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Ismet Sahin – Online Submission, 2025
In the age of artificial intelligence (AI), automation, and algorithm-driven decision-making, human roles, skills, and educational priorities are undergoing an unprecedented transformation. As machines become increasingly capable of performing routine, analytical, and even creative tasks, the fundamental question arises: What remains uniquely…
Descriptors: Artificial Intelligence, Automation, Ability, Humanistic Education
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Javiera Atenasa; Leo Havemannb; Chrissi Nerantzi – Research in Learning Technology, 2024
This paper offers guidance on employing open and creative methods for co- designing critical data and artificial intelligence (AI) literacy spaces and learning activities, rooted in the principles of Data Justice. Through innovative approaches, we aim to enhance participation in learning, research and policymaking, fostering a comprehensive…
Descriptors: Artificial Intelligence, Data, Literacy, Teaching Methods
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Yakun Zhang; Ziwei Pan; Lina Huang; Xingli Zhang; Lung An Chen; Jiannong Shi – Educational Psychology, 2025
The present study is a short-term intervention program aimed at cultivating children's creativity based on the 'butterfly model' of nurturing creativity, adopting a 2 × 3 mixed experimental design with placebo and no-treatment groups. They also received the equal intervention after the experimental group finished for the sake of fairness to all…
Descriptors: Teaching Methods, Childrens Attitudes, Creative Thinking, Creative Development
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Michael E. Ellis; K. Mike Casey; Geoffrey Hill – Decision Sciences Journal of Innovative Education, 2024
Large Language Model (LLM) artificial intelligence tools present a unique challenge for educators who teach programming languages. While LLMs like ChatGPT have been well documented for their ability to complete exams and create prose, there is a noticeable lack of research into their ability to solve problems using high-level programming…
Descriptors: Artificial Intelligence, Programming Languages, Programming, Homework
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Benazir Quadir; Xiaojun Zhang; Juming Shen – Asia-Pacific Education Researcher, 2025
The study aimed to investigate factors influencing students' learning in a Block Mode Learning (BML) environment in higher education. Therefore, the study examined the development of and performed a user study on the 4Cs--critical thinking, creativity, communication, and collaboration--which were integrated with BML as an effective and engaging…
Descriptors: Higher Education, Teaching Methods, Educational Strategies, Critical Thinking
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Lewis, Tyson E.; Valk, Steve – Educational Philosophy and Theory, 2022
In this article, the authors utilize the philosophical methodology developed by Michael Hardt and Antonio Negri to formulate a theory of educational realism. The goal is to posit an embodied form of education that emerges from within the movements of the multitude. The connection between multitudinous movement and education is the concept of…
Descriptors: Dance, Educational Philosophy, Teaching Methods, Correlation
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Hugo Edgar Mesquita; Adriana Baptista; Olívia Silva – Open Education Studies, 2025
This article explores the integration of "synthography" in the context of a class in the Degree in Photography, as a strategy to explore artistic and professional practices in the digital transformation era, problematizing the pedagogical implications of using artificial intelligence (AI) in creative disciplines. The study revolves…
Descriptors: Artificial Intelligence, Computer Software, Photography, Teaching Methods
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Stankov, Lazar; Lee, Jihyun – Journal of Intelligence, 2020
This paper examined the effects of training in creative problem-solving on intelligence. We revisited Stankov's report on the outcomes of an experiment carried out by R. Kvashchev in former Yugoslavia that reported an IQ increase of seven points, on average, across 28 tests of intelligence. We argue that previous analyses were based on a…
Descriptors: Intelligence Quotient, Comparative Analysis, Creativity, Problem Solving
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Sternberg, Robert J. – Education Sciences, 2021
This article introduces the concept of adaptive intelligence--the intelligence one needs to adapt to current problems and anticipate future problems of real-world environments--and discusses its implications for education. Adaptive intelligence involves not only promoting one's own ability to survive and thrive, but also that of others in one's…
Descriptors: Intelligence, Adjustment (to Environment), Creative Thinking, Logical Thinking
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Joseph J. Slade; Stephanie M. Byers; Kathryn A. Becker-Blease; Regan A. R. Gurung – Teaching of Psychology, 2025
Introduction: The integration of artificial intelligence (AI) into higher education ushers in a new era of teaching and learning possibilities for both educators and students. Statement of the Problem: These technologies not only offer unparalleled opportunities for personalized learning and instructional support, but also introduce challenges…
Descriptors: Artificial Intelligence, Computer Software, Technology Integration, Teaching Methods
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Michael Mehmet; Mary Papakosmas; Elias Kyriazis; Mona Nikidehaghani – Journal of Marketing Education, 2025
This study aims to examine how to integrate generative AI (GenAI) into marketing education. We used the transformation mechanism within boundary crossing theory to explore how marketing professional insights can be utilized to prepare students for industry demands in the GenAI era. We analyze industry content and GenAI courses alongside 26…
Descriptors: Marketing, Career Readiness, School Business Relationship, Education Work Relationship
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Jones, Rhys C. – Teaching Statistics: An International Journal for Teachers, 2019
The use of statistical investigations as a teaching strategy have been shown to both motivate and engage students. The implementation of a statistical investigation to measure intelligence is described, covering core statistical principles and key elements of research design.
Descriptors: Teaching Methods, Intelligence, Creativity, Statistics
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Tina Jaber Rafidi; Nabiha El Khatib – Discover Education, 2025
As generative AI tools like ChatGPT become increasingly integrated into academic settings, understanding students' perspectives is critical--particularly in underrepresented regions such as Lebanon and Palestine. A mixed-methods approach using survey data and thematic analysis of in-depth interviews was employed to analyze students' perceived…
Descriptors: Cross Cultural Studies, Artificial Intelligence, Technology Integration, Teaching Methods
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Peter Crosthwaite; Simone Smala; Franciele Spinelli – Australian Educational Researcher, 2025
This study explores the generative artificial intelligence (GAI) prompting practices of Australian primary and secondary educators in the first year following the advent of OpenAI's ChatGPT. Following a brief training workshop on prompting GAI for pedagogical purposes, 38 teachers uploaded 252 prompts they deemed 'pedagogically useful' and 19…
Descriptors: Foreign Countries, Artificial Intelligence, Technology Uses in Education, Prompting
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Guido Lang; Tamilla Triantoro; Jason H. Sharp – Journal of Information Systems Education, 2024
This study explores the potential of large language models (LLMs), specifically GPT-4 and Gemini, in generating teaching cases for information systems courses. A unique prompt for writing three different types of teaching cases such as a descriptive case, a normative case, and a project-based case on the same IS topic (i.e., the introduction of…
Descriptors: Computational Linguistics, Computer Software, Artificial Intelligence, Readability Formulas
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