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Hang Wei; Rogier Bos; Paul Drijvers – Digital Experiences in Mathematics Education, 2024
In addressing the challenge of fostering functional thinking (FT) in secondary school students, our research centered on the question of how an embodied design can enhance FT's different aspects, including input-output, covariation, and correspondence views. Drawing from embodied cognition theory and focusing on an action- and perception-based…
Descriptors: Thinking Skills, Abstract Reasoning, Design, Input Output Analysis
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Tzur, Ron; Hunt, Jessica – Teaching Children Mathematics, 2015
Often, students who solve fraction tasks respond in ways that indicate inadequate conceptual grounding of unit fractions. Many elementary school curricula use folding, partitioning, shading, and naming parts of various wholes to develop children's understanding of unit and then nonunit fractions (e.g., coloring three of four parts of a pizza and…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Concepts, Concept Formation
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Wickstrom, Megan H.; Nelson, Julie; Chumbley, Jean – Teaching Children Mathematics, 2015
With the adoption of the Common Core State Standards for Mathematics (CCSSM) (CCSSI 2010), many concepts related to area are covered in third grade: (1) Recognizing area as an attribute of a plane figure; (2) Understanding that a square with a side length of one is a unit square; (3) Measuring area by tiling figures and counting the squares it…
Descriptors: State Standards, Mathematics Instruction, Grade 3, Elementary School Mathematics
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Assiti, Saliza Safta; Zulkardi; Darmawijoyo – Indonesian Mathematical Society Journal on Mathematics Education, 2013
The intention of the present study is to know how the pupils can learn to make a group of ten to understand the idea of unitizing. The pupils were given a contextual problem "Counting the Beads" in order to promote their understanding about the idea of unitizing. The process of designing the problem was based on the 5 tenets of…
Descriptors: Computation, Mathematical Concepts, Concept Formation, Teaching Methods
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Henderson, Peter; Hodgen, Jeremy; Foster, Colin; Kuchemann, Dietmar – Education Endowment Foundation, 2017
This guidance report focuses on the teaching of mathematics to pupils in Key Stages 2 and 3. It is not intended to provide a comprehensive guide to mathematics teaching. We have made recommendations where there are research findings that schools can use to make a significant difference to pupils' learning, and have focused on the questions that…
Descriptors: Mathematics Skills, Elementary Education, Teaching Methods, Mathematics Instruction
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Manches, Andrew; O'Malley, Claire; Benford, Steve – Computers & Education, 2010
This research aims to explore the role of physical representations in young children's numerical learning then identify the benefits of using a graphical interface in order to understand the potential for developing interactive technologies in this domain. Three studies are reported that examined the effect of using physical representations…
Descriptors: Young Children, Computer Interfaces, Problem Solving, Mathematics Instruction
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Liljedahl, Peter, Ed.; Nicol, Cynthia, Ed.; Oesterie, Susan, Ed.; Allan, Darien, Ed. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
The theme of the 38th meeting of the International Group for the Psychology of Mathematics Education (PME 38) and the 36th meeting of the North American Chapter of the Psychology of Mathematics Education (PME-NA 36) was "Mathematics Education at the Edge." Academically, the theme provides opportunities to highlight and examine…
Descriptors: Foreign Countries, Mathematics Education, Educational Psychology, Educational Research
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Resnick, Mitchel – Educational Technology Research and Development, 1998
Discussion of the use of manipulative materials in kindergartens focuses on a new generation of computationally enhanced manipulative materials, called digital manipulatives, designed to allow all students to explore mathematical and scientific concepts through direct manipulation of physical objects rather than more abstract methods of learning.…
Descriptors: Hands on Science, Kindergarten, Learning Strategies, Manipulative Materials
Olive, John – International Group for the Psychology of Mathematics Education, 2003
Nathan entered third grade having already constructed a Generalized Number Sequence (GNS) for whole numbers that enabled him to coordinate sequences of multiples to find a common multiple of two whole numbers. Nathan was able to apply the operations of his GNS to his understanding of part-whole relations and his emerging use of fractional…
Descriptors: Grade 3, Mathematics Instruction, Mathematical Concepts, Elementary School Mathematics
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Carroll, William M.; Porter, Denise – Teaching Children Mathematics, 1997
Describes teaching strategies in which children are encouraged to develop computational procedures that are meaningful to them. Authors state that classroom observation reveals most primary students to be capable of developing their own accurate solution procedures for multi-digit addition and subtraction as well as for simple multiplication and…
Descriptors: Algorithms, Associative Learning, Computation, Cooperative Learning
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Witzel, Bradley S.; Allsopp, David – Mathematics Teaching in the Middle School, 2007
Research is only beginning to show the benefits of the effective use of manipulatives with students who have disabilities. This article highlights how teachers can incorporate three manipulative instructional strategies to help students with high-incidence disabilities.
Descriptors: Learning Strategies, Manipulative Materials, Special Education, Mathematics Instruction
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Scarlatos, Lori L. – Interactive Technology and Smart Education, 2006
Educators recognize that group work and physical involvement with learning materials can greatly enhance the understanding and retention of difficult concepts. As a result, math manipulatives--such as pattern blocks and number lines--have increasingly been making their way into classrooms and children's museums. Yet without the constant guidance…
Descriptors: Museums, Mathematical Concepts, Mathematics Instruction, Problem Solving
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English, Lyn – Arithmetic Teacher, 1992
Highlights combinatorial problems appropriate for students aged 4 to 12 years that utilize manipulatives in a hands-on approach. Examines and identifies students' strategies and self-monitoring techniques that produce effective problem solving. (MDH)
Descriptors: Discovery Learning, Discovery Processes, Elementary Education, Intermediate Grades
Davidson, Neil, Ed. – 1990
Small-group cooperative learning provides an alternative to both traditional whole-class expository instruction and individual instruction systems. The procedures described in this volume are realistic, practical strategies for using small groups in mathematics teaching and learning with methods applicable to all age levels, curriculum levels, and…
Descriptors: Algebra, Calculus, Classroom Techniques, College Mathematics