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Susan Boyd; Liza Bondurant; Annalise Johnson – Mathematics Teacher: Learning and Teaching PK-12, 2024
Building activities can be used any time in the school year in mathematics classes to promote problem solving, perseverance, and to develop students' spatial thinking. Spatial visualization skills are the "ability to mentally manipulate, rotate, twist, or invert a pictorially presented stimulus object." The authors were guided by the…
Descriptors: Mathematics Instruction, Puzzles, Manipulative Materials, Visualization
Nicole A. Stanziale – ProQuest LLC, 2024
Despite the growing popularity of both flipped classrooms and digital manipulatives, there is a need for empirical research to examine the impact of combining these instructional strategies in the context of an Algebra 1 course (Alsaeed, 2017; Brown et al., 2001). This study is grounded in Kolb's learning cycle, the Technological Pedagogical…
Descriptors: Flipped Classroom, Manipulative Materials, Technology Uses in Education, Educational Technology
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Estela A. Vallejo-Vargas; David A. Reid – International Journal of Science and Mathematics Education, 2024
This article presents a case study of two Grade 5 boys' argumentation concerning addition and subtraction of negative numbers while using an interactive tablet-based application simulating positive and negative tiles. We examine the properties of integers they conjectured, and the kinds of evidence and arguments they used to support their…
Descriptors: Grade 5, Persuasive Discourse, Addition, Subtraction
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Seokmin Kang; Chun-Hao Chang; Sungyeun Kim – Educational Technology & Society, 2025
Virtual tools are rapidly supplementing physical tools in classrooms. Although extensive research has compared the benefits of using virtual and physical manipulatives, few studies have systematically explored the learning benefits of using a physical and a virtual tool. As the major learning goal in science, technology, engineering, and…
Descriptors: Educational Technology, Technology Uses in Education, Manipulative Materials, STEM Education
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Yvoni Pavlou; Zacharias C. Zacharia; Marios Papaevripidou – Science Education, 2024
This study aimed to investigate whether the presence (when using physical manipulatives [PMs]) or absence (when using virtual manipulatives [VMs]) of haptic sensory feedback (i.e., open-ended haptic manipulation of physical materials with the use of the hands) during experimentation can impact preschoolers' conceptual understanding of concepts…
Descriptors: Manipulative Materials, Preschool Children, Electronic Learning, Sensory Experience
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Jessica Thomas; Sara Bicard; Kate D. Simmons – Journal of Special Education Technology, 2025
An alternating treatments design was used to analyze the effects of concrete and virtual manipulatives on the duration and number of correctly solved linear equations by three middle school students with cognitive disabilities. Participants physically manipulated algebra tiles to solve an equation during the concrete manipulative condition. During…
Descriptors: Students with Disabilities, Algebra, Problem Solving, Manipulative Materials
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McDougal, Emily; Silverstein, Priya; Treleaven, Oscar; Jerrom, Lewis; Gilligan-Lee, Katie A.; Gilmore, Camilla; Farran, Emily K. – Child Development, 2023
There is a known association between LEGO® construction ability and mathematics achievement, yet the mechanisms which drive this association are largely unknown. This study investigated the spatial mechanisms underlying this association, and whether this differs for concrete versus digital construction. Between January 2020 and July 2021, children…
Descriptors: Mathematics Achievement, Mathematics Education, Manipulative Materials, Spatial Ability
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Di Liu; Catharine Lory; Qingli Lei; Weiwei Cai; Yiwen Mao; Xuan Yang – Journal of Special Education, 2024
Measurement concepts are an essential foundation for more advanced mathematical concepts. To address the challenges of students with autism spectrum disorder (ASD) in learning measurement concepts, this study investigated the effects of using a combination of explicit instruction and virtual manipulatives (VMs) to teach measurement concepts to…
Descriptors: Students with Disabilities, Autism Spectrum Disorders, Direct Instruction, Measurement
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Gila Apelboim-Dushnitzky; Oren Tova – Journal of Educational Computing Research, 2025
This study tested the potential of a technological intervention procedure for promoting letter-naming and initial-phoneme detection skills among preschoolers at risk for Specific Learning Disorder. The study rational is based on evidence for paired associated learning of visual-verbal stimuli, integrated with the use of a tangible technological…
Descriptors: Preschool Children, Dyslexia, At Risk Students, Alphabets
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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
Cassandra M. Smith – ProQuest LLC, 2023
All students, including students with learning disabilities, deserve a mathematics education that successfully prepares them for their future endeavors. This preparation includes effective instruction in algebra, which is known as the gatekeeper to post-secondary schooling, employment, and constructive citizenry. However, majority of students with…
Descriptors: Mathematics Instruction, Students with Disabilities, Learning Disabilities, Algebra
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Soury-Lavergne, Sophie – Digital Experiences in Mathematics Education, 2021
The duo of artefacts is a simplified model of the complex systems of various manipulatives (either tangible or virtual) that mathematics teachers and their students use in classrooms. It offers a means to study the complexity of the interweaving of the tangible and of the digital worlds in the teaching and learning processes. A duo of artefacts is…
Descriptors: Manipulative Materials, Mathematics Instruction, Teaching Methods, Educational Technology
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Samuelsson, Robin; Price, Sara; Jewitt, Carey – British Journal of Educational Technology, 2022
While interactive touchscreens are currently entering into educational practice, little is known about what this means for learning in early childhood and, in particular, how touchscreens shape action and communication. In this paper, we examine the interactions of 2-year-olds and their teachers in a multilingual preschool in Sweden. We analyse…
Descriptors: Educational Technology, Manipulative Materials, Handheld Devices, Early Childhood Education
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Shin, Mikyung; Simmons, Michelle; Meador, Audrey; Goode, Francis J.; Deal, Alexa; Jackson, Tammye – Intervention in School and Clinic, 2023
Technology has changed the practices related to teaching and learning mathematics in schools. The demand for learning mathematics in virtual environments is increasing in the 21st-century classroom. There has been widespread expansion of the use of technology in education. This column reviews three types of instruction--synchronous, asynchronous,…
Descriptors: Mathematics Instruction, Students with Disabilities, Learning Disabilities, Electronic Learning
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