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Sugden, Steve – International Journal of Mathematical Education in Science and Technology, 2012
We consider a problem appearing in an Australian Mathematics Challenge in 2003. This article considers whether a spreadsheet might be used to model this problem, thus allowing students to explore its structure within the spreadsheet environment. It then goes on to reflect on some general principles of problem decomposition when the final goal is a…
Descriptors: Foreign Countries, Problem Solving, Mathematics Instruction, Spreadsheets
van Galen, Frans; van Eerde, Dolly – Indonesian Mathematical Society Journal on Mathematics Education, 2013
At the end of primary school all children more of less know what a percentage is, but yet they often struggle with percentage problems. This article describes a study in which students of 13 and 14 years old were given a written test with percentage problems and a week later were interviewed about the way they solved some of these problems. In a…
Descriptors: Problem Solving, Mathematical Concepts, Interviews, Middle School Students
Lo, Jane-Jane; Kratky, James L. – Mathematics Teacher, 2012
Students frequently have difficulty determining whether a given real-life situation is best modeled as a linear relationship or as an exponential relationship. One root of such difficulty is the lack of deep understanding of the very concept of "rate of change." The authors will provide a lesson that allows students to reveal their misconceptions…
Descriptors: Misconceptions, Mathematics Instruction, Concept Teaching, Mathematical Concepts
Burke, Maurice J. – Mathematics Teacher, 2012
"When making mathematical models, technology is valuable for varying assumptions, exploring consequences, and comparing predictions with data," notes the Common Core State Standards Initiative (2010, p. 72). This exploration of the recursive process in the Devil and Daniel Webster problem reveals that the symbolic spreadsheet fits this bill.…
Descriptors: State Standards, Prediction, Mathematical Models, Secondary School Curriculum
Gainsburg, Julie – Mathematical Thinking and Learning: An International Journal, 2013
Policymakers and education scholars recommend incorporating mathematical modeling into mathematics education. Limited implementation of modeling instruction in schools, however, has constrained research on how students learn to model, leaving unresolved debates about whether modeling should be reified and explicitly taught as a competence, whether…
Descriptors: Engineering Education, Problem Solving, Communities of Practice, Civil Engineering
Hanyak, Michael E., Jr. – Advances in Engineering Education, 2015
In an introductory chemical engineering course, the conceptual framework of a holistic problem-solving methodology in conjunction with a problem-based learning approach has been shown to create a learning environment that nurtures deep learning rather than surface learning. Based on exam scores, student grades are either the same or better than…
Descriptors: Chemical Engineering, Problem Solving, Teaching Methods, Problem Based Learning
Winkel, Brian – International Journal of Mathematical Education in Science and Technology, 2011
We discuss the need for devoting time in differential equations courses to modelling and the completion of the modelling process with efforts to estimate the parameters in the models using data. We estimate the parameters present in several differential equation models of chemical reactions of order n, where n = 0, 1, 2, and apply more general…
Descriptors: Kinetics, Chemistry, Calculus, Equations (Mathematics)
Acevedo Nistal, A.; Van Dooren, W.; Verschaffel, L. – Educational Psychology, 2014
This study evaluates the effects of an intervention aimed at improving representational flexibility in linear-function problems. Forty-nine students aged 13-16 participated in the study. A pretest-intervention-posttest design with an experimental and control group was used. At pretest, both groups solved a choice test, where they could freely…
Descriptors: Intervention, Experimental Groups, Control Groups, Secondary School Mathematics
Berjano, E.; Lozano-Nieto, A. – European Journal of Engineering Education, 2011
One of the most important issues in the reorganisation of engineering education is to consider new pedagogical techniques to help students develop skills and an adaptive expertise. This expertise consists of being able to recognise the nature of a problem intuitively, and also recognising recurring patterns in different types of problems. In the…
Descriptors: Expertise, Engineering Education, Mathematical Models, Electronics
Bryan, Kurt – PRIMUS, 2011
This article presents an application of standard undergraduate ODE techniques to a modern engineering problem, that of using a tuned mass damper to control the vibration of a skyscraper. This material can be used in any ODE course in which the students have been familiarized with basic spring-mass models, resonance, and linear systems of ODEs.…
Descriptors: Mathematical Models, Geometry, Undergraduate Study, Engineering
Aksoy, Yilmaz; Bayazit, Ibrahim; Dönmez, S. Merve Kirnap – EURASIA Journal of Mathematics, Science & Technology Education, 2015
This study investigates approaches, strategies and models used by prospective primary school teachers in responding to real-world problems. The research was carried out with 82 participants. Data were collected through written-exam and semi-structured interviews; and they were analysed using content and discourse analysis methods. Most of the…
Descriptors: Student Teacher Attitudes, Problem Based Learning, Models, Elementary School Curriculum
Ostler, Elliot; Flesch, Michael – MathAMATYC Educator, 2012
This paper justifies the need for, and offers some suggestions on, the selection and implementation of mathematical problems known as dynamic solution exercises (DSEs). The intent of this article is to help provide insight into how mathematics teachers can go about making "vertical articulation" a cooperative and tangible part of the…
Descriptors: Mathematics Curriculum, Program Implementation, Educational Strategies, Problem Sets
Sealey, Vicki; Engelke, Nicole – MathAMATYC Educator, 2012
The great gorilla jump is an activity designed to allow calculus students to construct an understanding of the structure of the Riemann sum and definite integral. The activity uses the ideas of position, velocity, and time to allow students to explore familiar ideas in a new way. Our research has shown that introducing the definite integral as…
Descriptors: Calculus, Word Problems (Mathematics), Mathematics Activities, Problem Solving
Holm, Jennifer, Ed.; Mathieu-Soucy, Sarah, Ed.; Oesterle, Susan, Ed. – Canadian Mathematics Education Study Group, 2017
This submission contains the Proceedings of the 2017 Annual Meeting of the Canadian Mathematics Education Study Group (CMESG), held at McGill University in Montreal, Quebec June 2-6. The CMESG is a group of mathematicians and mathematics educators who meet annually to discuss mathematics education issues at all levels of learning. The aims of the…
Descriptors: Foreign Countries, Mathematics Instruction, Writing Exercises, Mathematical Concepts
Dong, Andy; Sarkar, Somwrita – Journal of Creative Behavior, 2011
This paper argues that design fixation, in part, entails fixation at the level of meta-representation, the representation of the relation between a representation and its reference. In this paper, we present a mathematical model that mimics the idea of how fixation can occur at the meta-representation level. In this model, new abstract concepts…
Descriptors: Mathematical Models, Computer Simulation, College Faculty, Design

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