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Seah, Rebecca; Horne, Marj – Mathematics Education Research Group of Australasia, 2022
Problem solving and reasoning are two key components of becoming numerate. Reports obtained from international assessments show that Australian students' problem solving ability is in a long-term decline. There is little evidence that teachers are embracing problem solving as part of the classroom routine. In this study, we analyse 598 Year 7 to…
Descriptors: Mathematics Skills, Problem Solving, Thinking Skills, Numeracy
Duyen, Nguyen Thi Hong; Loc, Nguyen Phu – European Journal of Educational Research, 2022
Numeracy is one of the essential competencies that the objectives of teaching math to primary students should be towards. However, many research findings show that the problem of "innumeracy" frequently exists at primary schools. That means children still do not feel at home in the world of numbers and operations. Therefore, the paper…
Descriptors: Elementary School Students, Elementary School Mathematics, Numeracy, Teaching Methods
Siemon, Dianne – Mathematics Education Research Group of Australasia, 2022
This paper draws on numerous data sources to better understand the shift from additive to multiplicative thinking in years 4 to 9. Research studies that have used the Scaffolding Numeracy in the Middle Years assessment tasks have found that while students can be supported to move through the early and upper zones of the Learning and Assessment…
Descriptors: Mathematics Skills, Thinking Skills, Middle School Students, Multiplication
Binti Ali, Siti Rahaimah – International Journal of Early Childhood Education and Care, 2017
Preschool education focuses on the efforts to provide fun and meaningful learning opportunities to children aged four to six years old. The main focus is the process of teaching and learning which is children-centered, emphasis on the findings inquiry concept, the use of integrated teaching and learning, thematic learning, learning through…
Descriptors: Preschool Children, Mathematics Instruction, Numeracy, Play
Finesilver, Carla – Mathematical Thinking and Learning: An International Journal, 2017
The move from additive to multiplicative thinking requires significant change in children's comprehension and manipulation of numerical relationships, involves various conceptual components, and can be a slow, multistage process for some. Unit arrays are a key visuospatial representation for supporting learning, but most research focuses on 2D…
Descriptors: Multiplication, Computation, Numeracy, Number Concepts
Johnson, Nickey Owen – ProQuest LLC, 2013
The purpose of this study was to explore problem solving with kindergarten students. This line of inquiry is highly significant given that Common Core State Standards emphasize deep, conceptual understanding in mathematics as well as problem solving in kindergarten. However, there is little research on problem solving with kindergarten students.…
Descriptors: Kindergarten, Word Problems (Mathematics), Problem Solving, Mathematical Concepts
Young-Loveridge, Jenny; Bicknell, Brenda; Lelieveld, Jo – Teachers and Curriculum, 2013
This paper shares research from a pilot study in which young children were introduced to multiplication and division problems in their first year of school. The focus was on building children's conceptual understanding of the idea of "repeated groups" as a fundamental aspect of multiplication and its relation to division. The particular…
Descriptors: Elementary School Mathematics, Multiplication, Arithmetic, Young Children
Rotem, Avital; Henik, Avishai – Journal of Learning Disabilities, 2015
The current study examined the development of two effects that have been found in single-digit multiplication errors: relatedness and distance. Typically achieving (TA) second, fourth, and sixth graders and adults, and sixth and eighth graders with a mathematics learning disability (MLD) performed a verification task. Relatedness was defined by a…
Descriptors: Foreign Countries, Mathematics Education, Learning Disabilities, Multiplication
Hilton, Annette; Hilton, Geoff; Dole, Shelley; Goos, Merrilyn – Mathematics Education Research Journal, 2013
Proportional reasoning involves the use of ratios in the comparison of quantities. While it is a key aspect of numeracy, particularly in the middle years of schooling, students do not always develop proportional reasoning naturally. Research suggests that many students do not apply proportional methods appropriately and that they often erroneously…
Descriptors: Diagnostic Tests, Thinking Skills, Psychometrics, Skill Analysis
Common Core State Standards Initiative, 2011
For over a decade, research studies of mathematics education in high-performing countries have pointed to the conclusion that the mathematics curriculum in the United States must become substantially more focused and coherent in order to improve mathematics achievement in this country. To deliver on the promise of common standards, the standards…
Descriptors: Mathematics Curriculum, Mathematics Education, State Standards, Mathematics Achievement
Arizona Department of Education, 2009
Every student should understand and use all concepts and skills from the previous grade levels. The standard is designed so that new learning builds on preceding skills. Communications, Problem-solving, Reasoning & Proof, Connections, and Representation are the process standards that are embedded throughout the teaching and learning of all…
Descriptors: Numeracy, Number Concepts, Grade 3, Mathematics Education
Arizona Department of Education, 2009
Every student should understand and use all concepts and skills from the previous grade levels. The standard is designed so that new learning builds on preceding skills. Communications, Problem-solving, Reasoning & Proof, Connections, and Representation are the process standards that are embedded throughout the teaching and learning of all…
Descriptors: Numeracy, Number Concepts, Grade 5, Mathematics Education

LeFevre, Jo-Anne; Liu, Jing – Mathematical Cognition, 1997
Examines adults from China and Canada solving single-digit multiplication problems. Reports that Chinese adults were faster and made fewer errors than Canadian adults, and Chinese adults made more errors that reflect verbal-production processes that may occur after retrieval whereas Canadian adults made more errors that reflect retrieval…
Descriptors: Adult Learning, Arithmetic, Computation, Cross Cultural Studies