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Ohio Coalition for the Education of Children with Disabilities, 2022
Children's ways of learning are as different as the colors of the rainbow. All children have different personalities, preferences and tastes; they all have a certain way they prefer to learn. Teachers and parents need to be aware of and value these differences. Children's brains develop faster from birth to age three than any other time, and more…
Descriptors: Educational Environment, Brain, Learning Processes, Intelligence Quotient
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Mix, Kelly S., Ed.; Battista, Michael T., Ed. – Research in Mathematics Education, 2018
This unique volume surveys recent research on spatial visualization in mathematics in the fields of cognitive psychology and mathematics education. The general topic of spatial skill and mathematics has a long research tradition, but has been gaining attention in recent years, although much of this research happens in disconnected subfields. This…
Descriptors: Mathematics Education, Mathematics Instruction, Spatial Ability, Problem Solving
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Clark, Amy; Henderson, Peter; Gifford, Sue – Education Endowment Foundation, 2020
"Improving Mathematics in the Early Years and Key Stage 1" reviews the best available evidence to offer five recommendations for developing the maths skills of 3-7-year olds. Recommendations include integrating maths into different activities throughout the day -- for example, at registration and snack time -- to familiarise children…
Descriptors: Mathematics Skills, Young Children, Early Childhood Education, Teaching Methods
Douglas H. Clements; Julie Sarama – Routledge, Taylor & Francis Group, 2014
In this important book for pre- and in-service teachers, early math experts Douglas Clements and Julie Sarama show how "learning trajectories" help diagnose a child's level of mathematical understanding and provide guidance for teaching. By focusing on the inherent delight and curiosity behind young children's mathematical reasoning,…
Descriptors: Young Children, Early Childhood Education, Numeracy, Mathematics Education
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Rapp, Whitney H. – TEACHING Exceptional Children Plus, 2009
Mathematics concepts are most often taught using auditory, sequential instructional methods. Not only are these methods ineffective when used with visual-spatial learners, they may be detrimental to both academic and emotional progress. Ways in which visual-spatial learners process information are explained. One child's story is presented,…
Descriptors: Spatial Ability, Teaching Methods, Visual Learning, Learning Strategies
Fuson, Karen; Clements, Douglas; Beckmann, Sybilla – National Council of Teachers of Mathematics, 2010
"Focus in Grade 1: Teaching with Curriculum Focal Points" describes and illustrates learning paths for the mathematical concepts and skills of each grade 1 Focal Point as presented in Curriculum Focal Points for Prekindergarten through Grade 8 Mathematics. It includes representational supports for teaching and learning that can facilitate…
Descriptors: Mathematics Curriculum, Mathematical Concepts, Grade 1, Misconceptions
Richterich, Rene – Francais dans le Monde, 1994
Language teachers are encouraged to find innovative ways to teach vocabulary, particularly illustrating the relationships between words and spatial and temporal relationships in meaning. The concept of the teachable moment is also discussed briefly. (MSE)
Descriptors: Classroom Techniques, French, Learning Processes, Second Language Instruction
Garner, Betty K. – Association for Supervision and Curriculum Development, 2007
Whenever students can't remember, don't comprehend, or won't follow through on your instructions, here's a guide that explores the root cause for these and other learning problems and shows you how to set students on the path to understanding and success. Learning expert Betty K. Garner explains the mental processes students need to gather,…
Descriptors: Learning Problems, Learning Strategies, At Risk Students, Teaching Methods
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Golomb, Claire – Visual Arts Research, 1993
Reviews research about young childrens' focusing on the ability to transform a perceived scene into another representation. Reports on a study of 109 children and 18 college-age students on their ability to mold a lump of clay into a three-dimensional figure. Finds that cognitive maturity alone does not automatically lead to competence. (CFR)
Descriptors: Art Appreciation, Art Education, Art Expression, Child Development
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Kindler, Anna M. – Visual Arts Research, 1993
Responds to Claire Golumb's research on the cognitive development of young children's ability to create representations of reality using visual arts. Asserts that young children must find acceptable pictorial substitutes when producing representations. (CFR)
Descriptors: Art Appreciation, Art Education, Art Expression, Child Development