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Diana Villabona; Asuman Oktaç; Solange Roa-Fuentes – ZDM: Mathematics Education, 2024
We offer a new angle to explain the comprehension of mathematical infinity. We use Action-Process-Object-Schema (APOS) theory to explore the construction of different aspects of the cognitive Object related to this notion. We focus our attention on different ways of interacting with infinity, and how to act on infinite entities. Our aim is to shed…
Descriptors: Mathematical Concepts, Cognitive Processes, Comprehension, Concept Formation
Thabiso Khemane; Pragashni Padayachee; Corrinne Shaw – International Journal of Mathematical Education in Science and Technology, 2023
This article explores the conceptual challenges that engineering students encounter with double integrals in a vector calculus course. Drawing on previous literature and utilising APOS (Activity- Process- Objects- Schema) as a theoretical framework, this study investigates the difficulties that students face in understanding and applying double…
Descriptors: Mathematical Concepts, Calculus, Learning Strategies, Engineering Education
Charles Hohensee; Teo Paoletti; Allison L. Gantt; Srujana Acharya; Julien Corven – Mathematics Teacher Educator, 2025
Research has shown there are algebra concepts elementary teachers can introduce that help prepare elementary students for the eventual transition to algebra (e.g., the relational interpretation of the equal sign). "Early algebra" refers to the use of informal approaches to introduce such concepts to elementary students. "Strip…
Descriptors: Elementary School Teachers, Preservice Teachers, Problem Solving, Visual Aids
Larissa Hahn; Pascal Klein – Educational Studies in Mathematics, 2025
In mathematics education, students are repeatedly confronted with the tasks of interpreting and relating different representations. In particular, switching between equations and diagrams plays a major role in learning mathematical procedures and solving mathematical problems. In this article, we investigate a rather unexplored topic with…
Descriptors: Undergraduate Students, Mathematics Instruction, Equations (Mathematics), Mathematics Skills
Fangli Xia; Mitchell J. Nathan; Kelsey E. Schenck; Michael I. Swart – Cognitive Science, 2025
Task-relevant actions can facilitate mathematical thinking, even for complex topics, such as mathematical proof. We investigated whether such cognitive benefits also occur for action predictions. The action-cognition transduction (ACT) model posits a reciprocal relationship between movements and reasoning. Movements--imagined as well as real ones…
Descriptors: Undergraduate Students, Geometry, Mathematical Concepts, Mathematics Instruction
John Mark Watford Jr. – ProQuest LLC, 2024
Despite the standardization of calculus education as a Calculus and Analytic Geometry course after the 1950s, curriculum updates have been slow to penetrate the undergraduate mathematics classroom practice, taking decades to manifest. Common struggles with the teaching and learning of calculus, such as relying on a procedural understanding of…
Descriptors: Mathematics Instruction, Secondary School Students, Calculus, Educational Change
Andrew Kercher; Canan Günes; Rina Zazkis – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Extant research has demonstrated that problem-posing and problem-solving mutually affect one another. However, the exact nature and extent of this relationship requires a detailed elaboration. This is especially true when adidactical problem-posing arises within a problem-solving context. In this study, we analyze the scripting journey used by two…
Descriptors: Undergraduate Students, Preservice Teachers, Preservice Teacher Education, Problem Solving
Ozdemir, Emine; Seker, Burcu Sezginsoy – Educational Research and Reviews, 2021
Today, it is important how much individuals acquire knowledge and use this theoretical knowledge in their daily life. A qualified training program is expected to train individuals who can solve problems. The prospective classroom teachers, who are expected to train individuals who can solve problems, should also have knowledge about the…
Descriptors: Knowledge Level, Problem Solving, Learning Strategies, Undergraduate Students
Sulma Paola Vera-Monroy; Sandra Rodriguez; Manuel Alfredo Figueredo – International Journal of Mathematical Education in Science and Technology, 2024
This study evaluates the implementation of a collaborative/game-based learning strategy on final year B.Sc. students focused on reinforcing the Taylor theorem (a mathematical concept previously learned, usually forgotten over time and widely used in chemical engineering) and analyses its effect on their academic performance. To this end, the…
Descriptors: Undergraduate Students, Engineering Education, Game Based Learning, Teaching Methods
Sangmi Park – ProQuest LLC, 2023
A solid foundation in mathematics is beneficial not only for individuals' concurrent and later academic achievement, but also for future career success and financial stability. Rational number knowledge plays a pivotal role in mathematical success, yet it is often regarded as a challenging area to grasp comprehensively. The dissertation aims to…
Descriptors: Numeracy, Mathematics Instruction, Mathematics Achievement, Mathematics Anxiety
Radmehr, Farzad; Drake, Michael – Education Sciences, 2020
Previous studies of integral calculus have mainly explored students' conceptual and procedural knowledge; only a few have focused on students' metacognition in relation to integral calculus. The study reported here explored students' metacognitive knowledge of integral calculus by interviewing nine first-year university and eight Year 13 students.…
Descriptors: Calculus, Mathematics Instruction, Metacognition, College Freshmen
Daniel Ortiz; Tania Azucena Chicalote Jiménez – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
A digital wall is a tool for students to structure and register their online work on mathematical problem-solving activities that involve the coordinated use of digital technologies. How could students use such digital wall to understand mathematical concepts and to develop problem-solving competencies? The aim of this study is to analyze and…
Descriptors: Problem Solving, Metacognition, Mathematics Instruction, Mathematical Concepts
Yimer, Sirak Tsegaye – EURASIA Journal of Mathematics, Science and Technology Education, 2020
The purpose of the study was to explore whether learners' conceptual knowledge (CK) or procedural knowledge (PK) understanding of calculus using the stimulus of active technology-based learning strategy better influence their content knowledge (COK) development. The quantitative methods were used in a quasi-experimental design. CK, PK and COK…
Descriptors: Stimulation, Knowledge Level, Active Learning, Learning Strategies
Oktaviyanthi, Rina; Herman, Tatang; Dahlan, Jarnawi Afgani – Journal on Mathematics Education, 2018
The purpose of this study was to investigate the flow of thought of the pre-service mathematics teachers through the answers of a function limit evaluation by formal definition. This study used a qualitative approach with descriptive method. The research subjects were the students of mathematics education department of Universitas Serang Raya,…
Descriptors: Preservice Teachers, Mathematics Teachers, Mathematical Concepts, Mathematical Logic
Hashemi, Nourooz; Abu, Mohd Salleh; Kashefi, Hamidreza; Mokhtar, Mahani; Rahimi, Khadijeh – EURASIA Journal of Mathematics, Science & Technology Education, 2015
Derivatives and integrals are two important concepts of calculus which are precondition topics for most of mathematics courses and other courses in different fields of studies. A majority of students at the undergraduate level have to master derivatives and integrals if they want to be successful in their studies However, students encounter…
Descriptors: Mathematical Concepts, Calculus, Undergraduate Students, Problem Solving