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Linjing Wu; Xuelin Xiang; Xueyan Yang; Xuan Jin; Liang Chen; Qingtang Liu – Educational Technology Research and Development, 2025
Problem-solving strategies are crucial in learning programming. Owing to their hidden nature, traditional methods such as interviews and questionnaires cannot reflect the details and differences of problem-solving strategies in programming. This study uses the Hidden Markov Model to detect and compare the problem-solving strategies of different…
Descriptors: Markov Processes, Problem Solving, Programming, Identification
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Muhammad Syarifuddin Rahman; Abdurahman Hamid; Asmaun – International Journal of Education in Mathematics, Science and Technology, 2025
This research aims to explore both the individual and combined relationships between the use of GeoGebra and productive disposition with students' strategic competence. The use of GeoGebra involves teacher-led activities designed to assist students in managing and engaging with learning, serving as a tool to enhance mathematics learning outcomes.…
Descriptors: Learning Strategies, Computer Software, Measurement Techniques, Teaching Methods
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Ayesha Sohail; Huma Akram – Pedagogical Research, 2025
The ability to properly evaluate one's own academic progress has long been considered a predictor of academic success. However, its distinctive role in the context of computational mathematics remains underexplored. Grounded in social cognitive theory, this study investigates the critical role of self-regulated learning (SRL) strategies in…
Descriptors: Undergraduate Students, Mathematics Education, Mathematics Achievement, Self Evaluation (Individuals)
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Glogger-Frey, Inga; Treier, Anne-Katrin; Renkl, Alexander – Instructional Science: An International Journal of the Learning Sciences, 2022
A worked-out or an open inventing problem with contrasting cases can prepare learners for learning from subsequent instruction differently regarding motivation and cognition. In addition, such activities potentially initiate different learning processes during the subsequent ("future") learning phase. In this experiment (N = 45…
Descriptors: Preservice Teachers, Motivation, Learning Processes, Learning Strategies
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Maria Goreti Rini Kristiantari; I Gusti Ayu Lokita Purnami; Ni Ketut Desia Tristiantari; Gede Wira Bayu; Kadek Andre Karisma Dewantara; Ni Putu Utami Dewi – International Journal of Language Education, 2025
The purpose of this study is to develop learning model of design thinking learning with a Neuro-Linguistic Programming (NLP) approach to enhance autonomous learning in early writing and reading. This study conducted base on problems that exist in strategies for teaching early writing and reading in elementary schools and seek solutions that can…
Descriptors: Neurolinguistics, Teaching Methods, Beginning Writing, Beginning Reading
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Gwo-Jen Hwang; Chun-Chun Chang; Chin-Ya Juan – Educational Technology Research and Development, 2025
Problem-posing has been regarded as a potential method to engage students in deeper thinking; however, without sufficient supports, most students could encounter difficulties in posing quality problems. In this study, a concept mapping-based online cooperative problem-posing (CM-OCPP) approach is proposed to guide students to complete…
Descriptors: Learning Processes, Learning Strategies, Concept Mapping, Electronic Learning
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Ernest Koranteng – Science Education International, 2024
This study aimed to uncover common difficulties and possible areas for improvement by focusing on the approaches and errors made by 3rd-year undergraduate chemistry students in solving organic synthesis problems. The study employed a purposive sampling technique to select 112 undergraduate chemistry major students to participate in this study.…
Descriptors: Foreign Countries, Undergraduate Students, Chemistry, Science Instruction
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Nicholas Gorgievski; Thomas DeFranco – Investigations in Mathematics Learning, 2024
In most mathematics textbooks, each lesson is followed by a set of homework problems in one of two ways -- blocked practice and mixed practice. Additionally, most mathematics textbooks rely on a common learning strategy called overlearning, that is, mastering a skill and continuing to practice this same skill. This study investigated the effects…
Descriptors: Calculus, Mathematics Instruction, Mathematics Achievement, Scores
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Hiller, Sara; Rumann, Stefan; Berthold, Kirsten; Roelle, Julian – Instructional Science: An International Journal of the Learning Sciences, 2020
In learning from examples, students are often first provided with basic instructional explanations of new principles and concepts and second with examples thereof. In this sequence, it is important that learners self-explain by generating links between the basic instructional explanations' content and the examples. Therefore, it is well…
Descriptors: Problem Solving, Test Format, Prompting, Learning Strategies
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Khairunnisak, Cut; Johar, Rahmah; Yuhasriati; Zubainur, Cut Morina; Suhartati; Sasalia, Putri – Mathematics Teaching Research Journal, 2021
The mathematical representation ability is essential in solving mathematical problems, especially in algebraic expressions problems. Therefore, it is crucial to have a valid design of learning activities to support students' mathematical representation ability. Several previous studies claimed that realistic mathematics education is one of the…
Descriptors: Learning Processes, Learning Strategies, Algebra, Mathematics Skills
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Kuan-Fu Chen; Gwo-Jen Hwang; Mei-Rong Alice Chen – Educational Technology Research and Development, 2024
Many studies have incorporated concept maps into digital games to enable learners to make connections between subject concepts in the game. However, most learners do not associate spontaneously with the thematic concepts in the game but need to be facilitated by effective scaffolding mechanisms to reconceptualize the learning process and content.…
Descriptors: Concept Mapping, Game Based Learning, Learning Strategies, Grade 7
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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
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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
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Palisse, Jennifer; King, Deborah Martina; MacLean, Mark – International Journal of Mathematical Education in Science and Technology, 2022
There is a growing interest in using comparative judgement as a peer assessment tool involving students choosing the 'better' of two pieces of work. However, it has not been shown whether peer assessment through comparative judgement is effective for students' learning. To gain a better understanding of the comparative judgement process, we…
Descriptors: Evaluative Thinking, Evaluation Criteria, Peer Evaluation, Undergraduate Students
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Romero, Margarida; Barma, Sylvie – Canadian Journal of Learning and Technology, 2022
Problem-solving activities have been studied from a diversity of epistemological perspectives. In problem-solving activities, the initial tensions of a problematic situation led to a cognitive dissonance between conflicting motives and instruments to reach the activity goal. We analyze problem-solving in the continuation of Sannino and Laitinen's…
Descriptors: Problem Solving, Stimuli, Stimulation, Decision Making
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