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Malola, Mayamiko; Stephens, Max; Symons, Duncan – Australian Mathematics Education Journal, 2021
The importance of multiplicative thinking in supporting students' learning of key topics and success in further mathematics is widely and clearly stated in mathematics education literature. However, multiplicative thinking is not clearly stated in curriculum documents of many countries including Australia. In the "Australian Curriculum:…
Descriptors: Multiplication, Mathematics Instruction, Thinking Skills, Learning Processes
Hurst, Chris – Australian Primary Mathematics Classroom, 2015
The relationships between three critical elements, and the associated mathematical language, to assist students to make the critical transition from additive to multiplicative thinking are examined in this article by Chris Hurst.
Descriptors: Mathematics Instruction, Multiplication, Correlation, Addition
Jazby, Dan; Pearn, Cath – Mathematics Education Research Group of Australasia, 2015
When viewed through a lens of embedded cognition, algorithms may enable aspects of the cognitive work of multi-digit multiplication to be "offloaded" to the environmental structure created by an algorithm. This study analyses four multiplication algorithms by viewing different algorithms as enabling cognitive work to be distributed…
Descriptors: Multiplication, Mathematics Activities, Mathematics Instruction, Cognitive Processes
Bragg, Leicha A. – Australian Primary Mathematics Classroom, 2006
Mathematics games are often used in the classroom as a reward or warm-up activity before the "real" learning takes place. Many teachers have witnessed how useful games are for tuning-in students to the impending mathematics lesson. However, have teachers considered playing games as the central part of the lesson? This article explores…
Descriptors: Misconceptions, Mathematics Instruction, Educational Games, Teaching Methods
Peer reviewedMulligan, Joanne – Mathematics Education Research Journal, 1992
Children's (n=70) solution strategies to a variety of multiplication and division word problems were analyzed to determine performance levels and strategies used. Solution strategies were classified at three levels: direct modeling with counting; no direct modeling with counting, additive, or subtractive strategies; and use of known derived facts.…
Descriptors: Cognitive Development, Cognitive Processes, Cognitive Style, Constructivism (Learning)

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