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Hutchins, Nicole M.; Biswas, Gautam; Maróti, Miklós; Lédeczi, Ákos; Grover, Shuchi; Wolf, Rachel; Blair, Kristen Pilner; Chin, Doris; Conlin, Luke; Basu, Satabdi; McElhaney, Kevin – Journal of Science Education and Technology, 2020
Synergistic learning combining computational thinking (CT) and STEM has proven to be an effective method for advancing learning and understanding in a number of STEM domains and simultaneously helping students develop important CT concepts and practices. We adopt a design-based approach to develop, evaluate, and refine our Collaborative,…
Descriptors: Physics, Science Instruction, STEM Education, Thinking Skills
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Budinski, Natalija – International Journal for Technology in Mathematics Education, 2017
In this paper we display an example of how educational software Geogebra can be used as a tool for the STEM education. Geogebra is used in the process of introducing students in high school to mathematical models of materials science. Scientific results from materials science experiments were used for mathematical modelling and learning about the…
Descriptors: Geometry, Computer Software, STEM Education, High School Students
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Tisdell, Christopher C. – International Journal of Mathematical Education in Science and Technology, 2017
Knowing an equation has a unique solution is important from both a modelling and theoretical point of view. For over 70 years, the approach to learning and teaching "well posedness" of initial value problems (IVPs) for second- and higher-order ordinary differential equations has involved transforming the problem and its analysis to a…
Descriptors: Equations (Mathematics), Teaching Methods, Problem Solving, Mathematical Models
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Hanson, J. R. – International Journal of Mathematical Education in Science and Technology, 2017
This article explores the process of finding the Fermat point for a triangle ABC in three dimensions. Three examples are presented in detail using geometrical methods. A delightfully simple general method is then presented that requires only the comparison of coordinates of the vertices A, B and C.
Descriptors: Geometry, Geometric Concepts, Mathematical Models, Mathematical Formulas
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Greene, Nathaniel R.; Gill, Tom; Eyerly, Stephen – Physics Teacher, 2016
Force probes are versatile tools in the physics lab, but their internal workings can introduce artifacts when measuring rapidly changing forces. The Dual-Range Force Sensor by Vernier uses strain gage technology to measure force, based on the bending of a beam. Strain gages along the length of the beam change resistance as the beam bends. The…
Descriptors: Motion, Physics, Science Instruction, Laboratory Experiments
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Noll, Jennifer; Clement, Kit; Dolor, Jason; Kirin, Dana; Petersen, Matthew – ZDM: The International Journal on Mathematics Education, 2018
Initial research has shown that simulating data from models created with computer software may enhance students' understanding of concepts in introductory statistics; yet, there is little research investigating students' development of statistical models. The research presented here examines small groups of students as they develop a model for a…
Descriptors: Statistics, Mathematics Instruction, Mathematical Models, Computer Software
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Florjanczyk, Ursula; Ng, Derek P.; Andreopoulos, Stavroula; Jenkinson, Jodie – Biochemistry and Molecular Biology Education, 2018
The mathematical models that describe enzyme kinetics are invaluable predictive tools in numerous scientific fields. However, the daunting mathematical language used to describe kinetic behavior can be confusing for life science students; they often struggle to conceptualize and relate the mathematical representations to the molecular phenomena…
Descriptors: Undergraduate Students, Science Instruction, College Science, Animation
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Geiger, Vince; Mulligan, Joanne; Date-Huxtable, Liz; Ahlip, Rehez; Jones, D. Heath; May, E. Julian; Rylands, Leanne; Wright, Ian – ZDM: The International Journal on Mathematics Education, 2018
In this article we describe and evaluate processes utilized to develop an online learning module on mathematical modelling for pre-service teachers. The module development process involved a range of professionals working within the STEM disciplines including mathematics and science educators, mathematicians, scientists, in-service and pre-service…
Descriptors: Learning Modules, Online Courses, Mathematical Models, Mathematics Instruction
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Lynn Trafton, Tamara – Journal of Economic Education, 2019
The author discusses how to teach students to extend economic models using in-class scaffolding assignments, supported by discussions and workshops. Methods include discussions of a model's strengths and weaknesses; small group, in-class assignments that provide steps toward model extension; informal presentations of the work resulting from these…
Descriptors: Teaching Methods, Economics Education, Scaffolding (Teaching Technique), Assignments
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Mamane, Adnane; Benjelloun, Nadia – Education Sciences, 2019
Our plan is to bring professors and their Moroccan pupils to focus on the teaching-learning of physics, without adopting forced mathematical modeling in previously unknown frames and registers, as is actually the practice. The preliminary study consists of developing a new analytical model for the teaching-learning of the radioactive decay law.…
Descriptors: Mathematical Models, Teaching Methods, Physics, Science Instruction
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Rohde Poole, S. B. – PRIMUS, 2022
This paper is written to provide ideas and guide faculty who want to design a mathematical modeling course for undergraduate mathematics majors and minors. We discuss course goals, assignments, and projects that can be used to help students gain experience relevant for careers and mathematical modeling opportunities. The authors designed this…
Descriptors: Undergraduate Students, Mathematics Instruction, Majors (Students), Mathematical Models
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Cannon, Susan O.; Sanders, Mark – Mathematics Teaching in the Middle School, 2017
Modeling is an effective tool to help students access mathematical concepts. Finding a math teacher who has not drawn a fraction bar or pie chart on the board would be difficult, as would finding students who have not been asked to draw models and represent numbers in different ways. In this article, the authors will discuss: (1) the properties of…
Descriptors: Mathematics Instruction, Mathematical Models, Mathematical Concepts, Concept Formation
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Obasi, Chinedu; Ugo, Chima – Online Submission, 2018
Students' mathematics achievements in secondary school have an influential effect on their performance in university and their future careers. There are numerous innovative teaching strategies which are promising and have shown to improve students' achievement in mathematics; one will wonder if there will be corresponding achievement growth in…
Descriptors: Foreign Countries, Predictor Variables, Academic Achievement, Mathematics Instruction
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Cumber, Peter S. – International Journal of Mathematical Education in Science and Technology, 2017
It is well known that mechanical engineering students often find mechanics a difficult area to grasp. This article describes a system of equations describing the motion of a balanced and an unbalanced roller constrained by a pivot arm. A wide range of dynamics can be simulated with the model. The equations of motion are embedded in a graphical…
Descriptors: Visualization, Mechanics (Physics), Engineering Education, Equations (Mathematics)
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Lommatsch, Christina W. – Mathematics Teacher, 2017
"Find the extreme values of the function." "At what rate is the distance between A and B increasing after 12 seconds?" Prompts like these can be heard in most first-semester calculus courses. Unfortunately, these cues also tend to prompt students' eyes to glaze over with thoughts of "When will I ever use this?" This…
Descriptors: Mathematics Instruction, Calculus, Relevance (Education), Career Choice
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