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Taherian Kalati, Atefeh; Kim, Mi Song – Education and Information Technologies, 2022
This systematic review provides an overview of existing evidence regarding the effect of touchscreen technology on young children's learning. Using PRISMA principles, we identified 53 studies in our review. The literature generally advocated positive effects of touchscreen devices on young children's learning with 34 studies reporting positive…
Descriptors: Educational Technology, Handheld Devices, Manipulative Materials, Young Children
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Reißer, Sabine; Prock, Sebastian; Heinzmann, Hartmut; Ulrich, Anne S. – Biochemistry and Molecular Biology Education, 2018
Protein ORIGAMI (http://ibg.kit.edu/protein_origami) is a browser-based web application that allows the user to create straightforward 3D paper models of folded peptides for research, teaching and presentations. An amino acid sequence can be turned into a-helices, ß-strands and random coils that can be printed out and folded into properly scaled…
Descriptors: Educational Technology, Technology Uses in Education, Models, Science Instruction
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Ortiz, Enrique; Eisenreich, Heidi A.; Tapp, Laura E. K. – International Journal for Mathematics Teaching and Learning, 2019
The goal of this study is to analyze undergraduate elementary school pre-service teachers' conceptions and misconceptions of physical and virtual manipulative materials using an interpretive "framework." The "framework" involved the use of the "Concrete," "Pictorial" and "Abstract cognitive levels"…
Descriptors: Mathematics Instruction, Teaching Methods, Manipulative Materials, Undergraduate Study
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Bouck, Emily C.; Shurr, Jordan; Bassette, Laura; Park, Jiyoon; Whorley, Abbie – Journal of Special Education Technology, 2018
Manipulatives are a common tool in mathematics teaching and learning, including for students with disabilities. The most common manipulatives are concrete manipulatives, yet app-based manipulatives are a viable age-appropriate option for secondary students with disabilities. Through an adapted alternating treatment design with three middle school…
Descriptors: Manipulative Materials, Mathematics Instruction, Teaching Methods, Middle School Students
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Litster, Kristy; Moyer-Packenham, Patricia S.; Reeder, Rachel – Mathematics Education Research Journal, 2019
The purpose of the inquiry was to understand how children in primary grades (i.e., preschool, kindergarten, and second grade) engaged with affordances and constraints of features in a Base-10 Blocks virtual manipulative mathematics app designed to promote learning opportunities. Researchers conducted one-to-one interviews with 100 primary grade…
Descriptors: Elementary School Students, Primary Education, Preschool Education, Kindergarten
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Tucker, Stephen I.; Lommatsch, Christina W.; Moyer-Packenham, Patricia S.; Anderson-Pence, Katie L.; Symanzik, Jürgen – International Journal of Research in Education and Science, 2017
The purpose of this study was to examine patterns of mathematical practices evident during children's interactions with touchscreen mathematics virtual manipulatives. Researchers analyzed 33 Kindergarten children's interactions during activities involving apps featuring mathematical content of early number sense or quantity in base ten, recorded…
Descriptors: Kindergarten, Teaching Methods, Manipulative Materials, Educational Technology
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Bouck, Emily C.; Chamberlain, Courtney; Park, Jiyoon – Education and Training in Autism and Developmental Disabilities, 2017
Manipulatives support students with and without disabilities in mathematics. However, as students age, concrete manipulatives can be limiting and potentially not age appropriate (Satsangi, 2015). An alternative is virtual manipulatives, including app-based manipulatives. This study compared the use of app-based manipulatives to concrete…
Descriptors: Disabilities, Teaching Methods, Mathematics Instruction, Manipulative Materials
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Larkin, Kevin – Australian Primary Mathematics Classroom, 2016
This article proposes a framework for classroom teachers to use in making pedagogical decisions regarding which mathematical materials (concrete and digital) to use, when they might be most appropriately used, and why. Two iPad apps ("Area of Shapes (Parallelogram)" and "Area of Parallelogram") are also evaluated to demonstrate…
Descriptors: Mathematics, Mathematics Education, Mathematics Instruction, Teaching Methods
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Moyer-Packenham, Patricia S.; Shumway, Jessica F.; Bullock, Emma P.; Anderson-Pence, Katie L.; Tucker, Stephen I.; Westenskow, Arla; Boyer-Thurgood, Jennifer; Gulkilik, Hilal; Watts, Christina; Jordan, Kerry – AERA Online Paper Repository, 2016
The purpose of this project was to examine young children's mathematics learning using virtual manipulative touch-screen apps. We interviewed over 100 young children as they interacted with mathematics apps on iPads and examined how these interactions supported mathematics learning and contributed to changes in efficiency. Children interacted with…
Descriptors: Telecommunications, Handheld Devices, Technology Uses in Education, Educational Technology
Resnick, Ilyse; Verdine, Brian; Golinkoff, Roberta; Hirsh-Pasek, Kathy – Grantee Submission, 2016
Preschoolers' experiences with shapes are important because geometry is foundational to aspects of mathematics and it is now part of the Common Core for school-readiness. Exposure to shapes also provides experiences that are key to developing spatial thinking more broadly. Yet achieving a strong conceptual understanding of geometric categories can…
Descriptors: Geometry, Geometric Concepts, Mathematics, Mathematics Instruction
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Chik, Alice – Changing English: Studies in Culture and Education, 2014
Since the introduction of iPads in 2010, the sales of tablet computers and mobile applications (apps) have grown exponentially. iPads and other tablets are marketed as learning tools, and many apps target learners as young as six months old. This article reports on a research project examining the unique features of English learning apps based on…
Descriptors: Teaching Methods, Computer Oriented Programs, English (Second Language), Parent Child Relationship
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Lindbeck, Joy S.; Dambrot, Faye – School Science and Mathematics, 1986
Secondary teachers in a workshop on overcoming computer and math anxiety and students in a programming course were given measures of anxiety and achievement. Low mathematical ability and coursework were related to math and computer anxiety and negative attitudes. Attitudes improved for the teachers but not the students. (MNS)
Descriptors: Computer Oriented Programs, Educational Research, Manipulative Materials, Mathematics Anxiety
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Abel, Jean; And Others – Arithmetic Teacher, 1987
Three lessons on division for grade 4 are presented, the first using manipulative materials; the second, the computer; and the third, the calculator. Advantages and disadvantages of each are discussed. (MNS)
Descriptors: Calculators, Computer Oriented Programs, Concept Formation, Division
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Joseph, Helen – Arithmetic Teacher, 1993
Describes "Family Computers," an educational program developed by EQUALS that brings families together weekly to have fun with mathematics while using computers. Discusses software selection, provides a lesson plan for grades 4-8, and presents 7 tips for instructors. (MDH)
Descriptors: Computer Oriented Programs, Computer Software Selection, Elementary Education, Family Programs