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Watson, Kelly – Australian Primary Mathematics Classroom, 2016
In order for students to move from using concrete materials to using mental strategies and from additive to multiplicative thinking, the use of arrays and visualisation is pivotal. This article describes a lesson in which students are taken through a Concrete-Representational-Abstract (CRA) approach that involves noticing structure, using…
Descriptors: Multiplication, Visualization, Mathematics Instruction, Problem Solving
Rottmann, Thomas; Peter-Koop, Andrea – Mathematics Education Research Group of Australasia, 2016
This paper introduces a revised model for the development of basic computation skills. The model draws on four key phases, which have proven to be important for the development of calculation strategies and stresses the use of gestures and the verbalisation of concrete and mental images. This seems to be of crucial importance for children with…
Descriptors: Special Needs Students, Elementary School Students, Grade 2, Computation
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Wallace, Ann; Abbott, Deborah; Blary, Renee – Young Children, 2007
The idea of problem posing is not new, but it has received increased attention in light of new approaches to mathematics education. Mathematical problem posing builds on young children's natural curiosity. It promotes children's "engagement in authentic mathematical activity"; enables children to "encounter many problems, methods, and solutions…
Descriptors: Teaching Methods, Teacher Effectiveness, Mathematics Skills, Educational Change
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Douville, Patricia; Algozzine, Bob – Preventing School Failure, 2004
Contemporary trends in education reflect a shift from traditional teacher-centered approaches to more student-centered approaches to learning. Empowering students in their own learning is facilitated by teaching them effective meaning-making strategies that support active participation in their own learning. Making this happen requires using…
Descriptors: Curriculum, Educational Trends, Educational Strategies, Writing Processes