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Showing 1 to 15 of 22 results Save | Export
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Elina Palmgren; Tommi Kokkonen; Jesper Bruun – Physical Review Physics Education Research, 2025
Mathematics plays many roles in physics and physics education. While these roles have previously been extensively discussed in the physics education research community, no systematic picture of the multifaceted considerations has yet been formed. To gain a comprehensive overview of the previous studies on the topic, we conducted a systematic…
Descriptors: Literature Reviews, Mathematics, Physics, Science Instruction
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Ralph, Vanessa Rosa; States, Nicole E.; Corrales, Adriana; Nguyen, Yvonne; Atkinson, Molly B. – Chemistry Education Research and Practice, 2022
Emphasizing stoichiometry appears to be a norm of introductory chemistry courses. In this longitudinal and mixed-methods study, we examined how the emphasis on stoichiometry in assessments of introductory chemistry impacted educational equity and student learning. Using quantitative methods, we identified mole and stoichiometric conversions as two…
Descriptors: Chemistry, Science Instruction, Equal Education, Introductory Courses
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Krause, Eduard; Dilling, Frederik; Kraus, Simon Friedrich; Chi, Nguyen Phuong; Chat, Tran Ngoc; Van Bien, Nguyen – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This article presents a possible framework for the cooperation of mathematics and physics education research domains. Moreover, the potential topics for such a scientific collaboration are explained by means of a structuring qualitative content analysis of current handbooks and conference proceedings in Germany and Vietnam. These topics can form a…
Descriptors: Interdisciplinary Approach, Mathematics Education, Physics, Educational Research
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Jensen, Jens Højgaard; Niss, Martin; Jankvist, Uffe Thomas – International Journal of Mathematical Education in Science and Technology, 2017
The article addresses the problématique of where mathematization is taught in the educational system, and who teaches it. Mathematization is usually not a part of mathematics programs at the upper secondary level, but we argue that physics teaching has something to offer in this respect, if it focuses on solving so-called unformalized problems,…
Descriptors: Problem Solving, Mathematics, Physics, Foreign Countries
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Ramful, Ajay; Narod, Fawzia Bibi – Mathematics Education Research Journal, 2014
This interdisciplinary study sketches the ways in which proportional reasoning is involved in the solution of chemistry problems, more specifically, problems involving quantities in chemical reactions (commonly referred to as stoichiometry problems). By building on the expertise of both mathematics and chemistry education research, the present…
Descriptors: Interdisciplinary Approach, Logical Thinking, Mathematical Logic, Chemistry
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Huber, Daniel; Jones, Leslie; Helminski, Christine – Australian Mathematics Teacher, 2015
The use of collaborative problem solving within mathematics education is imperative in this day and age of integrative science. The formation of interdisciplinary teams of mathematicians and scientists to investigate crucial problems is on the rise, as greater insight can be gained from an interdisciplinary perspective. Mathematical modelling, in…
Descriptors: Problem Solving, Mathematics, Mathematics Education, Mathematical Models
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Lamanauskas, Vincentas, Ed. – International Baltic Symposium on Science and Technology Education, 2021
These proceedings contain papers of the 4th International Baltic Symposium on Science and Technology Education (BalticSTE2021) held in Šiauliai, Lithuania, June 21-22, 2021. This symposium was organized by the Scientific Methodical Center "Scientia Educologica" in cooperation with Scientia Socialis, Ltd. Lithuania. The proceedings are…
Descriptors: STEM Education, Science Education, Worksheets, Mathematics Education
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Houari, Ahmed – Physics Education, 2011
In this article, I will extend the falling ball method to measure the viscosity of liquids regardless of the degree of their viscosity. For this, I will show that one can obtain a measurement of the terminal velocity of a falling spherical ball in a viscous liquid by solving numerically the equation of motion which describes the dynamics of the…
Descriptors: Mechanics (Physics), Equations (Mathematics), Problem Solving, Theories
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Dixon, Raymond A.; Brown, Ryan A. – Journal of Technology Education, 2012
A concern of many educators and managers is students' ability to transfer concepts and procedures learned in school to the work environment. When children are taught a skill, such as solving a mathematical problem, they often fail to recognize that their new skill can be used to solve a similar problem outside of school. In other cases, students…
Descriptors: Science Tests, Engineering, Standardized Tests, Technology Education
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Carrier, Sarah J.; Thomas, Annie – Science and Children, 2010
"Watch out, the stove will burn you," "Ooh, ice cream headache!" Students construct their conceptions about heat and temperature through their own intuitions about daily life experiences. As a result, misconceptions can be born from these constructed concepts. The activity described here addresses student misconceptions about thermal insulation…
Descriptors: Structural Elements (Construction), Misconceptions, Scientific Concepts, Problem Solving
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Kobayashi, Y. – International Journal of Mathematical Education in Science and Technology, 2008
This article uses diagrams that help the observer see how solutions of the wave equation and heat conduction equation are obtained. The analytical approach cannot necessarily show the mechanisms of the key to the solution without transforming the differential equation into a more convenient form by separation of variables. The visual clues based…
Descriptors: Mathematics Education, Calculus, Problem Solving, Thermodynamics
Chase, Darrell – Techniques: Connecting Education and Careers (J1), 2010
Districts face increasing pressure to improve students' mastery of curriculum in the fields of science, technology, engineering and mathematics (STEM). Yet the number of students enrolling in science and math courses drops dramatically in middle and high school. At Sylvester Middle School, Chinook Middle School and Cascade Middle School of the…
Descriptors: Career Exploration, Science Education, Technology Education, Engineering Education
Shama, Gilli; Layman, John – 1997
The University of Maryland offers a physics course as part of the Maryland Collaborative for Teachers' Preparation (MCTP) project. One of the course aims is to promote the learning of the concept of a function through the learning of physics. Students learn in small groups through problem solving and with the aid of microcomputer-based…
Descriptors: Cognitive Processes, Higher Education, Mathematical Models, Mathematics Education
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Wheatley, G. H. – Science Education, 1991
In this article, constructivism is examined as an epistemological basis for school science and mathematics instruction. The nature and process of constructing scientific and mathematical knowledge in school settings is also considered. A distinction is made between truth and feasibility, and the implications for science education are discussed.…
Descriptors: Concept Formation, Cooperative Learning, Elementary Secondary Education, Learning Theories
Siegler, Robert S. – American Scientist, 1983
Discusses how children's knowledge can be measured/described, knowledge patterns across diverse concepts, interaction of knowledge/learning, and ways children construct more advanced problem-solving rules to replace less adequate ones. Evidence, drawn from studies on children's acquisition of knowledge about balance beams, suggests that knowledge…
Descriptors: Cognitive Processes, Concept Formation, Educational Research, Elementary Education
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