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Barceló-Oliver, Miquel; Cabello, Carlos P.; Torrens-Serra, Joan; Miró, Manuel; Cabot, Catalina; Bosch, Rafael; Delgado, Montserrat R. – Journal of Chemical Education, 2021
Although residues and resource shortages are major problems of modern living, these topics are not usually properly covered in university curricula. To tackle this situation, we have guided undergraduate students through the design of a group of active learning activities, to demonstrate the science behind separation and recycling: trash…
Descriptors: College Science, Undergraduate Students, Science Instruction, Recycling
Woods, Gordon – School Science Review, 2019
The formulation of the periodic system by the Russian Mendeleev was followed by the surprising discovery of gallium by the Frenchman de Boisbaudran. The Englishman Ramsay's explanation of an 'impurity' in air led to recognition of a new period. A young fellow countryman, Moseley, justified the expected existence of 92 elements. A German couple,…
Descriptors: Science Instruction, Chemistry, Science History, Charts
David C. Owens – Journal of College Science Teaching, 2025
Elementary students learn best when they make observations about perplexing natural phenomena, ask questions about what they observed, and pursue answers to their own questions through engagement in science practice. However, facilitating such learning experiences can be challenging for novice instructors. In this unit, pre-service elementary…
Descriptors: Science Education, Lunar Research, Astronomy, Elementary School Students
Hackett, Laura; Simpson, Sherralyn – Primary Science, 2022
LASAR (Learning about Science and Religion) has been exploring different opportunities to engage children with practical science enquiry to develop children's understanding of the nature of science and how they suppose science connects to 'big questions'. After-school club opportunities and classroom opportunities are presented.
Descriptors: Science Instruction, Scientific Principles, Inquiry, After School Programs
Stadermann, Kirsten; Goedhart, Martin – Physics Education, 2022
High school students' difficulties with quantum physics (QP) are partly due to their limited understanding of the nature of science (NOS). The essence of QP can only be understood with informed views about NOS aspects such as the role of models and the relevance of controversies between physicists. Inversely, QP is an ideal topic for teaching…
Descriptors: Science Instruction, Physics, Quantum Mechanics, High School Students
Wilcox, Jesse; Reiter, Reade; Rose, Abby; Alberts, Alex; Murano, Katie – Science and Children, 2022
Although the "Next Generation Science Standards" (NGSS) have three dimensions, the crosscutting concepts are often the forgotten dimension. One reason teachers may not emphasize the crosscutting concepts might be because they are broad, domain-general constructs that can be difficult to conceptualize in a meaningful way. Yet, when taught…
Descriptors: Science Instruction, Scientific Principles, Teaching Methods, Inquiry
Puttick, Steven; Cullinane, Alison – Journal of Geography in Higher Education, 2022
This paper offers an exploratory account of the Nature of Geography (NOG) for geography education. The proposed NOG framework describes geography through the theoretical offerings of the family resemblance approach across the dimensions of: aims and values; knowledge; methods and methodological rules; practices; and geography as a…
Descriptors: Geography Instruction, Scientific Principles, Science Education, Guidelines
Härtel, Hermann – European Journal of Physics Education, 2020
Based on a publication of Assis, where the most straightforward and oldest motor is described, first constructed by Ampère, a simple experiment is added to demonstrate once again, why published explanations about its principle of operation and especial the kind how Newton's 3rd principle is used has to be rejected. Ampère's description of his…
Descriptors: Science Experiments, Scientific Principles, Physics, Magnets
Canassa, T. A.; Freitas, W. P. S.; Ferreira, J. V. B.; Goncalves, A. M. B. – Physics Education, 2020
We propose an experimental analogy to verify Kepler's second law using a spherical pendulum. We made a movie of a closed elliptical orbit of the pendulum and extracted the data position using the Tracker software. Analyzing the data, we measured the areas that the position vector sweeps showing the validity of Kepler's second law.
Descriptors: Scientific Principles, Motion, Physics, Science Experiments
Navalkar, Vinita; Sawant, Sumedh; Mourya, Shubham – Physics Education, 2021
The concept of black body is of primary importance in studying the energy transfer of thermal electromagnetic radiation at all wavelengths. Several physical bodies like incandescent lamps, electric heaters, stoves, the sun and the other stars, microwave background radiation, etc., are considered to be black bodies as their radiation spectra fits…
Descriptors: Energy, Radiation, Light, Physics
Hyde, Jeffrey M. – Physics Teacher, 2021
Popular accounts of exciting discoveries often draw students to physics and astronomy, but at the introductory level it is challenging to connect with these in a meaningful way. The use of real astronomical data in the classroom can help bridge this gap and build valuable quantitative and scientific reasoning skills. This paper presents a strategy…
Descriptors: Astronomy, Physics, Science Instruction, Introductory Courses
Gauld, Colin; Cross, Rod – Physics Education, 2021
Newton's cradle is often discussed in science classrooms as a clear example of the laws of conservation of momentum and energy although it has been shown that this use is somewhat misleading. Approaches to understanding the behaviour of this apparatus are often over-simplified and deficient or over-complex and with little impact among teachers. In…
Descriptors: Scientific Principles, Conservation (Concept), Mechanics (Physics), Simulation
Dhabih V. Chulhai – Journal of Chemical Education, 2024
We present a tool, one that is both a stand-alone web-based video game and a Python package, designed for students to explore a particle's wave function on one-dimensional potential surfaces. The tool relies on a basis set formalism and can, therefore, explore any one-dimensional potential surface imaginable. This tool also lets students interact…
Descriptors: Science Instruction, Teaching Methods, Technology Uses in Education, Educational Games
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
Hilliker, Angela K.; Grayson, Kristine L. – Biochemistry and Molecular Biology Education, 2022
As biologists accumulate or encounter increasingly large and complex data sets, our field creates the need for students to develop skills in data exploration and visualization. Many biology courses lack the time for students to develop the skills needed to parse complex datasets and visualize them appropriately. We developed a new upper-level…
Descriptors: Science Instruction, Biology, Undergraduate Students, Data Collection

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