skills, Problem Solving, Comprehension
Jin, Hui; Delgado, Cesar; Bauer, Malcolm I.; Wylie, E. Caroline; Cisterna, Dante; Llort, Kenneth F. – Science & Education, 2019
In this article, we report on a three-pronged effort to create a hypothetical learning progression for quantification in science. First, we drew from history and philosophy of science to define the quantification competency and develop hypothetical levels of the learning progression. More specifically, the quantification competency refers to the…
Descriptors: Science Education, History, Philosophy, Scientific Principles
Jin, Hui; Delgado, Cesar; Bauer, Malcolm I.; Wylie, E. Caroline; Cisterna, Dante; Llort, Kenneth F. – Grantee Submission, 2019
In this article, we report on a three-pronged effort to create a hypothetical learning progression for quantification in science. First, we drew from history and philosophy of science to define the quantification competency and develop hypothetical levels of the learning progression. More specifically, the quantification competency refers to the…
Descriptors: Science Education, History, Philosophy, Scientific Principles
Rollinde, Emmanuel; Decamp, Nicolas; Derniaux, Catherine – Physical Review Physics Education Research, 2021
The experiment that we present in this paper explores the teaching of Galilean motion principles observed in different reference frames, in an astronomical context. All grade 10 students in a French high school (the lycée Condorcet, Val de Marne) participated in two successive teaching-learning sessions, designed within the theoretical framework…
Descriptors: Teaching Methods, Astronomy, Science Instruction, Learning Processes
Hidayat, Toni; Rustaman, Nuryani; Siahaan, Parsaoran – Journal of Science Learning, 2021
Science textbooks only present scientific facts that cause the textbooks to seem not to promote scientific reasoning. Science learning also becomes not in line with the nature of Science. Then, Science learning requires applying authentic Science as an approach. Adapted Primary Literature (APL) is assumed to be able to achieve this objective.…
Descriptors: Student Attitudes, Science Instruction, Authentic Learning, Scientific Principles

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