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Showing 1 to 15 of 19 results Save | Export
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Giovanna Valori; Belén Giacomone; Veronica Albanese; Natividad Adamuz-Povedano – International Journal of Mathematical Education in Science and Technology, 2024
The combined use of origami and dynamic geometry software has recently appeared in mathematics education to enrich students' geometric thinking. The objective of this research is to study the roles played by the interaction of two artifacts, paper folding and GeoGebra, in a construction-proving problem as well as its generalization in the…
Descriptors: Educational Technology, Manipulative Materials, Computer Software, Geometry
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Giovanna Valori; Veronica Albanese; Natividad Adamuz-Povedano; Emilse Gómez-Torres – International Journal of Education in Mathematics, Science and Technology, 2024
Finding teaching methods that foster students' development of geometric thinking and visualization skills is still a current challenge. This study analyses the effects of the combined use of paper folding and dynamic geometry on high school students' geometric thinking and visualization skills. A quasi-experimental study pretest/post-test design…
Descriptors: Mathematics Instruction, Geometry, Educational Technology, Distance Education
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Joseph M. Furner – Pedagogical Research, 2024
Today math teachers can best reach their students and show them how math surrounds us by using manipulatives, children's literature, and GeoGebra while teaching mathematics. These are some of the best pedagogical practices for teaching mathematics today. In our high-tech world, students need to be proficient in science, technology, engineering,…
Descriptors: Teaching Methods, Mathematics Instruction, Manipulative Materials, Childrens Literature
McCulloch, Allison W.; Lovett, Jennifer N. – Eye on Education, 2023
This timely book provides support for secondary mathematics teachers learning how to enact high-quality, equitable math instruction with dynamic, mathematics-specific technologies. Using practical advice from their own work as well as from interviews with 23 exceptional technology-using math teachers, the authors develop a vision of teaching with…
Descriptors: Secondary School Teachers, Mathematics Teachers, Mathematics Instruction, Educational Technology
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Ðokic, Olivera J.; Boricic, Milana M. Dabic; Jelic, Mila S. – Journal of Educational Computing Research, 2022
Since one of the main goals of teaching geometry is to provide students with the opportunity to develop spatial reasoning, it is important to find the most suitable support for learning 3D geometry in elementary school. This paper compares Information and Communication Technology (ICT) and physical manipulatives support, with the aim to answer if…
Descriptors: Grade 4, Geometry, Spatial Ability, Mathematics Instruction
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Trimurtini; Waluya, S. B.; Sukestiyarno, Y. L.; Kharisudin, Iqbal – European Journal of Educational Research, 2022
Geometric thinking affects success in learning geometry. Geometry is studied from elementary school to university level. Therefore, in higher education and basic education, it is necessary to carry out a systematic review in order to obtain tips for improving geometric thinking skills. A systematic review of geometric thinking was done in this…
Descriptors: Thinking Skills, Research Reports, Geometric Concepts, Intervention
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Natalija, Budinski; Lavicza, Zsolt; Fenyvesi, Kristof; Milinkovic, Dragica – International Electronic Journal of Mathematics Education, 2020
In this paper, we present opportunities with the uses of origami and technology, in our case GeoGebra, in teaching formal geometric definitions for fifth-grade primary school students (11-12yrs). Applying origami in mathematical lessons is becoming to be recognized as a valuable tool for improving students' mathematical knowledge. In previous…
Descriptors: Grade 5, Elementary School Students, Elementary School Mathematics, Geometry
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Meagher, Michael S.; Edwards, Michael Todd; Özgün-Koca, S. Asli – Mathematics Teacher, 2016
The article opens with a Geoboard Triangle Quest in this form: "How many noncongruent triangles can be constructed on a 4 × 4 geoboard? How do you know? Justify your answer with significant supporting work." The use of advanced digital technologies as tools for problem solving receives much attention in the methods classes if the…
Descriptors: Mathematics Instruction, Geometry, Technology Uses in Education, Educational Technology
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Herman, Marlena – Mathematics Teacher, 2012
The Ancient Greeks studied conic sections from a geometric point of view--by cutting a cone with a plane. Later, Apollonius (ca. 262-190 BCE) obtained the conic sections from one right double cone. The modern approach to the study of conics can be considered "analytic geometry," in which conic sections are defined in terms of distance…
Descriptors: Equations (Mathematics), Geometry, Geometric Concepts, Mathematics Instruction
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Lee, Chun-Yi; Chen, Ming-Jang – Journal of Educational Computing Research, 2014
Previous studies on the effects of virtual and physical manipulatives have failed to consider the impact of prior knowledge on the efficacy of manipulatives. This study focuses on the learning of plane geometry in junior high schools, including the sum of interior angles in polygons, the sum of exterior angles in polygons, and the properties of…
Descriptors: Manipulative Materials, Teaching Methods, Educational Technology, Junior High Schools
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Hodgen, Jeremy; Foster, Colin; Marks, Rachel; Brown, Margaret – Education Endowment Foundation, 2018
This document presents a review of evidence commissioned by the Education Endowment Foundation to inform the guidance document "Improving Mathematics in Key Stages Two and Three" (Education Endowment Foundation, 2017). The review draws on a substantial parallel study by the same research team, funded by the Nuffield Foundation, which…
Descriptors: Mathematics Instruction, Foreign Countries, Mathematics Skills, Feedback (Response)
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Hegedus, Stephen; Güçler, Beste; Robidoux, Ryan; Burke, James – North American Chapter of the International Group for the Psychology of Mathematics Education, 2011
We investigate the impact of integrating dynamic geometry environments with haptic devices, which allow users to not only see and manipulate geometric figures on a screen but also feel, through force-feedback, the result of interacting with such objects. The feedback loop can be assigned to varying attributes of objects, for example, the changing…
Descriptors: Mathematics Instruction, Computer Software, Educational Technology, Technology Uses in Education
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Linder, Sandra M. – Young Children, 2012
Teachers are using technological innovations--including interactive whiteboards--in pre-K-grade 3 classrooms across the country. An IWB is a wall-mounted, touch-sensitive flat screen. When connected to a computer (or another electronic device) and a projector, it displays enlarged instructional content (such as a math word problem, pictures or…
Descriptors: Educational Technology, Mathematics Instruction, Young Children, Preschool Children
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Evans, Michael A.; Wilkins, Jesse L. M. – Journal of Educational Computing Research, 2011
The reported exploratory study consisted primarily of classroom visits, videotaped sessions, and post-treatment interviews whereby second graders (n = 12) worked on problems in planar geometry, individually and in triads, using physical and virtual manipulatives. The goal of the study was to: 1) characterize the nature of geometric thinking found…
Descriptors: Educational Technology, Geometric Concepts, Grade 2, Geometry
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Baki, Adnan; Kosa, Temel; Guven, Bulent – British Journal of Educational Technology, 2011
The study compared the effects of dynamic geometry software and physical manipulatives on the spatial visualisation skills of first-year pre-service mathematics teachers. A pre- and post-test quasi-experimental design was used. The Purdue Spatial Visualisation Test (PSVT) was used for the pre- and post-test. There were three treatment groups. The…
Descriptors: Control Groups, Quasiexperimental Design, Computer Software, Comparative Analysis
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