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Carmelo R. Cartiere – Athens Journal of Education, 2025
In XVII century, presumably between 1637 and 1638, with a note in the margin of Diophantus' "Arithmetica", Pierre de Fermat stated that Diophantine equations of the Pythagorean form, x[superscript n] + y[superscript n] = z[superscript n], have no integer solutions for n > 2, and (x, y, z) > 0. Of this statement, however, Fermat…
Descriptors: Mathematics Education, Calculus, Validity, Mathematical Logic
Dae S. Hong; Dennis Kwaka – International Journal of Mathematical Education in Science and Technology, 2025
This study explores opportunities to learn definite integrals in three widely-used textbooks in the US, Definitions, worked examples, and exercise problems were coded using research based cognitive resources in definite integrals to examine if widely-used textbooks provide students with opportunities to explore how two quantities are related to…
Descriptors: Mathematics Education, Mathematics Instruction, Mathematics Materials, Textbook Evaluation
Kimberly Barba – Mathematics Teacher: Learning and Teaching PK-12, 2025
This inquiry-based lesson about the coastline paradox fosters belonging, curiosity, and authentic mathematical thinking as students explore and construct knowledge together.
Descriptors: Mathematics Education, Inquiry, Relevance (Education), Thinking Skills
Rogier Bos; Marije Wigmans – International Journal for Technology in Mathematics Education, 2025
University students increasingly watch animated math videos that use dynamic visualizations as part of their learning process. Despite students' positive appreciation, little is known about how these visualizations contribute to learning outcomes. This paper examines the relationship between learning outcomes and students' experiences with dynamic…
Descriptors: College Students, Video Technology, Animation, Mathematics Education
Aaron Weinberg; Douglas L. Corey; Michael Tallman; Steven R. Jones; Jason Martin – International Journal of Research in Undergraduate Mathematics Education, 2024
The concept of intellectual need, which proposes that learning is the result of students wrestling with a problem that is unsolvable by their current knowledge, has been used in instructional design for many years. However, prior research has not described a way to empirically determine whether, and to what extent, students experience intellectual…
Descriptors: Student Needs, Cognitive Development, Needs Assessment, Calculus
Lisa Grossbauer – ProQuest LLC, 2023
Although science and engineering (S&E) fields continue to grow, certain groups including first-generation students and women remain underrepresented among S&E degree recipients. Mathematics, specifically calculus, is often the gatekeeper to entering STEM majors that open the pathway to financially lucrative careers in S&E. Although…
Descriptors: High School Students, Mathematics Education, Placement Tests, Self Concept
Dwi Sulistyaningsih; Stevanus Budi Waluya; Isnarto; Sugiman – Educational Process: International Journal, 2025
Background/purpose: This study aims to analyze students' ability to solve differential calculus problems in relation to their prior mathematical knowledge (PMK). Materials/methods: A qualitative research design method was employed. Participants in this study were 103 third-semester students at the university enrolled in the Differential Calculus…
Descriptors: College Students, Mathematics Education, Calculus, College Mathematics
Houssein El Turkey; Gulden Karakok; Emily Cilli-Turner; V. Rani Satyam; Miloš Savic; Gail Tang – International Journal of Science and Mathematics Education, 2024
Fostering students' mathematical creativity is important for their understanding and success in mathematics courses as well as their persistence in STEM, but it necessitates intentional instructional actions, such as designing and implementing tasks that have the potential to foster creativity. As teaching innovation requires support for…
Descriptors: Mathematics Education, Mathematics Instruction, Undergraduate Study, Calculus
Reiser, Elana; Trusnovec, Jenna – Journal of Mathematics Education at Teachers College, 2023
Peter Liljedahl describes a Building Thinking Classrooms (BTC) framework that shows teachers how to set up a classroom that promotes thinking. BTC is divided into 4 toolkits. The first toolkit consists of thinking tasks, vertical non-permanent surfaces, and visibly random groups. The second pertains to defronting the classroom, giving thinking…
Descriptors: Thinking Skills, College Students, Mathematics Education, Curriculum Development
Kontorovich, Igor' – International Journal of Research in Undergraduate Mathematics Education, 2023
Mathematics education research has been aware that calculus students can draw on single definite integrals as a model to compute areas (SImA), without minding whether the function changes its sign in the assigned interval. In this study, I take conceptual and empirical steps to understand this phenomenon in more depth. Building on Fischbein's…
Descriptors: College Freshmen, Mathematics Education, Thinking Skills, Content Analysis
Kalman, Dan – PRIMUS, 2023
In the precalculus curriculum, logistic growth generally appears in either a discrete or continuous setting. These actually feature distinct versions of logistic growth, and textbooks rarely provide exposure to both. In this paper, we show how each approach can be improved by incorporating an aspect of the other, based on a little known synthesis…
Descriptors: Mathematics Education, Calculus, Teaching Methods, Mathematical Models
Aneshkumar Maharaj – Perspectives in Education, 2023
This article focuses on first-year university students' understanding of concepts related to third-degree polynomial and trigonometric functions that they encountered during their study of Grade 12 mathematics. In this study three online questions from two first-year mathematics quizzes at the University of KwaZulu-Natal were analysed. The first…
Descriptors: College Freshmen, Grade 12, Mathematics Education, Calculus
Zachary S. Bettersworth – ProQuest LLC, 2023
This study investigated two undergraduate mathematics students' meanings for derivatives of univariable and multivariable functions when creating linear approximations. Both participants completed multivariable calculus at least two semesters prior to participating in a sequence of four to five exploratory teaching interviews. One purpose of the…
Descriptors: Undergraduate Students, Mathematics Instruction, Mathematics Education, Mathematical Concepts
Heena Kuwayama; Adam Tyner – Thomas B. Fordham Institute, 2025
For decades, calculus has towered over the high-school math landscape, its mastery viewed as the surest marker of high academic achievement. Yet in New England as across the nation, changes are underway: Statistics and data science courses are multiplying, and state leaders are re-engineering graduation rules so students can choose the pathway…
Descriptors: Mathematics Education, Calculus, Public Schools, Secondary School Mathematics
Andrijana Burazin; Veselin Jungic; Miroslav Lovric – International Journal of Mathematical Education in Science and Technology, 2025
The aim of this paper is to contribute to the ongoing discussion about the role of intuition and ambiguity in doing, teaching and learning mathematics. We start by discussing the ways in which limits and continuity are presented in Calculus textbooks, to illustrate some of the ambiguities, and to contrast them with precise and rigorous definitions…
Descriptors: Foreign Countries, Mathematics Instruction, Mathematics Education, Calculus

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