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Kularajan, Sindura Subanemy; Czocher, Jennifer A. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2022
Using data from teaching experiments and theories from quantitative reasoning, we built second-order accounts of students' mathematics with regards to how they conceived rate of change through operating on existing quantities. In this report, we explain three different ways STEM undergraduates structurally conceive rate of change as they…
Descriptors: STEM Education, Mathematics Instruction, Mathematical Models, Thinking Skills
Czocher, Jennifer A. – Educational Studies in Mathematics, 2018
Contemporary scholars describe mathematical modeling as a transformation of a real-world problem to a mathematical problem and back again. This paper treats a critical issue in the modeling process: how modelers determine if the transformation from the real world to mathematics was carried out well. I present an empirically derived typology of…
Descriptors: Mathematical Models, Prediction, Engineering Education, Undergraduate Students
Czocher, Jennifer A.; Hardison, Hamilton – North American Chapter of the International Group for the Psychology of Mathematics Education, 2019
Formulating a mathematical model is a dynamic process, and attending to changes in students' models as they engage in modeling tasks is critical for informing pedagogical interventions. In this report, we coordinate constructs from literature on mathematical modeling, quantitative and covariational reasoning, and semiotics to characterize changes…
Descriptors: Mathematical Models, Mathematics Instruction, Teaching Methods, Thinking Skills
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
Czocher, Jennifer A.; Moss, Diana L. – Mathematics Teacher, 2017
Why are math modeling problems the source of such frustration for students and teachers? The conceptual understanding that students have when engaging with a math modeling problem varies greatly. They need opportunities to make their own assumptions and design the mathematics to fit these assumptions (CCSSI 2010). Making these assumptions is part…
Descriptors: Mathematical Models, Problem Solving, Mathematics Instruction, High School Students
Czocher, Jennifer A. – Mathematical Thinking and Learning: An International Journal, 2016
This study contributes a methodological tool to reconstruct the cognitive processes and mathematical activities carried out by mathematical modelers. Represented as Modeling Transition Diagrams (MTDs), individual modeling routes were constructed for four engineering undergraduate students. Findings stress the importance and limitations of using…
Descriptors: Mathematical Logic, Thinking Skills, Mathematical Models, Mathematics Activities
Czocher, Jennifer A.; Moss, Diana L. – Mathematics Teaching in the Middle School, 2017
This article presents the Snail problem, a relatively simple challenge about motion that offers engaging extensions involving the notion of infinity. It encourages students in grades 5-9 to connect mathematics learning to logic, history, and philosophy through analyzing the problem, making sense of quantitative relationships, and modeling with…
Descriptors: Mathematical Concepts, Motion, Concept Formation, Problem Solving
Czocher, Jennifer A. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
This study utilized an innovative data analysis approach to examine how engineering undergraduates engaged in mathematical modelling. Individual modelling routes were constructed via modelling activity diagrams and were used to critically examine the theoretical framework. Implications for the theoretical model are offered along with implications…
Descriptors: Undergraduate Students, Engineering Education, Mathematical Models, Mathematics Skills