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Jaan Aru – Journal of Creative Behavior, 2025
Artificial intelligence (AI) systems capable of generating creative outputs are reshaping our understanding of creativity. This shift presents an opportunity for creativity researchers to reevaluate the key components of the creative process. In particular, the advanced capabilities of AI underscore the importance of studying the internal…
Descriptors: Artificial Intelligence, Creativity, Creative Thinking, Neurology
Sofiia Kagan; Denis Dumas – Journal of Creative Behavior, 2025
Creative activities are typically thought to be positively associated with creative ability, whether because more creative individuals select into creative activities, or because those activities support the development of creativity, or both. However, the PISA 2022 creative thinking report revealed an unexpected finding: Creative ability was…
Descriptors: Creativity, Creative Activities, Creative Thinking, Creativity Tests
Dorland, AnneMarie – Marketing Education Review, 2023
The development and enhancement of creative thinking capacities is essential to marketing students' success. But despite marketing students' need to enhance and evidence their creative capacity skill set for the careers of the future, there exist few available models for marketing educators to introduce creative thinking skill development. This…
Descriptors: Creativity, Creative Development, Creative Thinking, Skill Development
Gregory T. Boldt; Elizabeth J. Canavan; Rachael A. Cody; E. Jean Gubbins – Grantee Submission, 2023
Because creativity is an essential 21st century skill that must be developed in gifted and talented student populations, it is important for gifted and talented programs to nurture mathematical creativity. To shed light on this topic, this article explores three questions: What is mathematical creativity? How can we develop students' mathematical…
Descriptors: Academically Gifted, Gifted Education, Talent Development, Skill Development
Siegle, Del – Gifted Child Today, 2023
This article explores the potential uses of AI in gifted education programs. Gifted students often have unique learning characteristics and require specialized program services. The use of AI can provide advanced content, personalized learning, creative writing and image manipulation, critical thinking and problem-solving, collaboration, research…
Descriptors: Artificial Intelligence, Educational Technology, Technology Uses in Education, Gifted Education
De Bruyckere, Pedro; Kirschner, Paul A.; Hulshof, Casper – American Educator, 2020
This article is excerpted from "More Urban Myths about Learning and Education: Challenging Eduquacks, Extraordinary Claims, and Alternative Facts." The authors discuss some of the most often asked questions related to one basic principle in particular: "transfer of learning." Transfer of learning is seen as the use of…
Descriptors: Transfer of Training, Personality Traits, Skill Development, Problem Solving
Arts-Based Instructional and Curricular Strategies for Working with Virtual Educational Applications
Steele, Patricia; Johnston, Elizabeth; Lawlor, Andrew; Smith, Cassandra; Lamppa, Sonja – Journal of Educational Technology Systems, 2019
In the 21st century, easy access to visually rich, immersive, student-centered, virtual applications could augment or replace text-based learning. However, the new developments are offset by the lack of insight into pedagogies needed to guide educators through a visual learning environment. The purpose of this directed content analysis was to…
Descriptors: Computer Simulation, Teaching Methods, Visual Learning, Content Analysis
Clements, Douglas H.; Joswick, Candace – Instructional Science: An International Journal of the Learning Sciences, 2018
In reviewing the six articles within this "Instructional Science" special issue, we are reminded of Schoenfeld's ("Educ Res" 45(2):105-111, 2016) review of American Educational Research Association president-authored papers for the centennial celebration of AERA. There, he succinctly unveiled the content focus of AERA research…
Descriptors: Discovery Learning, Educational Research, Educational History, Educational Trends
Reed, Samantha S.; Mullen, Carol A.; Boyles, Emily T. – SpringerBriefs in Education, 2021
This book addresses Problem-based Learning (PBL) in elementary schools and reveals how this can promote elementary students' development in critical thinking, creativity, communication, collaboration, and citizenship, also known as the 5 Cs. Through teachers' interviews, the book explores which PBL strategies promote skills and knowledge gains…
Descriptors: Problem Based Learning, Elementary School Students, Critical Thinking, Creative Thinking
Ab Kadir, M. Akshir – Asia Pacific Journal of Education, 2018
The new Australian Curriculum (AC) aims to prepare learners for the twenty-first century and in doing so, emphasize the development of critical (and creative thinking) as one of the "general capabilities" of learners. Critical thinking is seen as key in preparing "students to live and work in the 21st century" and…
Descriptors: Foreign Countries, Critical Thinking, National Curriculum, Pedagogical Content Knowledge
Nehring, James; Charner-Laird, Megin; Szczesiul, Stacy – Phi Delta Kappan, 2017
The authors recently studied how well schools were teaching a a range of complex, higher-order skills. Their findings were grim. Out of 25 skills that researchers have found to be critical to success in life and work, just three were the focus of most instruction: recall, application, and (occasionally) analysis. Even when teachers explicitly made…
Descriptors: Performance, Skill Development, Recall (Psychology), Cognitive Development
Truran, Peter – Educational Technology, 2016
The teaching of research methodology to graduate science students places an emphasis on scientific reasoning and on the generation and evaluation of evidence in support of research conclusions. Very little attention is paid to the teaching of scientific creativity, the processes for generation of new ideas, hypotheses, and theories. By contrast,…
Descriptors: Creative Thinking, Thinking Skills, Skill Development, Research Methodology
Olszewski-Kubilius, Paula; Subotnik, Rena F.; Worrell, Frank C. – Roeper Review, 2016
Much has been written about the social and scientific problems that face the world in the 21st century, including climate change and economic inequality. In this context, the development of talented individuals who can tackle these problems is most important. In this article, the authors discuss the implications of 21st-century challenges for the…
Descriptors: Talent Development, Individual Development, Skill Development, Models
Ackehurst, Maree; Polvere, Rose-Anne; Erzinger, Tania – National Centre for Vocational Education Research (NCVER), 2019
This supporting document sets out the content analysis technique and detailed findings that underly part of the research conducted for the report titled "VET for secondary school students: acquiring an array of technical and non-technical skills." That report is the first in a set of studies that aims to understand the value of…
Descriptors: Content Analysis, Vocational Education, Technical Education, Job Skills
de Busser, Cathelijne – Review of International Geographical Education Online, 2014
Contemporary geography education is mostly based on rational linear thinking skills, such as observation, explanation, interpretation, calculation and analysis. Even field trips--according to many the "heart" of geography--are often organized in a logical, rational manner, in which learners step-by-step improve their understanding of the…
Descriptors: Geography Instruction, Thinking Skills, Logical Thinking, Skill Development
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