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Forest Mannan – International Journal of Mathematical Education in Science and Technology, 2024
This article considers starting with an existing SIMIODE modeling scenario [Winkel, B. (2015). 1-031-CoolIt-ModelingScenario. SIMIODE (Version 2.0). "QUBES Educational Resources." https://doi-org.bibliotheek.ehb.be/10.25334/3WG8-EC31] that develops Newton's law of cooling by considering data on the cooling of a beaker of water in a room, and expanding upon…
Descriptors: Calculus, Mathematical Models, Programming, Heat
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Grosser-Clarkson, Dana L.; Hung, Joanna S. – Mathematics Teacher Educator, 2023
This Perspectives on Practice manuscript focuses on an innovation associated with "Engaging Teachers in the Powerful Combination of Mathematical Modeling and Social Justice: The Flint Water Task" from Volume 7, Issue 2 of "MTE". The Flint Water Task has shown great promise in achieving the dual goals of exploring mathematical…
Descriptors: Learning Activities, Mathematical Models, Social Justice, Teaching Methods
Geiger, Vince; Date-Huxtable, Liz; Ahlip, Rehez; Herberstein, Marie; Jones, D. Heath; May, E. Julian; Rylands, Leanne; Wright, Ian; Mulligan, Joanne – Mathematics Education Research Group of Australasia, 2016
The purpose of this paper is to describe the processes utilised to develop an online learning module within the Opening Real Science (ORS) project--"Modelling the present: Predicting the future." The module was realised through an interdisciplinary collaboration, among mathematicians, scientists and mathematics and science educators that…
Descriptors: Foreign Countries, Instructional Design, Electronic Learning, Preservice Teachers
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Flores, Ángel Homero; Gómez, Adriana; Chávez, Xochitl – International Journal for Technology in Mathematics Education, 2015
Using Mathematical Modelling has become a useful tool in teaching-learning mathematics at all levels. This is so because mathematical objects are seen from their very applications, giving them meaning from the beginning. In this paper we present some details on the development of a teacher's training course called Modelling in the Teaching of…
Descriptors: Mathematical Models, Mathematics Instruction, Secondary School Teachers, Calculators
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Hoskinson, Anne-Marie – CBE - Life Sciences Education, 2010
Biological problems in the twenty-first century are complex and require mathematical insight, often resulting in mathematical models of biological systems. Building mathematical-biological models requires cooperation among biologists and mathematicians, and mastery of building models. A new course in mathematical modeling presented the opportunity…
Descriptors: Mathematical Models, Biology, Interdisciplinary Approach, Curriculum Development
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O'Brien, Timothy E. – Teaching Statistics: An International Journal for Teachers, 2008
This article considers some issues in designing a course focusing on statistical concepts rather than memorizing formulae.
Descriptors: Statistics, Mathematical Concepts, Curriculum Development, Course Content
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Onwueme, Inno; Borsari, Bruno – International Journal of Sustainability in Higher Education, 2007
Purpose: The purpose of this paper is to present a mathematical model that can be used as an educational tool to reflect the philosophical aspects of sustainability. Design/methodology/approach: This is a descriptive paper. Findings: Everyone carries a sustainability deficit. Therefore, opportunities to reduce this deficit abound. Education is an…
Descriptors: Learning Activities, Mathematical Models, Sustainable Development, Outreach Programs
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Julie, Cyril – For the Learning of Mathematics, 2002
Focuses on the activity system of school-teaching mathematics and the impact of mathematical modeling. Describes the Applications of and Modeling in School Mathematics Project (AMSMAP) which investigates teachers' mathematical modeling and its relationship to a hypothesized school mathematical modeling activity system. Discusses the notion of an…
Descriptors: Curriculum Development, Educational Change, Elementary Secondary Education, Mathematical Models
Meunier, John – Journal of Architectural Education, 1980
The teaching of technology in the early years and, in particular, in the first and second year architectural design studios, is discussed. Technology implies performance, which may be measured in nonvisual ways, and implies the application of scientific principles to the building design process. (MLW)
Descriptors: Architectural Education, Building Design, Computation, Curriculum Development
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Lesh, Richard; Harel, Guershon – Mathematical Thinking and Learning, 2003
Describes similarities and differences between modeling cycles and stages of development. Includes examples of relevant constructs underlying children's developing ways of thinking about fractions, ratios, rates, proportions, or other mathematical ideas. Concludes that modeling cycles appear to be local or situated versions of the general stages…
Descriptors: Concept Formation, Curriculum Development, Learning Processes, Mathematical Concepts
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Song, Xueshu – International Journal of Instructional Media, 1992
Describes the development of a computer-aided decision-making system to assist educational practitioners in curriculum decision making about innovative program features and implementation requirements. Topics discussed include the identification of variables; database generation; mathematical modeling; compromising between effectiveness and…
Descriptors: Algorithms, Computer Software Development, Curriculum Development, Databases
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Witten, Gareth Q. – Educational Studies in Mathematics, 2005
Many mathematics departments usually teach a variety of courses for students from different science departments and even from different faculties. These "service" courses are usually taught in the same way as the courses for mathematics major students. However, in science, because of the need to better analyse and interpret experimental…
Descriptors: Mathematical Models, Science Departments, Geology, Chemistry
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Bay-Williams, Jennifer M.; Scott, Michael B.; Hancock, Melisa – Journal of Educational Research, 2007
Simultaneous renewal in teacher education is based on the notion that improvement at 1 level requires improvement at all levels and that all stakeholders are responsible for such improvement. The authors discuss the creation and impact of a mathematics team as a vehicle for simultaneous renewal by using the team model for simultaneous renewal for…
Descriptors: Mathematical Models, Teacher Collaboration, Case Studies, Curriculum Development
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Agnew, J. L.; Keener, M. S. – American Mathematical Monthly, 1980
A description is given of a course developed (at Oklahoma State University) to provide practical skills for mathematics majors entering industry instead of academia. (MK)
Descriptors: College Mathematics, Curriculum Development, Higher Education, Mathematical Applications
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Wilensky, Uri; Reisman, Kenneth – Cognition and Instruction, 2006
Biological phenomena can be investigated at multiple levels, from the molecular to the cellular to the organismic to the ecological. In typical biology instruction, these levels have been segregated. Yet, it is by examining the connections between such levels that many phenomena in biology, and complex systems in general, are best explained. We…
Descriptors: Biology, Science Instruction, Hypothesis Testing, Secondary School Science
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