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Esther S. Levenson; Ruthi Barkai; Anas Mahamid; Sigal Levy – Educational Studies in Mathematics, 2024
This study examines the solutions of 34 kindergarten children as they create equal groups from n bottle caps, where n was equal to 8, 9, 22, and 23. For each n, children were asked to find as many different solutions as possible. The number of solutions they found, i.e., children's fluency, as well as the strategies used to create equal groups,…
Descriptors: Elementary School Mathematics, Kindergarten, Creativity, Mathematical Concepts
Winarti; Ambaryani, Santi Eka; Putranta, Himawan – International Journal of Instruction, 2022
Self-Regulated Learning (SRL) is important to solve learning problems. This research aimed to determine the effect of the problem-solving based Self-Regulated Learning (SRL) strategy on simple harmonic motion material toward the metacognitive abilities of student's senior high school. This research applied a quasi-experimental method with a…
Descriptors: Metacognition, Learning Strategies, Problem Solving, High School Students
Schukajlow, Stanislaw; Kaiser, Gabriele; Stillman, Gloria – Mathematical Thinking and Learning: An International Journal, 2023
Mathematical modeling and applications are an important part of curriculum and considered to be important for students' current and future lives. In this contribution, we focus on mathematical modeling from a cognitive prospective. Following embedding the cognitive perspective within the discourse of mathematical modeling, we describe some of the…
Descriptors: Mathematics Instruction, Metacognition, Mathematical Models, Learning Activities
Traci Kutaka; Pavel Chernyavskiy; Carson Keeter; Julie Sarama; Douglas Clements – Society for Research on Educational Effectiveness, 2021
Background: Data on children's ability to answer assessment questions correctly paints an incomplete portrait of what they know and can do mathematically; yet, it remains a common basis for program evaluation. Indeed, pre-post-assessment correctness is necessary but insufficient evidence for making inferences about learning and program…
Descriptors: Kindergarten, Learning Trajectories, Learning Strategies, Thinking Skills
van Gog, Tamara; Hoogerheide, Vincent; van Harsel, Milou – Educational Psychology Review, 2020
Problem-solving tasks form the backbone of STEM (science, technology, engineering, and mathematics) curricula. Yet, how to improve self-monitoring and self-regulation when learning to solve problems has received relatively little attention in the self-regulated learning literature (as compared with, for instance, learning lists of items or…
Descriptors: Problem Solving, STEM Education, Self Management, Cognitive Processes
Enoch Kabinaa Suglo – Online Submission, 2024
The study aimed to investigate the impact of incorporating deep learning strategies in mathematics instruction on students' problem-solving abilities, critical thinking skills, academic achievement, and mathematical skills development. The study population consisted of 280 students, with a sample size of 162 participants. Employing a purely…
Descriptors: Outcomes of Education, Learning Activities, Mathematics Education, Mathematics Achievement
Joel Weijia Lai; Wei Qiu; Maung Thway; Lei Zhang; Nurabidah Binti Jamil; Chit Lin Su; Samuel S. H. Ng; Fun Siong Lim – Journal of Learning Analytics, 2025
The growing use of generative AI (GenAI) has sparked discussions regarding integrating these tools into educational settings to enrich the learning experience of teachers and students. Self-regulated learning (SRL) research is pivotal in addressing this inquiry. One prevalent manifestation of GenAI is the large-language model (LLM) chatbot,…
Descriptors: Artificial Intelligence, Computer Software, Learning Analytics, Introductory Courses
Menon, Pratibha – Information Systems Education Journal, 2021
Learning how to become a self-regulated learner could benefit students in introductory undergraduate courses, such as computer programming. This study explores the perceived value of instructional and skill-building activities and students' self-efficacy to learn and apply programming skills in an introductory computer programming course. The…
Descriptors: Student Attitudes, Independent Study, Introductory Courses, Programming
Joni M. Lakin; Jon Wai; Paula Olszewski-Kubilius; Susan Corwith; Danielle Rothschild; David Uttal – Grantee Submission, 2024
Spatial thinking permeates much of our lives and is an asset when solving problems involving well-structured visual information or imagining solutions in physical or digital space. However, an estimated three million US school children have spatial talents that go unrecognized because of the tools commonly used for identification of academic…
Descriptors: Spatial Ability, Thinking Skills, Problem Solving, Mathematics
Joni M. Lakin; Jonathan Wai; Paula Olszewski-Kubilius; Susan Corwith; Danielle Rothschild; David H. Uttal – Gifted Child Today, 2024
Spatial thinking permeates much of our lives and is an asset when solving problems involving well-structured visual information or imagining solutions in physical or digital space. However, an estimated three million US school children have spatial talents that go unrecognized because of the tools commonly used for identification of academic…
Descriptors: Spatial Ability, Thinking Skills, Problem Solving, Mathematics
Payadnya, I. Putu Ade Andre; Suwija, I. Ketut; Wibawa, Kadek Adi – Mathematics Teaching Research Journal, 2021
The research aimed to analyze the students' abilities in solving realistic mathematics problems using "What-If"-Ethnomathematics Instruments with content focused on plane and space materials. The "What-If"-Ethnomathematics instruments are instruments that enable educators to analyze various errors and obstacles experienced by…
Descriptors: Mathematics Skills, Problem Solving, Thinking Skills, Learning Strategies
Yüce, Mert; Dost, Senol – International Online Journal of Education and Teaching, 2019
Examples are an indispensable part of mathematical thinking through analogy, learning and the teaching process. In this study, the strategies that high school students used in example generation activities in mathematics course; operational and conceptual knowledge levels were determined and their effect on example generation ability was examined.…
Descriptors: High School Students, Mathematics Instruction, Learning Activities, Learning Processes
Vale, Isabel; Barbosa, Ana – International Journal of Research in Education and Science, 2021
The aim of this paper is to share part of an ongoing study in which we are interested in introducing a Gallery Walk (GW) as an instructional strategy to contemplate in the classroom, in the context of preservice teacher training for elementary education (6-12 years old), to promote students' mathematical knowledge and skills, through problem…
Descriptors: Teaching Methods, Mathematics Instruction, Mathematics Skills, Preservice Teacher Education
Sari, Delsika Pramata; Darhim – Journal on Mathematics Education, 2020
The purpose of this study was to describe how to implement the REACT [Relating, Experiencing, Applying, Cooperating and Transferring] strategy to develop students' mathematical representation, reasoning, and disposition ability. This research was a descriptive study with a qualitative approach. The subject of this study was grade 8 junior high…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematical Logic, Mathematics Skills
Aguilar, Jair J. – Mathematics Teaching Research Journal, 2021
A mathematical client-driven task known as Model-Eliciting Activities was implemented with students of different levels of achievement (i.e., low, average, and high) at the high-school level. The study strived to prove that Model-Eliciting Activities can be solved by students at any achievement level and be used as an assessment tool. Students…
Descriptors: Mathematics Instruction, Mathematics Achievement, Cooperative Learning, High School Students