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Maz-Machado, Alexander; Madrid, María José; León-Mantero, Carmen; Jiménez-Fanjul, Noelia – South African Journal of Education, 2019
This study presents the perceptions of trainee teachers regarding the realisation of practical mathematical sessions to expand on the concepts that are taught in primary education using manipulatives. For a 4-month period, a practical session with the mentioned characteristics was carried out weekly with Year 1 students of the Primary Education…
Descriptors: Mathematics Instruction, Teaching Methods, Manipulative Materials, Elementary School Mathematics
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Oymak, Onur; Ogan-Bekiroglu, Feral – IAFOR Journal of Education, 2021
This research aimed to determine whether implementation of virtual technology or implementation of physical materials in a learning environment is more efficient in understanding physics concepts and developing positive attitudes at the high school level. The theory that framed this study is the model of learning as dynamic transfer. Participants…
Descriptors: Student Attitudes, High School Students, Knowledge Level, Adolescents
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Smith, Derrick W.; Lampley, Sandra A.; Dolan, Bob; Williams, Greg; Schleppenbach, David; Blair, Morgan – Journal of Visual Impairment & Blindness, 2020
Introduction: The emerging technology of three-dimensional (3D) printing has the potential to provide unique 3D modeling to support specific content in science, technology, engineering, and mathematics (STEM) education, particularly chemistry. Method: Seventeen (n=17) students with visual impairments were provided direct instruction on chemistry…
Descriptors: Visual Impairments, Manipulative Materials, Spatial Ability, Geometric Concepts
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Hurst, Chris; Linsell, Chris – European Journal of STEM Education, 2020
This small study sought to determine students' knowledge of multiplication and division and whether they are able to use sets of bundling sticks to demonstrate their knowledge. Manipulatives are widely used in primary and some middle school classrooms, and can assist children to connect multiplicative concepts to physical representations.…
Descriptors: Mathematics Skills, Thinking Skills, Knowledge Level, Problem Solving
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Embregts, Petri J. C. M.; van Oorsouw, Wietske M. W. J.; Wintels, Sophie C.; van Delden, Robby W.; Evers, Vanessa; Reidsma, Dennis – Journal of Intellectual & Developmental Disability, 2020
Background: New technologies could broaden activities for people with profound intellectual and multiple disabilities (PIMD). This study compared watching television with a newly-developed interactive ball. Method: The ball responded with sounds, lights, and wiggling to the player's voice and movements. Five control sessions (watching television)…
Descriptors: Severe Intellectual Disability, Manipulative Materials, Interaction, Television Viewing
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Pratt, Sarah Smitherman; Eddy, Colleen M. – Journal of Mathematics Education at Teachers College, 2017
Mathematics teachers frequently provide concrete manipulatives to students during instruction; however, the rationale for using certain manipulatives in conjunction with concepts may not be explored. This article focuses on area models that are currently used in classrooms to provide concrete examples of integer and binomial multiplication. The…
Descriptors: Mathematics Instruction, Numbers, Multiplication, Algebra
Pampel, Krysten – ProQuest LLC, 2017
The advancement of technology has substantively changed the practices of numerous professions, including teaching. When an instructor first adopts a new technology, established classroom practices are perturbed. These perturbations can have positive and negative, large or small, and long- or short-term effects on instructors' abilities to teach…
Descriptors: Mathematics Education, Manipulative Materials, Technology Integration, Mathematics Instruction
Jacqueline René Robinson Johnson – ProQuest LLC, 2022
Learners' foundational math skills obtained in the elementary grades profoundly impact their preparation for learning math in the upper grades. However, there is a deficiency in the foundational math skills necessary to be proficient in math and equivalent with their peers at grade level (Burton, 2018). In the elementary classrooms of kindergarten…
Descriptors: Federal Legislation, Educational Legislation, Manipulative Materials, Electronic Learning
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Irwin, John L.; Mehendale, Sunil – Engineering Design Graphics Journal, 2018
This paper is intended to investigate the merits of adding manipulative devices and solid model simulations to accompany traditional lecture and demonstration materials to a Dynamics course. Based on the successes of Graphics courses using manipulative devices and simulation software to enhance spatial visualization skills in engineering students,…
Descriptors: Engineering Education, Computer Simulation, Manipulative Materials, Concept Formation
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Bouck, Emily C.; Satsangi, Rajiv; Park, Jiyoon – Remedial and Special Education, 2018
As researchers and practitioners have increasingly become interested in what practices are evidence based and for whom in education, different sets of quality indicators and evidence-based practice standards have emerged in the field of special education. Practices are commonly suggested as evidence based, even without a best evidence synthesis on…
Descriptors: Teaching Methods, Learning Disabilities, Evidence Based Practice, Mathematics Instruction
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Sütçü, Nese Dokumaci – Participatory Educational Research, 2021
In this study it was aimed to determine the effect of geometrical-mechanical intelligence games activities that are conducted with concrete materials and in computer environment on the spatial visualization and mental rotation skills of prospective teachers and to examine the opinions of prospective teachers about the activities. The research was…
Descriptors: Game Based Learning, Computer Games, Manipulative Materials, Geometric Concepts
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Oliver, Jesús; Olkin, Julia – PRIMUS, 2021
This work outlines a model for creating momentum for active learning at the departmental level through a Community of Practice. This approach focuses on empowering members of the community by providing easy access to active learning tasks, pacing guide, and teaching tips for the course.
Descriptors: Mathematics Instruction, Active Learning, College Mathematics, Teaching Methods
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Hughes, Elizabeth M. – Learning Disabilities: A Contemporary Journal, 2019
Students with mathematics learning disabilities (MLD) often require more intensive intervention in addition to quality core mathematics instruction. This research evaluates the effects of a point of view video modeling (POVM) intervention including virtual demonstrating of concrete mathematics manipulatives to teach simplifying fractions. Three…
Descriptors: Middle School Students, Learning Disabilities, Students with Disabilities, Video Technology
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Jones, Julie P.; Tiller, Margaret – Dimensions of Early Childhood, 2017
Concrete, Representational, Abstract (CRA) instruction is a process for teaching and learning mathematical concepts. Starting with manipulation of concrete materials (counters, beans, Unifix cubes), the process moves students to the representational level (tallies, dots, stamps), and peaks at the abstract level, at which numbers and symbols are…
Descriptors: Teaching Methods, Mathematics Instruction, Mathematical Concepts, Manipulative Materials
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Haas, Ben; Kreis, Yves; Lavicza, Zsolt – International Journal for Technology in Mathematics Education, 2021
This paper reports on a case study of two elementary school students with mathematical learning disabilities (MLD) (ages 10 and 11) using augmented reality (AR), digital and physical modelling in mathematics class. MLD students worked on modelling geometric shapes (cubes, cuboids, squared pyramids, and octahedrons) and forms (polygons) by…
Descriptors: Foreign Countries, Computer Simulation, Simulated Environment, Elementary School Students
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