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Bajo-Benito, José Mariano; Sánchez-Matamoros García, Gloria; Gavilán-Izquierdo, José María – EURASIA Journal of Mathematics, Science and Technology Education, 2021
This paper aims to characterise an indicator of the development of the number sequence scheme among students at the level of Compulsory Secondary Education (14-16 years old students). To do so, we use a scheme development proposed by the APOS theory to characterise students' use of relations between mathematical elements when solving a…
Descriptors: Secondary School Students, Mathematics Skills, Problem Solving, Number Concepts
Bishop, Jessica Pierson; Lamb, Lisa L.; Whitacre, Ian; Philipp, Randolph A.; Schappelle, Bonnie P. – Mathematics Teacher: Learning and Teaching PK-12, 2022
In this article, the authors share frameworks for problem types and students' reasoning about integers. The authors found that all ways of reasoning (WoRs) were used across grade levels and that specific problem types tended to evoke particular WoRs. Specifically, students were more likely to use analogy-based reasoning on all-negatives problems…
Descriptors: Thinking Skills, Problem Solving, Mathematics Instruction, Logical Thinking
Al Farra, Nabil Kamal; Al Owais, Najla Sultan; Belbase, Shashidhar – Mathematics Teaching Research Journal, 2022
The purpose of this study was to analyze the problem-solving techniques that students in a fifth-grade classroom applied while solving mathematical word problems. Fifth-grade students in a private school with Ministry of Education curricula in Al Ain, Abu Dhabi, were given a set of 15-word problems to solve with detailed justifications. The…
Descriptors: Foreign Countries, Mathematics Instruction, Problem Solving, Word Problems (Mathematics)
Hynes-Berry, Mary; Chen, Jie-Qi; Abel, Barbara – Teachers College Press, 2021
This groundbreaking book looks at the development of mathematical thinking in infants and toddlers, with an emphasis on the earliest stage, from zero to three, when mathematical thinking and problem solving first emerge as natural instincts. The text explores the four precursor math concepts--attribute, comparison, change, and pattern--with an…
Descriptors: Infants, Toddlers, Mathematics Skills, Mathematical Concepts
Eisenmann, Petr; Pribyl, Jirí; Novotná, Jarmila – Journal on Efficiency and Responsibility in Education and Science, 2019
The paper describes one problem solving strategy -- the Use of false assumption. The objective of the paper is to show, in accordance with Phylogenesis and Ontogenesis Theory, that it is worthwhile to reiterate the process of development of the concept of a variable and thus provide to pupils one of the ways helping them to eliminate usual…
Descriptors: Foreign Countries, Secondary School Students, Problem Solving, Word Problems (Mathematics)
Guthormsen, Amy M.; Fisher, Kristie J.; Bassok, Miriam; Osterhout, Lee; DeWolf, Melissa; Holyoak, Keith J. – Cognitive Science, 2016
Research on language processing has shown that the disruption of conceptual integration gives rise to specific patterns of event-related brain potentials (ERPs)--N400 and P600 effects. Here, we report similar ERP effects when adults performed cross-domain conceptual integration of analogous semantic and mathematical relations. In a problem-solving…
Descriptors: Responses, Cognitive Processes, Brain, Cognitive Measurement
Xin, Yan Ping – ZDM: The International Journal on Mathematics Education, 2019
Whole number arithmetic is the foundation of higher mathematics and a core part of elementary mathematics. Awareness of pattern and underlying problem structure promote the learning of whole number arithmetic. A growing consensus has emerged on the necessity to provide students with the opportunity to engage in algebraic reasoning earlier in their…
Descriptors: Addition, Mathematics Instruction, Word Problems (Mathematics), Problem Solving
Flores, Alfinio; Priewe, Melina D. – Mathematics Teaching in the Middle School, 2013
This article describes how teachers address issues and tensions that students meet in learning division of fractions. First, students must make sense of division of fractions on their own by working individually and in small groups, using concrete or pictorial representations, inventing their own processes, and presenting and justifying their…
Descriptors: Arithmetic, Middle School Students, Thinking Skills, Problem Solving
Lo, Jane-Jane; Tsai, Feng-Chiu – Mathematics Teaching in the Middle School, 2011
Taiwanese students consistently rank near the top on international exams on mathematics and science. In 2007, Taiwan recorded the highest TIMSS math score for eighth grade. The central education agency in Taiwan publishes detailed mathematics curriculum guidelines, which textbooks and national exams follow closely. In May each year, all ninth…
Descriptors: Mathematics Curriculum, Problem Solving, Foreign Countries, Data Analysis
Kallai, Arava Y.; Schunn, Christian D.; Ponting, Andrea L.; Fiez, Julie A. – Society for Research on Educational Effectiveness, 2011
The aim of this study was to test a training program intended to fine-tune the mental representations of double-digit numbers, thus increasing the discriminability of such numbers. The authors' assumption was that increased fluency in math could be achieved by improving the analogic representations of numbers. The study was completed in the…
Descriptors: Experimental Groups, Control Groups, Numbers, Achievement Gains
Krasa, Nancy; Shunkwiler, Sara – Brookes Publishing Company, 2009
How do children learn math--and why do some children struggle with it? The answers are in "Number Sense and Number Nonsense," a straightforward, reader-friendly book for education professionals and an invaluable multidisciplinary resource for researchers. More than a first-ever research synthesis, this highly accessible book brings math…
Descriptors: Mathematics Instruction, Learning Problems, Numbers, Arithmetic
Farrington-Flint, Lee; Canobi, Katherine H.; Wood, Clare; Faulkner, Dorothy – British Journal of Developmental Psychology, 2007
The study addresses the relational reasoning of different-aged children and how addition reasoning is related to problem-solving skills within addition and to reasoning skills outside addition. Ninety-two 5- to 8-year-olds were asked to solve a series of conceptually related and unrelated addition problems, and the speed and accuracy of all…
Descriptors: Problem Solving, Arithmetic, Age Differences, Addition
Mauch, Elizabeth; Shi, Yixun – International Journal of Mathematical Education in Science and Technology, 2004
This note discusses a possible method for teaching an example of problem solving to intermediate grade students. Under the guidance of the instructor, students may see the links between the 'guess' method and the arithmetic operation 'strings'. This may help enhance their logical thinking ability as well as arithmetic operation skills. For…
Descriptors: Teaching Methods, Logical Thinking, Arithmetic, Talent

Davidson, Philip M. – Child Development, 1987
To investigate the development of function concepts and their relation to mathematical and logical abilities typically acquired during the age period of five to seven years, children were tested on nonnumerical function tasks, numerical tasks, and aspects of logical reasoning. (PCB)
Descriptors: Arithmetic, Child Development, Cognitive Development, Conservation (Concept)
Clark, John R., Ed.; Reeve, W. D., Ed. – 1928
This yearbook is a collection of 14 articles covering a wide range of topics. The first argues that arithmetic is "a general mode of thinking," not a "tool subject." The need and use of mathematics for the average citizen is the basis for the second chapter, and the following chapter continues in this vein by attempting to show…
Descriptors: Arithmetic, Calculus, Critical Thinking, Curriculum
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