Publication Date
| In 2026 | 0 |
| Since 2025 | 0 |
| Since 2022 (last 5 years) | 0 |
| Since 2017 (last 10 years) | 0 |
| Since 2007 (last 20 years) | 7 |
Descriptor
| Concept Formation | 31 |
| Graphing Calculators | 31 |
| Mathematics Instruction | 24 |
| Secondary Education | 11 |
| Algebra | 10 |
| Graphs | 10 |
| Teaching Methods | 10 |
| Educational Technology | 9 |
| Higher Education | 9 |
| Mathematical Concepts | 8 |
| Mathematics Education | 8 |
| More ▼ | |
Source
Author
Publication Type
Education Level
| Higher Education | 3 |
| Secondary Education | 3 |
| Elementary Education | 2 |
| Postsecondary Education | 2 |
| Grade 5 | 1 |
| Grade 6 | 1 |
| Intermediate Grades | 1 |
| Middle Schools | 1 |
Audience
| Teachers | 4 |
| Practitioners | 3 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Abramovich, Sergei; Connell, Michael L. – International Journal of Technology in Teaching and Learning, 2015
The paper uses digital fabrication as a learning environment to demonstrate the importance of conceptual understanding of one-variable inequalities. These inequalities are hidden within two-variable inequalities used to construct geometric shapes the borders of which are the graphs of basic functions from the secondary mathematics curriculum. As…
Descriptors: Concept Formation, Mathematics Instruction, Teaching Methods, Computer Software
Thomas, Ryan Vail – ProQuest LLC, 2016
The goal of this study is to explore and characterize the effects of using a dynamic graphing utility (DGU) on conceptual understanding and attitudes toward mathematics, measured by the responses of college algebra students to an attitude survey and concepts assessment. Two sections of college algebra taught by the primary researcher are included…
Descriptors: Graphs, College Mathematics, Algebra, Student Attitudes
Kurz, Terri L.; Serrano, Alejandra – Teaching Children Mathematics, 2015
To support students' development of concepts in mathematics, the use of technology is often encouraged (Common Core State Standards Initiative [CCSSI] 2010). Technology can contextualize learning and provide a meaningful setting for mathematical ideas. Most teachers are supportive regarding the use of technology to encourage learning and…
Descriptors: Mathematics Instruction, Mathematical Concepts, Concept Formation, Teaching Methods
Leng, Ng Wee – International Journal of Mathematical Education in Science and Technology, 2011
The purpose of this study was to investigate how the use of TI-Nspire[TM] could enhance the teaching and learning of calculus. A conceptual framework for the use of TI-Nspire[TM] for learning calculus in a mathematics classroom is proposed that describes the interactions among the students, TI-Nspire[TM], and the learning tasks, and how they lead…
Descriptors: Mathematics Education, Problem Solving, Graphing Calculators, Foreign Countries
Ozgun-Koca, S. Asli; Meagher, Michael; Edwards, Michael Todd – Mathematics Educator, 2010
There is a dearth of research on the mechanisms for preservice teachers' development of the pedagogical knowledge necessary for effective use of such technologies. We explored the emergent Technological Pedagogical and Content Knowledge (TPACK) (Niess 2005, 2006, 2007) of a group of secondary mathematics preservice teachers in a methods course as…
Descriptors: Preservice Teacher Education, Preservice Teachers, Methods Courses, Teacher Education Curriculum
Gratzer, William; Krishnan, Srilal – International Journal of Mathematical Education in Science and Technology, 2008
The revolution of technology in education has heralded a new wave of learning styles and in some cases total dependence on technology. Yet, statistics reveal no significant improvement in student performance in Mathematics and a downward trend in basic algebra skills. The major impediment in the learning process is lack of understanding of the…
Descriptors: Mathematics Instruction, Mathematics Skills, Mathematical Concepts, Comprehension
Peer reviewedTrouche, Luc – Educational Studies in Mathematics, 2000
Discusses the problems of conceptualization of the function limit in technological environments (principally graphing calculators today and symbolic calculators tomorrow) that are gradually being adopted in precalculus teaching. Explains how the instrumentation process and the conceptualization process are dependent on each other. Sets forth a…
Descriptors: Cognitive Processes, Concept Formation, Graphing Calculators, Secondary Education
Peer reviewedWorrall, Laura J.; Quinn, Robert – Mathematics Teacher, 2001
Presents a lesson to teach matrices that emphasizes conceptual understanding and allows students to extend their investigations into important and relevant situations by using graphing calculators after important conceptual understanding has been developed. (KHR)
Descriptors: Algebra, Concept Formation, Graphing Calculators, Mathematics Activities
Peer reviewedForster, Patricia A.; Taylor, Peter C. – Educational Studies in Mathematics, 2000
Presents an inquiry into students' conceptual development of a graphics calculator function for direction. Discusses reflective thinking and reflective enculturation, operational and structural understanding, and situated abstraction. (Contains 33 references.) (Author/ASK)
Descriptors: Case Studies, Cognitive Processes, Concept Formation, Elementary Secondary Education
Peer reviewedCuoco, Al; Manes, Michelle – Mathematics Teacher, 2001
Presents two examples of using the limitations of calculators to help students understand important mathematical ideas. The first example shows how a simple algebraic calculation can make a recursive model work long enough to perform the job at hand while the second shows how the limitations of a calculator can be used to introduce the need for…
Descriptors: Computation, Concept Formation, Graphing Calculators, Learning Strategies
Peer reviewedShultz, Harris S. – Mathematics and Computer Education, 1995
Calls for the use of the zoom feature of graphing calculators to help students better understand the concept of derivatives. (MKR)
Descriptors: Calculus, Concept Formation, Graphing Calculators, Higher Education
Rivera, Ferdinand; Becker, Joanne, Rossi – International Group for the Psychology of Mathematics Education, 2004
In this report, we give a sociocultural account of the mediating functions handheld graphing calculators and social interaction play in students' mathematical understanding. We discuss the evolution of students' abilities to symbolize, model, and develop collective mathematical practices about polynomial inequalities in instrumented activity. In…
Descriptors: Interaction, Graphing Calculators, Sociocultural Patterns, Mathematics Instruction
Peer reviewedLee, Mary Ann – Mathematics Teacher, 2000
Presents an insightful approach to algebra that enhances both personal and classroom communication through the process of solving a linear equation. (KHR)
Descriptors: Algebra, Concept Formation, Discourse Modes, Graphing Calculators
Peer reviewedHollar, Jeannie C.; Norwood, Karen – Journal for Research in Mathematics Education, 1999
Extends O'Callaghan's computer-intensive algebra study by using his component competencies and the process-object framework to investigate the effects of a graphing-approach curriculum employing the TI-82 graphing calculator. Concludes that students in the graphing-approach classes demonstrated significantly better understanding of functions on…
Descriptors: Algebra, Concept Formation, Educational Technology, Elementary Secondary Education
Aspetsberger, Klaus – 1998
This paper reports on a mathematics course in an Austrian high school that focuses on probability distributions. Students in this course used a TI-92 during math classes, at home for doing exercises, and during math tests. The TI-92 was used as a tool for calculations and illustrations making the concepts of probability distributions easy to…
Descriptors: Concept Formation, Foreign Countries, Graphing Calculators, Instructional Design

Direct link
