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Lingefjärd, Thomas; Ahmet, Guner – Physics Teacher, 2022
The subject of mathematics is important for many other subjects, including physics. The questions we ask in physics often need a mathematical translation to be graphically interpreted and transformed. Students learn physics when interacting with physical questions; questions from physics also give insights and discoveries in mathematical problems.…
Descriptors: Science Instruction, Teaching Methods, Physics, Computer Oriented Programs
Curtis, Reagan; Cairns, Darran R.; Bolyard, Johnna J. – Teachers College Press, 2023
Too often, mathematics and science are taught in isolation from each other and from meaningful problems that matter to students. This book draws on the authors' experiences with teacher colleagues, including time spent in their classrooms co-developing and refining lessons. The core of their approach is to encourage learners to pursue solutions to…
Descriptors: Design, Thinking Skills, Evidence Based Practice, Mathematics Instruction
Lyrica Lucas; Anum Khushal; Robert Mayes; Brian A. Couch; Joseph Dauer – International Journal of Science Education, 2025
Educational reform priorities such as emphasis on quantitative modelling (QM) have positioned undergraduate biology instructors as designers of QM experiences to engage students in authentic science practices that support the development of data-driven and evidence-based reasoning. Yet, little is known about how biology instructors adapt to the…
Descriptors: Undergraduate Students, College Science, Biology, Classroom Observation Techniques
Thomas Kraska – Journal of Chemical Education, 2022
An educational lattice model is proposed for the investigation of the influence of the density and indirectly of the pressure on the chemical equilibrium of the ideal gas phase reaction A [equilibrium] 2B. The model can be introduced by a board game simulating a stochastic process. This game can also be used to set up a corresponding computer…
Descriptors: Secondary School Students, Secondary School Science, Chemistry, Science Instruction
Atkin, Keith – Physics Education, 2020
This paper demonstrates how the transcendental number "e" may be arrived at by observing the discharge of a capacitor through a fixed resistor and then modelling the system using a simple step-wise procedure. The experimental phase makes use of the Arduino microcontroller, while simple modelling of the system is carried out by means of…
Descriptors: Physics, Science Instruction, Computer Software, Mathematical Models
Salinas, Dino G.; Gallardo, Mauricio O. – International Journal of Mathematical Education in Science and Technology, 2022
Biological systems exhibit strong dynamic variations; for example, a system may have a tendency towards either a steady state, periodic behaviour or chaotic oscillations. These findings, explained by dynamic systems theory, have allowed researchers to formally relate a wide variety of systems, such as the theory of rumour propagation, glucose…
Descriptors: Biology, Mathematics Instruction, Science Instruction, Teaching Methods
Abernethy, Gavin M. – International Journal of Mathematical Education in Science and Technology, 2021
A discrete model of invasion by subversive alien bodysnatchers is constructed and analysed numerically as a proposed undergraduate project. Several extensions of the model are demonstrated, including a spatial system of ten planets arranged on a one-dimensional lattice, and we discuss some of the practical considerations that arise when…
Descriptors: Undergraduate Students, Space Sciences, Supervision, Student Projects
Lang, Vanessa; Eckert, Christine; Perels, Franziska; Kay, Christopher W. M.; Seibert, Johann – Education Sciences, 2021
Models are essential in science and therefore in scientific literacy. Therefore, pupils need to attain competency in the appropriate use of models. This so-called model--methodical competence distinguishes between model competence (the conceptual part) and modelling competence (the procedural part), wherefrom a definition follows a general…
Descriptors: Chemistry, Biology, Science Instruction, Scientific Literacy
Redish, Edward F. – Physics Teacher, 2021
Learning to create, use, and evaluate models is a central element of becoming a scientist. In physics, we often begin an analysis of a complicated system with highly simplified or toy models. In introductory physics classes, we tend to use them without comment or motivation. Some students infer that physics is irrelevant to their understanding of…
Descriptors: Physics, Science Instruction, Interdisciplinary Approach, Mathematics
Jessica M. Karch – ProQuest LLC, 2021
Productive problem solving, concept construction, and sense making occur through the core process of abstraction. Although the capacity for domain-general abstraction is developed at a young age, the role of abstraction in increasingly complex and disciplinary environments, such as those encountered in undergraduate STEM education, is not well…
Descriptors: Undergraduate Students, Science Instruction, Chemistry, Problem Solving
Langbeheim, Elon – Journal of Chemical Education, 2020
Excluded-volume interactions are ubiquitous to modeling the average size of polymers in solution. This paper shows how simulations can be used by students to explore the emergence of mathematical scaling relations from excluded-volume interactions. Simulations provide robust visual representations of the system, and can be used to investigate a…
Descriptors: Simulation, Plastics, Teaching Methods, Learning Processes
Odom, Arthur – Science Teacher, 2022
This article provides two activities, exploring genetic drift of small breeding populations, highlighting the black-footed ferret ("Mustela nigripes"). According to the U.S. Fish and Wildlife service, all black-footed ferrets are descended from 18 individuals, making them extremely vulnerable to genetic drift. They were thought to be…
Descriptors: Genetics, Mathematical Models, Biodiversity, Evolution
Lukovic, Milentije – Physics Teacher, 2019
Friction is one of the common forces that affect our everyday life and one of the oldest problems studied in physics. An interpretation of its nature is included in all general physics courses, in both high school and college. The desire and need to better understand it guided a long list of scientists who devoted themselves to the study of…
Descriptors: Science Instruction, Physics, Teaching Methods, High School Students
Lazenby, Katherine; Rupp, Charlie A.; Brandriet, Alexandra; Mauger-Sonnek, Kathryn; Becker, Nicole M. – Journal of Chemical Education, 2019
Understanding the nature and purpose of models, including mathematical models, is critical to enabling undergraduate chemistry students to use models to predict and explain phenomena. However, students often do not have systematic conceptions about different kinds of models. To gain a sense of how students understand different models in the…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Teaching Methods
Pastore, A.; Romero, A. M.; Diget, C.; Rios, A.; Leech, K.; Stokoe, P. – Physics Education, 2021
We present a simple activity based on the liquid-drop model which allows secondary school students to explore the uses of mathematical models and gain an intuitive understanding of the concept of binding energy, and in particular the significance of positive binding energy. Using spreadsheets provided as supplementary material, students can…
Descriptors: Science Instruction, Energy, Computer Uses in Education, Teaching Methods

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