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Xolocotzin, Ulises; Medrano-Moya, Ana M.; Rojano, Teresa – ZDM: Mathematics Education, 2022
Functional thinking is an established route into algebra. However, the learning mechanisms that support the transition from arithmetic to functional thinking remain unclear. In the current study we explored children's pre-instructional intuitive reactions to functional thinking content, relying on a conceptual change perspective and using mixed…
Descriptors: Children, Thinking Skills, Mathematical Logic, Intuition
Park, Joonhyeong; Song, Jinwoong – Research in Science Education, 2020
In the process of problem solving, intuitive thinking leads to findings that go beyond gaps and plays a decisive role in problem solving. Considering that problems often need to be solved in groups rather than by individuals, it is necessary to examine how intuitive thinking expressed by individuals is shared and elaborated among peers in a group…
Descriptors: Elementary School Students, Grade 5, Grade 6, Intuition
Vanlommel, Kristin; Schildkamp, Kim – American Educational Research Journal, 2019
This study examines the way teachers make sense of data in the context of high-stakes decision making, such as decisions related to student placement in educational tracks. Different types of data, data collected rationally and intuitively, may be used in this sensemaking process, and the same data may be interpreted in different ways by different…
Descriptors: High Stakes Tests, Decision Making, Data Use, Intuition
Wright, Suzie; Watson, Jane; Fitzallen, Noleine – Australian Primary Mathematics Classroom, 2019
This article reports on a pilot study that used concrete materials and TinkerPlots to support a Year 4 student's understanding of the big ideas of variation and expectation when investigating a random chance experiment using spinners.
Descriptors: Intuition, Mathematics Skills, Mathematics Instruction, Pilot Projects
Cengiz, Cemre; Aylar, Ebru; Yildiz, Esengül – International Electronic Journal of Elementary Education, 2018
This paper investigated the intuitive development of the concept of integers among primary school students. In order to reveal if primary school students had an intuitive sense of integers, an assessment consisting of five questions was prepared and applied to a total 100 4th grade students. A variety of integer concepts were utilized in the…
Descriptors: Intuition, Elementary School Students, Grade 4, Mathematics Instruction
Hodges, Thomas E.; Johnson, Malisa; Roy, George J. – Teaching Children Mathematics, 2017
Children's intuitive understandings of mathematical ideas--both correct, generalizable strategies alongside misconceptions--showcase the complexity of their thinking. However, recognizing children as complex thinkers is one thing but it is another thing altogether to leverage their ideas to plan for and carry out mathematics instruction. The…
Descriptors: Grade 4, Elementary School Students, Elementary School Mathematics, Mathematics Instruction
Boyer, Ty W.; Levine, Susan C. – Developmental Psychology, 2015
Recent studies reveal that children can solve proportional reasoning problems presented with continuous amounts that enable intuitive strategies by around 6 years of age but have difficulties with problems presented with discrete units that tend to elicit explicit count-and-match strategies until at least 10 years of age. The current study tests…
Descriptors: Logical Thinking, Problem Solving, Intuition, Kindergarten
Frizlar, Torsten; Rink, Roland – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
We encounter ratios on a daily basis. They also play an important role as a basic construct of thinking in many areas of school mathematics. For example, a fraction can be interpreted as the ratio of a part to the respective whole. Many children appear to have difficulties with fractions and although the concept of ratios is crucial for this…
Descriptors: Mathematical Concepts, Elementary School Students, Intuition, Fractions
Obersteiner, Andreas; Bernhard, Matthias; Reiss, Kristina – ZDM: The International Journal on Mathematics Education, 2015
Understanding contingency table analysis is a facet of mathematical competence in the domain of data and probability. Previous studies have shown that even young children are able to solve specific contingency table problems, but apply a variety of strategies that are actually invalid. The purpose of this paper is to describe primary school…
Descriptors: Inhibition, Intuition, Mathematics Instruction, Mathematics Skills
Sumarto, Sylvana Novilia; van Galen, Frans; Zulkardi, H.; Darmawijoyo, D. – International Education Studies, 2014
In Indonesia, proportion is being taught formally in Grade 5 (10-11 years old). However, the existing learning approach does not support the development of the students' proportional reasoning. The way to teach proportion by giving cross multiplication is not meaningful for the students. They just memorize the procedure without understanding how…
Descriptors: Foreign Countries, Logical Thinking, Intuition, Grade 4
Nacarato, Adair Mendes; Grando, Regina Célia – Statistics Education Research Journal, 2014
This paper is based on research that investigated the development of probabilistic language and thinking by students 10-12 years old. The focus was on the adequate use of probabilistic terms in social practice. A series of tasks was developed for the investigation and completed by the students working in groups. The discussions were video recorded…
Descriptors: Probability, Language Role, Thinking Skills, Mathematics Education
Hirza, Bonita; Kusumah, Yaya S.; Darhim; Zulkardi – Indonesian Mathematical Society Journal on Mathematics Education, 2014
The intention of the present study was to see the improvement of students' intuitive skills. This improvement was seen by comparing the Realistic Mathematics Education (RME)-based instruction with the conventional mathematics instruction. The subject of this study was 164 fifth graders of elementary school in Palembang. The design of this study…
Descriptors: Mathematics Education, Intuition, Mathematics Skills, Skill Development
Adams, Deanne M.; Pilegard, Celeste; Mayer, Richard E. – Journal of Educational Computing Research, 2016
Learning physics often requires overcoming common misconceptions based on naïve interpretations of observations in the everyday world. One proposed way to help learners build appropriate physics intuitions is to expose them to computer simulations in which motion is based on Newtonian principles. In addition, playing video games that require…
Descriptors: Video Games, Teaching Methods, Technology Uses in Education, Simulated Environment

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