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Showing 1 to 15 of 36 results Save | Export
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Elina Palmgren; Tapio Rasa – Science & Education, 2024
Modelling roles of mathematics in physics has proved to be a difficult task, with previous models of the interplay between the two disciplines mainly focusing on mathematical modelling and problem solving. However, to convey a realistic view of physics as a field of science to our students, we need to do more than train them to become fluent in…
Descriptors: Physics, Mathematical Models, Science Instruction, Problem Solving
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Alicia Curria; Lindsay Keazer; Darcy Ronan – Mathematics Teacher: Learning and Teaching PK-12, 2024
Connections among the mathematics, science, and engineering disciplines have been recognized and affirmed in national standards. For example, the application of mathematical ideas and skills within science has been highlighted in national science standards for over 20 years. More recently, the Next Generation Science Standards (NGSS; NGSS Lead…
Descriptors: Elementary School Teachers, Elementary School Students, Inquiry, Sustainability
Horiguchi, Tomoya; Masuda, Tetsuhiro; Tomoto, Takahito; Hirashima, Tsukasa – Research and Practice in Technology Enhanced Learning, 2019
In science education, building models of dynamical systems is a promising method for understanding various natural phenomena and artifacts with scientific concepts. It is, however, difficult to learn skills and concepts necessary for modeling. Though several model-building learning environments (MBEs) have been developed with potentially useful…
Descriptors: Science Education, Learning Processes, Scientific Concepts, Systems Approach
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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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Greenler, Robert – Physics Education, 2015
Two philosophical ideas motivate this paper. The first is an answer to the question of what is an appropriate activity for a physicist. My answer is that an appropriate activity is anything where the tools of a physicist enable him or her to make a contribution to the solution of a significant problem. This may be obvious in areas that overlap…
Descriptors: Problem Solving, Ecology, Introductory Courses, Physics
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Weintrop, David; Beheshti, Elham; Horn, Michael; Orton, Kai; Jona, Kemi; Trouille, Laura; Wilensky, Uri – Journal of Science Education and Technology, 2016
Science and mathematics are becoming computational endeavors. This fact is reflected in the recently released Next Generation Science Standards and the decision to include "computational thinking" as a core scientific practice. With this addition, and the increased presence of computation in mathematics and scientific contexts, a new…
Descriptors: Secondary School Mathematics, Secondary School Science, High School Students, Mathematics Education
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Scott, Fraser J. – European Journal of Science and Mathematics Education, 2016
The "mathematics problem" is a well-known source of difficulty for students attempting numerical problem solving questions in the context of science education. This paper illuminates this problem from a biology education perspective by invoking Hogan's numeracy framework. In doing so, this study has revealed that the contextualisation of…
Descriptors: Problem Solving, Numeracy, Biology, Science Instruction
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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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Dixon, Raymond A.; Johnson, Scott D. – Journal of Technology Education, 2012
A cognitive construct that is important when solving engineering design problems is executive control process, or metacognition. It is a central feature of human consciousness that enables one "to be aware of, monitor, and control mental processes." The framework for this study was conceptualized by integrating the model for creative design, which…
Descriptors: Engineering, Novices, Metacognition, Higher Education
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Stamovlasis, Dimitrios; Tsaparlis, Georgios – Science Education, 2012
In this study, we test an information-processing model (IPM) of problem solving in science education, namely the working memory overload model, by applying catastrophe theory. Changes in students' achievement were modeled as discontinuities within a cusp catastrophe model, where working memory capacity was implemented as asymmetry and the degree…
Descriptors: Predictor Variables, High School Students, Logical Thinking, Science Education
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Vármonostory, Endre – Acta Didactica Napocensia, 2009
The method of proof by mathematical induction follows from Peano axiom 5. We give three properties which are often used in the proofs by mathematical induction. We show that these are equivalent. Supposing the well-ordering property we prove the validity of this method without using Peano axiom 5. Finally, we introduce the simplest form of…
Descriptors: Mathematical Logic, Mathematical Applications, Mathematical Models, Teaching Methods
Hazelrig, Jane B. – Physiologist, 1983
Discusses steps to be executed when studying physiological systems with theoretical mathematical models. Steps considered include: (1) definition of goals; (2) model formulation; (3) mathematical description; (4) qualitative evaluation; (5) parameter estimation; (6) model fitting; (7) evaluation; and (8) design of new experiments based on the…
Descriptors: College Science, Higher Education, Mathematical Models, Physiology
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Leff, Harvey S. – American Journal of Physics, 1978
Presents a simple model whereby the work per cycle done on an external agent, and a sand reservoir, by a reversible heat engine can be analyzed explicitly. (Author/SL)
Descriptors: College Science, Heat, Higher Education, Instructional Materials
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Robertson, Douglas F. – Journal of Geological Education, 1978
Describes a learning activity when students construct a model of a buried valley by using computer assistance. Explanation of the problem includes mathematical models and illustrations. (MA)
Descriptors: Computer Assisted Instruction, Earth Science, Geology, Geophysics
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McCall, Tom L. – American Biology Teacher, 1976
Points out that man and his institutions must be far-sighted and make sacrifices now to benefit future species and to preserve the environment. (LS)
Descriptors: Environment, Environmental Education, Legislation, Mathematical Models
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