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Ali Mohammadian-Khatir; Amirali Tabatabai-Adnani; Ali Barahmand; Mohammad Ali Fariborzi-Araghi – REDIMAT - Journal of Research in Mathematics Education, 2025
The purpose of this study is to investigate students' thinking of direct, inverse and nonproportional problems. Thirty two seventh grade students from three different government schools participated in this study. To collect the data, the participants were asked to solve 9 open-ended problems, including 3 direct, 3 inverse and 3 non-proportional…
Descriptors: Thinking Skills, Mathematics Skills, Problem Solving, Middle School Mathematics
Conrad Borchers; Jiayi Zhang; Hendrik Fleischer; Sascha Schanze; Vincent Aleven; Ryan S. Baker – Journal of Educational Data Mining, 2025
Think-aloud protocols are a standard method to study self-regulated learning (SRL) during learning by problem-solving. Advances in automated transcription and large language models (LLMs) have automated the transcription and labeling of SRL in these protocols, reducing manual effort. However, while effective in many emerging applications, previous…
Descriptors: Artificial Intelligence, Protocol Analysis, Learning Strategies, Classification
Sari, Yurizka Melia; Fiangga, Shofan; El Milla, Yulia Izza; Puspaningtyas, Nicky Dwi – Journal on Mathematics Education, 2023
Proportional reasoning has been greatly influencing the development of students' mathematical abilities. Along with the area conservation ability, it helps elementary students comprehend area measurement. This exploratory study aimed to produce qualitative-descriptive data on elementary students' proportional reasoning in solving the conservation…
Descriptors: Elementary School Students, Logical Thinking, Problem Solving, Mathematics Skills
Rahman, Muhammad Syarifuddin; Juniati, Dwi; Manuharawati – Pegem Journal of Education and Instruction, 2023
Mathematical proficiency is essential to supporting students' success in learning mathematics. It is the ability to use conceptual understanding, procedural fluency, strategic competence, adaptive reasoning, and productive disposition in problem-solving. Cognitive independence shows students' ability to process information. Meanwhile, motivation…
Descriptors: Geometry, Problem Solving, Mathematics Skills, Learning Motivation
Colonnese, Madelyn W.; Casto, Amanda R. – Mathematics Teacher Education and Development, 2023
Mathematical writing is one way for primary students to communicate their mathematical thinking. Research in the field of writing has shown that to become an effective teacher of writing, preservice teachers must have experience engaging in the kinds of writing given to their students. The study reported in this paper explored how 27 preservice…
Descriptors: Preservice Teachers, Preservice Teacher Education, Mathematics Education, Mathematics Skills
Cabero-Fayos, Ismael; Santágueda-Villanueva, María; Villalobos-Antúnez, Jose Vicente; Roig-Albiol, Ana Isabel – Education Sciences, 2020
From an early age, understanding proportional reasoning is a fundamental pillar in mathematics education, and therefore, teachers should have a thorough knowledge of it. Despite its significance, there are few studies that analyse the difficulties that student teachers have in understanding proportionality, and even less so inverse…
Descriptors: Foreign Countries, Preservice Teachers, Logical Thinking, Problem Solving
Chirove, Munyaradzi; Mogari, David; Ogbonnaya, Ugorji I. – Waikato Journal of Education, 2022
This study explored students' mathematics-related beliefs and the relationship between the beliefs and their strategies for solving non-routine mathematical problems. The study was guided by Daskalogianni and Simpson's 2001 belief systems categories and strategies for non-routine mathematical problems. The participants were 625 grade 11 students…
Descriptors: Foreign Countries, High School Students, Grade 11, Student Attitudes
Margulieux, Lauren E.; Catrambone, Richard – Journal of the Learning Sciences, 2019
Subgoal learning, a technique used to break down problem solving into manageable pieces, has been used to promote retention and transfer in procedural domains, such as programming. The primary method of learning subgoals has been passive, and passive learning methods are typically less effective than constructive methods. To promote constructive…
Descriptors: Problem Solving, Learning Strategies, Logical Thinking, Guidance
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)
Teimourtash, Morteza; YazdaniMoghaddam, Massood – Asian-Pacific Journal of Second and Foreign Language Education, 2017
The ultimate goal of any academic program is to educate and bring up thoughtful citizens in societies. By "thoughtfulness" we mean paving the spectrum from simply applying the rules (lower order thinking) to finding proper solution to authentic novel problems (higher order thinking). It is helping the practitioners pave the continuum of…
Descriptors: Taxonomy, Thinking Skills, Problem Solving, Logical Thinking
Worsley, Marcelo; Blikstein, Paulo – Journal of Pre-College Engineering Education Research, 2016
"Making" represents an increasingly popular label for describing a form of engineering design. While making is growing in popularity, there are still open questions about the strategies that students are using in these activities. Assessing and improving learning in making/ engineering design contexts require that we have a better…
Descriptors: Graduate Students, Secondary School Students, Engineering, Engineering Education
Wüstenberg, Sascha; Stadler, Matthias; Hautamäki, Jarkko; Greiff, Samuel – Technology, Knowledge and Learning, 2014
Education in the twenty-first century must prepare students to meet the challenges of a dynamic and interconnected world. However, assessment of students' skills tends to focus primarily on static tasks. Therefore, it is not known whether knowledge about successful strategies displayed on static tasks can be transferred to interactive and dynamic…
Descriptors: Foreign Countries, Problem Solving, Learning Strategies, Science Process Skills
Stevenson, Claire E. – International Journal of Artificial Intelligence in Education, 2017
This study contrasted the effects of tutoring, multiple try and no feedback on children's progression in analogy solving and examined individual differences herein. Feedback that includes additional hints or explanations leads to the greatest learning gains in adults. However, children process feedback differently from adults and effective…
Descriptors: Tutoring, Feedback (Response), Children, Short Term Memory
Gómez Ferragud, Carlos B.; Solaz-Portolés, Joan Josep; Sanjosé, Vicente – EURASIA Journal of Mathematics, Science & Technology Education, 2015
We conducted a qualitative research of case studies based on think-aloud protocols. The aim was to carry out in-depth analyse secondary students' cognitive difficulties appearing in early stages of transfer processes in problem-solving. The task was to relate several source problems to a target problem, in order to solve it effectively. Source and…
Descriptors: Familiarity, Units of Study, Problem Solving, Logical Thinking
Nokes-Malach, Timothy J.; VanLehn, Kurt; Belenky, Daniel M.; Lichtenstein, Max; Cox, Gregory – European Journal of Psychology of Education, 2013
Research on expertise suggests that a critical aspect of expert understanding is knowledge of the relations between domain principles and problem features. We investigated two instructional pathways hypothesized to facilitate students' learning of these relations when studying worked examples. The first path is through self-explaining how…
Descriptors: Expertise, Knowledge Level, Comparative Analysis, Physics

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