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Jiahong Su; Weipeng Yang – Interactive Learning Environments, 2024
The issue of Artificial Intelligence (AI) literacy is gaining popularity in the field of education. Most research on AI literacy has focused on primary, secondary, and higher education, and there has been limited examination of AI literacy programs in early childhood education. This study aimed to evaluate the impact of an eight-week AI literacy…
Descriptors: Foreign Countries, Artificial Intelligence, Technological Literacy, Early Childhood Education
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Yusuke Uegatani; Hiroki Otani; Shintaro Shirakawa; Ryo Ito – Mathematics Education Research Journal, 2024
Due to the learning paradox, students cannot have real difficulty in understanding a mathematical concept that they have not yet understood. There is a gap between real difficulties, directly experienced by students, and illusionary ones, only observed by researchers. This paper aims to offer a critical reflection on our understanding of the term…
Descriptors: Mathematics Education, Concept Formation, Mathematical Concepts, Difficulty Level
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Guershon Harel – ZDM: Mathematics Education, 2024
"Epistemological justification" is a way of thinking that manifests itself through perturbation-resolution cycles revolving around the question "why and how was a piece of mathematical knowledge conceived?" The paper offers a conceptual framework for constituent elements of epistemological justification. The framework provides:…
Descriptors: Mathematical Concepts, Mathematics Education, Mathematics Instruction, Mathematics Skills
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Soo-min Lim; Hyunju Chun; Hyonyong Lee; Youngshin Kim – Journal of Baltic Science Education, 2024
An important educational goal is enabling students to learn scientific concepts. The scientific concepts learned in class are developed within students' cognitive structures. Despite the successful application of Semantic Network Analysis (SNA) to study these cognitive structures, there has been limited examination of students' concept networks…
Descriptors: Student Characteristics, Cognitive Processes, Thinking Skills, Student Behavior
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Yi Zou; Xinyu Xue; Lizhen Jin; Xiao Huang; Yanbing Li – Physical Review Physics Education Research, 2024
Developing a deeper understanding of scientific concepts is one of the primary goals of science education. To improve students' conceptual understanding, it is necessary to explore the major characteristics of their learning process. Informed by previous work on conceptual understanding, this study focuses on the concept of evaporation, exploring…
Descriptors: Concept Formation, Scientific Concepts, Physics, Science Instruction
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Xu Yaqian; Zheng Qinhua – Interactive Learning Environments, 2024
The interactive mechanism between social and concept networks is a key question in connectivist learning, which explains the impact of interaction on cognitive development and knowledge generation. The successful practice of "Internet Change Education: Dialogue between Theory and Practice", the first cMOOC in China, provides data support…
Descriptors: Correlation, Social Networks, Status, MOOCs
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Farzaneh Ojaghi Shirmard; Edward R. Howe – Journal of Comparative and International Higher Education, 2024
Critical thinking is an important part of higher education in Canada, and many education systems worldwide, but not all cultural contexts. Critical thinking enables students to expand their perspectives and better navigate important personal and professional decisions. This narrative inquiry compares Canadian and Iranian international graduate…
Descriptors: Foreign Countries, Critical Thinking, Knowledge Level, Student Attitudes
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Giacomo Zuccarini; Massimiliano Malgieri – Science & Education, 2024
Most educational literature on conceptual change concerns the process by which introductory students acquire scientific knowledge. However, with modern developments in science and technology, the social significance of learning successive theories is steadily increasing, thus opening new areas of interest to discipline-based education research,…
Descriptors: Models, Concept Formation, Theories, Educational Research
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Elina Malleus; Grete Arro; Triinu Jesmin; Esta Kaal; Mihkel Kangur; Arko Olesk; Liisa Puusepp; Jaanus Terasmaa; Terje Väljataga – Environmental Education Research, 2024
When teaching about complex phenomena (e.g. concepts related to the natural environment), good quality questioning could lead to a more profound conceptual change. However, asking questions that help students to construct new knowledge is a challenge for many educators. To help promote better questioning, we analyzed the kind of questions (N =…
Descriptors: Environmental Education, Concept Formation, Attitude Change, Questioning Techniques
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Martin A. Simon – Journal for Research in Mathematics Education, 2024
Students' ability to operate with increasingly more complex units has been shown to be a key factor in their conceptual development. These abilities have been characterized as "stages of units coordination." This article focuses on the domain of composing and decomposing composite units. Using data from a teaching experiment with a…
Descriptors: Numbers, Mathematics Education, Concept Formation, Academic Ability
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George Kinnear – Research in Mathematics Education, 2024
Prompting learners to generate examples has been proposed as an effective way of developing understanding of a new concept. However, empirical support for this approach is lacking. This article presents two empirical studies on the use of example-generation tasks in an online course in introductory university mathematics. The first study compares…
Descriptors: Comparative Analysis, Classification, Task Analysis, Mathematics Instruction
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Mónica Arnal-Palacián; Francisco J. Claros-Mellado; María T. Sánchez-Compaña – Pythagoras, 2024
The purpose of this article is to conduct a mathematical and phenomenological comparison of three concepts: (1) the finite limit of a function at a point, (2) the finite limit of a sequence, and (3) the infinite limit of a sequence. Additionally, we aim to analyse the presence of these concepts in Spanish textbooks. The methodology employed is…
Descriptors: Phenomenology, Textbooks, Mathematics Instruction, Teaching Methods
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A. Watson; B. M. Kennedy; J. Davidson; E. Brogt; A. Jolley – Journal of Geoscience Education, 2024
Geological skills such as interpreting outcrops are often taught during fieldwork. However, recent advancements in digital technologies and the demand for more inclusive and accessible learning has provided an opportunity to teach these skills in virtual field trips (VFT). The Iceland VFT was developed to teach students about volcanic features and…
Descriptors: Geology, Physical Geography, Field Trips, Computer Simulation
Page Keeley – NSTA Press, 2024
Here's a fresh way to help your students learn life science by determining how you can help them learn best. "Uncovering Student Ideas in Life Science, Volume 2," offers 30 new formative assessment probes--engaging questions that can reveal what students already know (or think they know) about a core science topic. Armed with that…
Descriptors: Science Education, Knowledge Level, Biological Sciences, Scientific Concepts
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Thomas H. Linz; Mario A. Cornejo; Courtney E. Cunningham; Hao T. Mai; Shakila H. Peli Thanthri – Journal of Chemical Education, 2024
A collection of four activities for science outreach events was developed to teach middle school students about the temperature dependence of scientific phenomena. Procedures are described for four interactive demonstrations on phase changes, fluorescence, viscosity effects on diffusion, and conductivity. Each hands-on activity helps students…
Descriptors: Middle School Students, Science Instruction, Climate, Scientific Concepts
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