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Neto, F. S.; Souza, P. V. S. – Physics Education, 2018
We propose an experimental activity in order to develop a mathematical model that relates step length and walking speed of human beings. We employ two well-known physics teaching softwares, namely, Tracker to carry out the video analysis and LibreOffice/Calc to obtain graphs, trend lines and equations. The predictions of our model are compared…
Descriptors: Physics, Secondary School Science, Educational Technology, Technology Uses in Education
Benton, Tom; Elliott, Gill – Research Papers in Education, 2016
In recent years the use of expert judgement to set and maintain examination standards has been increasingly criticised in favour of approaches based on statistical modelling. This paper reviews existing research on this controversy and attempts to unify the evidence within a framework where expertise is utilised in the form of comparative…
Descriptors: Reliability, Expertise, Mathematical Models, Standard Setting (Scoring)
Dickes, Amanda Catherine; Sengupta, Pratim; Farris, Amy Voss; Satabdi, Basu – Science Education, 2016
In this paper, we present a third-grade ecology learning environment that integrates two forms of modeling--embodied modeling and agent-based modeling (ABMs)--through the generation of mathematical representations that are common to both forms of modeling. The term "agent" in the context of ABMs indicates individual computational objects…
Descriptors: Elementary School Science, Science Education, Grade 3, Science Process Skills
Mayer, V. V.; Varaksina, E. I. – Physics Education, 2016
A physical pendulum with a magnetic load is proposed for comparison of linear and nonlinear oscillations. The magnetic load is repelled by permanent magnets which are disposed symmetrically relative to the load. It is established that positions of the pendulum and the magnets determine the dependence of restoring force on displacement of the load.…
Descriptors: Comparative Analysis, Magnets, Experiments, Laboratory Equipment
Starling, James K.; Povich, Timothy J.; Findlay, Michael – PRIMUS, 2016
We describe a modeling project designed for an ordinary differential equations (ODEs) course using first-order and systems of first-order differential equations to model the fermentation process in beer. The project aims to expose the students to the modeling process by creating and solving a mathematical model and effectively communicating their…
Descriptors: Undergraduate Study, College Mathematics, Mathematics Instruction, Equations (Mathematics)
Spayd, Kimberly; Puckett, James – PRIMUS, 2016
This article describes our modeling approach to teaching the one-dimensional heat (diffusion) equation in a one-semester undergraduate partial differential equations course. We constructed the apparatus for a demonstration of heat diffusion through a long, thin metal rod with prescribed temperatures at each end. The students observed the physical…
Descriptors: Mathematics Instruction, Equations (Mathematics), Heat, Teaching Methods
Cascallar, Eduardo; Musso, Mariel; Kyndt, Eva; Dochy, Filip – Frontline Learning Research, 2014
Two articles, Edelsbrunner and, Schneider (2013), and Nokelainen and Silander (2014) comment on Musso, Kyndt, Cascallar, and Dochy (2013). Several relevant issues are raised and some important clarifications are made in response to both commentaries. Predictive systems based on artificial neural networks continue to be the focus of current…
Descriptors: Artificial Intelligence, Research Methodology, Prediction, Classification
Vig, Rozy; Murray, Eileen; Star, Jon R. – Educational Psychology Review, 2014
Current curriculum initiatives (e.g., National Governors Association Center for Best Practices and Council of Chief State School Officers 2010) advocate that models be used in the mathematics classroom. However, despite their apparent promise, there comes a point when models break, a point in the mathematical problem space where the model cannot,…
Descriptors: Mathematical Models, Mathematics Instruction, Numbers, Subtraction
Seshaiyer, Padmanabhan; Solin, Pavel – International Journal for Technology in Mathematics Education, 2017
In this work, we review and share some useful technology for mathematics educators that can help to enhance their pedagogical practices to motivate students to improve their further understanding of differential equations after an initial exposure to the topic in an undergraduate class. In particular, we present some innovative ways to employ…
Descriptors: Mathematics Education, Technology Uses in Education, College Mathematics, Undergraduate Students
Dede, Ayse Tekin; Hidiroglu, Çaglar Naci; Güzel, Esra Bukova – Journal on Mathematics Education, 2017
The purpose of this study is to examine the model eliciting activities developed by the mathematics student teachers in the context of the principles of the model eliciting activities. The participants of the study conducted as a case study design were twenty one mathematics student teachers working on seven groups. The data collection tools were…
Descriptors: Mathematics Instruction, Student Teachers, Mathematical Models, Qualitative Research
Tillema, Erik; Gatza, Andrew; Ulrich, Catherine – Australian Mathematics Teacher, 2017
The number and algebra strand of the "Australian Curriculum: Mathematics" (2015) advocates for holding together the study of number and algebra across years K-8--a position that mathematics educators have endorsed in many countries. This recommendation along with the report "Shape of the Australian Curriculum: Mathematics"…
Descriptors: Foreign Countries, Mathematics Education, Mathematics Curriculum, National Curriculum
Gordon, Sheldon P.; Yang, Yajun – International Journal of Mathematical Education in Science and Technology, 2017
This article takes a closer look at the problem of approximating the exponential and logarithmic functions using polynomials. Either as an alternative to or a precursor to Taylor polynomial approximations at the precalculus level, interpolating polynomials are considered. A measure of error is given and the behaviour of the error function is…
Descriptors: Mathematical Formulas, Algebra, Mathematics Activities, Error of Measurement
Srnec, Matthew N.; Upadhyay, Shiv; Madura, Jeffry D. – Journal of Chemical Education, 2017
In undergraduate physical chemistry, Schrödinger's equation is solved for a variety of cases. In doing so, the energies and wave functions of the system can be interpreted to provide connections with the physical system being studied. Solving this equation by hand for a one-dimensional system is a manageable task, but it becomes time-consuming…
Descriptors: Undergraduate Study, College Science, Chemistry, Science Instruction
Osler, James Edward, II – Journal of Educational Technology, 2015
This monograph provides an epistemological rational for the Accumulative Manifold Validation Analysis [also referred by the acronym "AMOVA"] statistical methodology designed to test psychometric instruments. This form of inquiry is a form of mathematical optimization in the discipline of linear stochastic modelling. AMOVA is an in-depth…
Descriptors: Statistical Analysis, Test Validity, Test Reliability, Inquiry
Walsh, Matthew M.; Gluck, Kevin A. – Cognitive Science, 2015
To function well in an unpredictable environment using unreliable components, a system must have a high degree of robustness. Robustness is fundamental to biological systems and is an objective in the design of engineered systems such as airplane engines and buildings. Cognitive systems, like biological and engineered systems, exist within…
Descriptors: Schemata (Cognition), Simulation, Semantics, Memory

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