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Jungck, John R. – PRIMUS, 2022
Finite Mathematics has become an enormously rich and productive area of contemporary mathematical biology. Fortunately, educators have developed educational modules based upon many of the models that have used Finite Mathematics in mathematical biology research. A sufficient variety of computer modules that employ graph theory (phylogenetic trees,…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Learning Modules
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Solares-Rojas, Armando; Arellano-Aguilar, Omar; García González, Moisés Martín; López-Vargas, María del Rocío; Coles, Alf; Méndez Serrano, Alejandra – Research in Mathematics Education, 2022
We report our progress on the "River Memorial Museum" didactic intervention project developed with schools, in the basin of the Atoyac River in Mexico, that are significantly impacted by the pollution produced through industrialisation. The teachers of the elementary schools in these communities, environmental scientists, educators, and…
Descriptors: Mathematics Education, Rural Areas, Museums, Intervention
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Sokolowski, Andrzej – Physics Teacher, 2019
Research identifies two domains by which mathematics allows learning physics concepts: a technical domain that includes algorithmic operations that lead to solving formulas for an unknown quantity and a structural domain that allows for applying mathematical knowledge for structuring physical phenomena. While the technical domain requires…
Descriptors: Physics, Science Instruction, Mathematics Skills, Scientific Concepts
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Mayer, Robert V. – European Journal of Contemporary Education, 2017
Various approaches to the problem of computer modelling of assimilation and forgetting of the educational information are considered. With the help of the multi-component model the Ebbinghaus' curve of forgetting of poorly assimilating information to be remembered through recurrences is confirmed. It is taken into account, that while training…
Descriptors: Memory, Qualitative Research, Computer Simulation, Observational Learning
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Pratt, Sarah Smitherman; Eddy, Colleen M. – Journal of Mathematics Education at Teachers College, 2017
Mathematics teachers frequently provide concrete manipulatives to students during instruction; however, the rationale for using certain manipulatives in conjunction with concepts may not be explored. This article focuses on area models that are currently used in classrooms to provide concrete examples of integer and binomial multiplication. The…
Descriptors: Mathematics Instruction, Numbers, Multiplication, Algebra
Gersten, Russell; Schumacher, Robin F.; Jordan, Nancy C. – Journal of Learning Disabilities, 2017
Magnitude understanding is critical for students to develop a deep understanding of fractions and more advanced mathematics curriculum. The research reports in this special issue underscore magnitude understanding for fractions and emphasize number lines as both an assessment and an instructional tool. In this commentary, we discuss how number…
Descriptors: Numbers, Number Systems, Fractions, Mathematical Models
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Cahyono, Adi Nur; Sukestiyarno, Yohanes Leonardus; Asikin, Mohammad; Miftahudin; Ahsan, Muhammadi Ghozian Kafi; Ludwig, Matthias – Journal on Mathematics Education, 2020
The aim of this study is to investigate how an augmented reality mobile math trails program can provide opportunities for students to engage in meaningful mathematical modelling activities. An explorative research design was conducted involving two mathematics teachers and 30 eight grades in Semarang, Indonesia. An Augmented Reality Mobile Math…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Models, Educational Technology
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Vijayan, Vrinda; Joshith, V. P. – Journal on Educational Psychology, 2018
Problems are part of our lives. It causes stress, tension, emotional instability, and physical strain to us. It is very essential to deal with our problems before they deal with our happiness. Problem solving skill is an irreplaceable life skill and it is cognitive or thinking activity essential to our day-to-day lives. In order to lead a…
Descriptors: Problem Solving, Mathematics Skills, Mathematics Education, Mathematical Models
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de Cataldo, Riccardo; Griffith, Kaitlyn M.; Fogarty, Keir H. – Journal of Chemical Education, 2018
Introductory chemistry students encounter the concept of hybrid orbitals as a transition from atomic orbitals to molecular bonding. The principal purpose of learning hybridization in the undergraduate curriculum is to impart an understanding of the origins of molecular bonding and geometry. Physical models of both individual hybrid orbitals and…
Descriptors: Introductory Courses, Science Instruction, Visualization, Molecular Structure
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Carreira, Susana; Baioa, Ana Margarida – ZDM: The International Journal on Mathematics Education, 2018
Based on a teaching intervention with modelling activities involving experimental work in 9th grade classes, the goal of this study is to find out how students estimate the credibility a modelling task setting when it integrates a hands-on experimental approach. The theoretical background is based on the concept of authenticity and its long…
Descriptors: Mathematical Models, Mathematics Instruction, Teaching Methods, Observation
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Enderle, Patrick; King, Natalie; Margulieux, Lauren – Science Teacher, 2021
Teaching about wave structure and function is a critical element of any physical science curriculum and supported by "Next Generation Science Standards (NGSS)" PS4: Waves and Their Applications in Technologies for Information Transfer. To support students' learning of these ideas, teachers often rely on developing graphic models of a…
Descriptors: Science Education, Standards, Teaching Methods, Science Curriculum
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Kularajan, Sindura Subanemy; Czocher, Jennifer A. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2021
In this paper we address the question, how do quantitative reasoning and covariational reasoning present as students build structural conceptions of real-world situations. We use data from an exploratory teaching experiment with an undergraduate STEM major to illustrate the explanatory roles quantitative reasoning and covariational reasoning play…
Descriptors: Mathematics, Thinking Skills, Concept Formation, Undergraduate Students
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Santri, Diah Dwi; Hartono, Yusuf; Somakim – Journal of Education and Learning (EduLearn), 2019
This study aims to produce a learning trajectory using the mathematical modeling in helping students to understand the concept of algebraic operations. Therefore, the design research was chosen to meet the research aims and to give in formulating and developing local instructional theory in learning algebraic operations. Learning trajectory…
Descriptors: Mathematical Models, Algebra, Mathematics Instruction, Video Technology
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Kotze, H.; Spangenberg, E. D. – Perspectives in Education, 2019
Many engineering subjects rely on the interpretation of symbolic, numeric and graphic representations. Engineering students have challenges pertaining to their mathematical understanding of their actions with a computer algebra system (CAS). We investigated how a mathematical modelling task could mediate varied levels of mathematical…
Descriptors: Foreign Countries, Computer Uses in Education, Algebra, Educational Technology
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Stern, David; Stern, Roger; Parsons, Danny; Musyoka, James; Torgbor, Francis; Mbasu, Zach – Statistics Education Research Journal, 2020
The African Data Initiative started as a crowd-sourced campaign to improve the teaching of statistics in African universities. The analysis of climate data provides one suitable context to illustrate ideas that lead to a radical new form of teaching. The problem within the context comes first, the technicalities are largely reduced -- mathematics…
Descriptors: Foreign Countries, Data Collection, Data Analysis, Higher Education
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