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Chacón-Díaz, Lucía B. – Cultural Studies of Science Education, 2023
Science education has an important role in educating the public on learning strategies that will generate a scientific literate population. The challenges encountered in this time of crisis calls for individuals to make well-informed decisions, based on reliable information. Understanding scientific basic concepts can inform the population on…
Descriptors: Learning Strategies, Science Education, Decision Making, Metacognition
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Avivit Arvatz; Yehudit Judy Dori – International Journal of Science and Mathematics Education, 2025
We investigated the advancement of self-regulated learning (SRL) in diverse educational settings, including science, mathematics, and humanities disciplines. We identified practices for assessing students' SRL and encouraging reflection. The research questions were: (1) Can sustained changes in students' perceptions of SRL over time be assessed,…
Descriptors: Science Education, Mathematics Education, Help Seeking, Student Attitudes
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Montha Polrak; Akadet Kedcham; Charinee Chansri – PASAA: Journal of Language Teaching and Learning in Thailand, 2024
This research aimed to study a direct positive effect of English self-efficacy on English language proficiency, a positive effect of metacognitive learning strategies on English self-efficacy, and an indirect effect of metacognitive learning strategies on English language proficiency with English self-efficacy as a mediator among 160 EFL…
Descriptors: Metacognition, Learning Strategies, Language Proficiency, English (Second Language)
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Winne, Philip H. – Metacognition and Learning, 2022
Metacognition is the engine of self-regulated learning. At the object level, learners seek information and choose learning tactics and strategies they forecast will develop knowledge. At the meta level, learners gather and analyze data about learning events to draw conclusions, such as: Is this tactic a good fit to conditions? Was it effective?…
Descriptors: Metacognition, Learning Strategies, Computer Software, Data Analysis
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Zeynep Dulger; Feral Ogan-Bekiroglu – International Journal of Research in Education and Science, 2024
In order to effectively learn physics, students need to be actively involved in problem solving. The purpose of this study was to evaluate the relationship between students' metacognitive awareness and their problem solving strategies in physics. Conceptual framework was based on Polya's problem solving strategies and Shraw and Dennison's…
Descriptors: Correlation, Metacognition, Problem Solving, Physics
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Julie Dangremond Stanton; Stephanie M. Halmo; Rayna J. Carter; Kira A. Yamini; Deborah Ososanya – Journal of Microbiology & Biology Education, 2024
Students with strong metacognitive skills are positioned to learn and achieve more than peers who are still developing their metacognition. Yet, many students come to college without well-developed metacognitive skills. As part of a longitudinal study on metacognitive development, we asked when, why, and how first-year life science majors use…
Descriptors: Undergraduate Students, Majors (Students), Misconceptions, Science Tests
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Sharday N. Ewell; Alayna Harvey; Amanda Clark; Megan E. Maloney; Laurie S. Stevison; Cissy J. Ballen – Journal of Research in Science Teaching, 2025
An inequitable distribution of resources and opportunities for marginalized students (i.e., opportunity gaps) leads to challenges in identifying effective study behaviors, metacognition, and academic help-seeking in higher education. While students benefit when these skills are taught explicitly through co-curricular workshops and courses, these…
Descriptors: Learning Strategies, Metacognition, Undergraduate Study, Undergraduate Students
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Salwa Alya Gina; Romy Faisal Mustofa; Rinaldi Rizal Putra – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Good metacognitive allows individuals to more easily adapt to changes in the learning environment and face challenges that arise. They tend to be more flexible in changing their learning strategies according to new needs and situations. The aim of this research is to determine the correlation between metacognitive and the academic resilience of…
Descriptors: Metacognition, Science Education, Science Achievement, Biology
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Byers, Terry; Leighton, Vicky; Leggett, Jack; Krzensk, Alex; Adamson, Rebecca; Pollock, Christopher; MacMahon, Stephanie – Review of Education, 2022
It is well documented that students of all ages tend to rely on inefficient study strategies. In a departure from the accustomed reactive strategy-training approach found in university settings, this study took a novel approach focusing on students at an earlier stage in their education. The aim was to evaluate the efficacy of early preparatory…
Descriptors: Science Education, Intervention, Secondary School Students, Foreign Countries
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John Willison; Claire Draper; Laura Fornarino; Menghua Li; Tala Sabri; Yan Shi; Xinshuo Zhao – Studies in Science Education, 2024
The development of student metacognition has the potential to provide some of the greatest learning gains in science education, even outstripping the contribution of general intelligence. While models for metacognition are in broad agreement about their nature, they vary widely in essential elements and the relationships between them, especially…
Descriptors: Metacognition, Learning Strategies, Correlation, Guidelines
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N. Nurmi; Herawati Susilo; I. Ibrohim; S. Suhadi – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Metacognitive skills are important because they help people develop an understanding of effective strategies. This skill also helps improve one's critical thinking and creative thinking so as to be able to overcome problems in everyday life. The purpose of this research is to train students' metacognitive skills through biology learning using the…
Descriptors: Metacognition, Thinking Skills, Skill Development, Learning Strategies
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Wipaporn Sasanti; Chulida Hemtasin; Tawan Thongsuk – Anatolian Journal of Education, 2024
This analysis dissects a piece of information into its parts and determines how they interact in constructing a concept. This study focuses on enhancing the analytical thinking skills of grade 6 students in science and technology courses by implementing inquiry-based learning management. The aim is to meet the minimum requirement of 70 percent and…
Descriptors: Inquiry, Active Learning, Thinking Skills, Skill Development
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Lukes, Laura A.; Jones, Jason P.; McConnell, David A. – Journal of Geoscience Education, 2021
Self-regulated learning (SRL) models provide a framework for understanding the observed variance of student performance in geoscience learning contexts. Instructors can potentially use a SRL framework to support students in self-identifying the specific approaches to learning they use when engaging in geoscience learning situations (coursework,…
Descriptors: Independent Study, Science Education, Geology, College Science
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Ömer Acar – Educational Studies, 2024
Relationships between students' grade-level, epistemic beliefs, metacognition, and science achievement were investigated separately for low and high-achieving schools. A total of 587 students in low achieving schools and 600 students in high achieving schools from fifth, sixth, and eighth grades constituted the study sample. Exploratory and…
Descriptors: Instructional Program Divisions, Epistemology, Beliefs, Metacognition
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Wang, Jingying; Jou, Min – Interactive Learning Environments, 2023
As mobile learning (ML) becomes more and more popular, teaching methods are gradually adapting to flipped classrooms or micro-flipped classrooms. Many studies have discussed the influence of ML-based flipped classrooms on students' learning in a macroscopic way. However, at the micro-level, the impact of these classrooms on students' emotional…
Descriptors: Telecommunications, Handheld Devices, Emotional Development, Cognitive Processes
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