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Donovan, Andrea Marquardt; Fyfe, Emily R. – Educational Psychology, 2022
Children often learn abstract mathematics concepts with concrete manipulatives. The current study compared different ways of using specific manipulatives -- base-ten blocks -- to support children's place value knowledge. Children (N = 112, M age = 6.88 years) engaged in place value learning activities in one of four randomly assigned conditions in…
Descriptors: Children, Mathematical Concepts, Manipulative Materials, Mathematics Activities
Justo, Enrique; Delgado, Antonio; Llorente-Cejudo, Carmen; Aguilar, Rocio; Cabero-Almenara, Julio – Journal of Engineering Education, 2022
Background: Recent advances in technology and computer simulation have expanded the use of virtual manipulatives in engineering education. However, especially in disciplines in which tactile concepts (e.g., force) are included, it has been claimed that learning could be compromised by substituting physical materials with computer simulations.…
Descriptors: Manipulative Materials, Electronic Learning, Computer Simulation, Concept Formation
Keldgord, Fayth; Ching, Yu-Hui – TechTrends: Linking Research and Practice to Improve Learning, 2022
While the use of virtual manipulatives (VM) is rising in classrooms, there is still limited research. regarding teacher experiences with and perceptions of virtual manipulatives. Most of the research regarding teacher perceptions of VM has focused only on short-term uses following professional development sessions and none has highlighted the…
Descriptors: Manipulative Materials, Educational Technology, Technology Uses in Education, Teacher Attitudes
Arslan, Okan; Eroglu, Deniz; Tatli, Ercan – Journal of Inquiry Based Activities, 2022
A multidisciplinary origami activity that could be used in middle school mathematics and science lessons was designed and implemented. Mathematical purpose of the origami activity is to support students' conceptual understanding and procedural skills related to the concept of fraction. Regarding science, the activity aims to visualize Solar system…
Descriptors: Interdisciplinary Approach, Learning Activities, Manipulative Materials, Fractions
Emily C. Bouck; Holly Long; Megan Harris; Abby Whorley – Education and Training in Autism and Developmental Disabilities, 2024
Researchers determined virtual manipulatives, on their own or as part of an instructional sequence, to be an evidence-based practice for students with intellectual and developmental disabilities (IDD; Long et al., 2022). Yet, the majority of research looking at virtual manipulative-based instructional sequences involves the phases learned in a…
Descriptors: Students with Disabilities, Evidence Based Practice, Intellectual Disability, Developmental Disabilities
Eugene Geist; D'wana Webb – Childhood Education, 2024
The standby wooden blocks that are prevalent in most high-quality early childhood classrooms are missing from most primary and elementary grades. The goal for block play in early childhood is to support learning in mathematics, science, art, literacy and language arts, physical development, social studies, and social and emotional growth. This…
Descriptors: Elementary Schools, Classroom Environment, Instructional Materials, Manipulative Materials
Learning to Make Change via Virtual Money Manipulative, System of Least Prompts, and Modeling Online
Emily C. Bouck; Holly Long; Carrielynn O'Reilly – Focus on Autism and Other Developmental Disabilities, 2024
Individuals engage in purchasing skills on a daily basis. Regardless of the curricular focus of secondary students with intellectual and developmental disabilities (IDD; i.e., academic or functional), possession of life skills is important. In this single case design study, researchers examined the provision of online instruction to three U.S.…
Descriptors: Students with Disabilities, Intellectual Disability, Developmental Disabilities, Daily Living Skills
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
Satsangi, Rajiv; Raines, Alexandra R. – Journal of Learning Disabilities, 2023
As digital technology use increases in K-12 education, greater numbers of strategies become available to support students in mathematics. One technology that provides students diverse representations of mathematical concepts is virtual manipulatives. Although instruction featuring representations with physical manipulatives possesses a large body…
Descriptors: Educational Technology, Manipulative Materials, Computation, Fractions
Diana Mudrinic; Theresa De Leo; Suzanne Nicks; Michele Knobel; Colin Lankshear – Australian Journal of Language and Literacy, 2023
This article describes the learning and teaching approach taken within a Masters level specialism in Literacy Education within the context of learning some basics of undertaking qualitative investigation. Participants working as members of self-selected teams kept informal records of their activity, talk, reading, artefact creation, and archiving…
Descriptors: Teacher Researchers, Masters Programs, Literacy Education, Alphabets
Hurrell, Derek – Australian Primary Mathematics Classroom, 2020
Derek Hurrell shares a number of geometry tasks designed to tease out students' reasoning. Concrete materials are used to initiate discussions and develop a culture of reasoning in the mathematics classroom.
Descriptors: Geometry, Logical Thinking, Mathematics Activities, Manipulative Materials
McQuillan, Maureen E.; Smith, Linda B.; Yu, Chen; Bates, John E. – Child Development, 2020
The present research studied children in the second year of life (N = 29, M[subscript age] = 21.14 months, SD = 2.64 months) using experimental manipulations within and between subjects to show that responsive parental influence helps children have more frequent sustained object holds with fewer switches between objects compared to when parents…
Descriptors: Parent Influence, Visual Learning, Toddlers, Object Manipulation
Wares, Arsalan – International Journal of Mathematical Education in Science and Technology, 2020
The purpose of this note is to describe the mathematics that emanates from the construction of an origami box. We first construct a simple origami box from two rectangular sheets and then discuss some of the mathematical questions that arise in the context of geometry and algebra.
Descriptors: Mathematics, Handicrafts, Teaching Methods, Manipulative Materials
Dawn A. Rowe; Kelly A. Clark; Tosha L. Owens; James Sinclair; Janie V. Claywell; Ryan Nivens; Alexis Moser; Deidre Gilley; Valerie L. Mazzotti; Catherine H. Fowler; Leah Brewer; Makensie Cotter; Ryan Harris – Journal of Special Education, 2025
Mathematics skills are crucial in the current job market; however, many students with disabilities are graduating high school with limited mathematics knowledge and skills. Mathematics skills are fundamental for navigating the complexities of everyday life after high school, extending their importance beyond the workplace to community engagement.…
Descriptors: Evidence Based Practice, Mathematics Instruction, Mathematics Skills, Secondary School Students
Kazoka, Dzintra; Pilmane, Mara; Edelmers, Edgars – Education Sciences, 2021
Combining classical educational methods with interactive three-dimensional (3D) visualization technology has great power to support and provide students with a unique opportunity to use them in the study process, training, and/or simulation of different medical procedures in terms of a Human Anatomy course. In 2016, Riga Stradinš University (RSU)…
Descriptors: Visual Aids, Manipulative Materials, Anatomy, Foreign Countries

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