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Paola Iannello; Alice Cancer; Leor Zmigrod; Alessandro Antonietti; Carola Salvi – Journal of Creative Behavior, 2025
In today's digital milieu, characterized by pervasive media exposure, the intricate interplay between individual differences and cognitive processes has garnered significant scholarly interest. A notable facet of this interrelation pertains to the nexus between cognitive flexibility and individuals' engagement with online information. Recognized…
Descriptors: Creative Thinking, Cognitive Processes, Logical Thinking, Models
Varghese Panthalookaran – Higher Education for the Future, 2025
Unlike other technologies that augment human physical skills and abilities, artificial intelligence (AI) technologies interact with human thinking skills nurtured through various educational processes. Hence, advances in these technologies challenge the education sector to reimagine the suitable intellectual formation of students in the AI age. It…
Descriptors: Taxonomy, Artificial Intelligence, Thinking Skills, Educational Objectives
Jijia Yang; Yan Chen; Yunsong Wang – European Journal of Education, 2025
Critical thinking (CT) is widely recognised as a core competency in 21st-century higher education, particularly within English as a Foreign Language (EFL) learning contexts. This study examines the extent to which motivation and engagement contribute to the development of CT skills among Chinese EFL university students. A sample of 626…
Descriptors: Learning Motivation, Learner Engagement, Critical Thinking, Second Language Learning
Agusman; Purwanto; Rustanto Rahardi – Journal of Research and Advances in Mathematics Education, 2025
Critical thinking is a fundamental competence in 21st-century education, particularly in mathematics, where students frequently encounter contradictory information that requires logical reasoning and reflective judgment. This study explores the stages of critical thinking among junior high school students when solving contradictory mathematical…
Descriptors: Critical Thinking, Junior High School Students, Mathematics Instruction, Problem Solving
Thomas M. Philip – National Education Policy Center, 2025
"Productive Struggle: How Artificial Intelligence is Changing Learning, Effort, and Youth Development in Education," recently released by Bellwether, considers the role of GenAI in education. It proposes a criterion for evaluating these new technologies' impact on student learning: When does ease afforded by GenAI enable greater…
Descriptors: Artificial Intelligence, Technology Uses in Education, Educational Change, Cognitive Processes
Gal Sasson Lazovsky; Tuval Raz; Yoed N. Kenett – Journal of Creative Behavior, 2025
As artificial intelligence and natural language processing methods rapidly develop, communication plays a pivotal role in every-day interactions. In this theoretical paper, we explore the overlap and commonalities between question-asking and prompt engineering. While seemingly distinct, these processes share a common foundation in essential skills…
Descriptors: Creativity, Questioning Techniques, Inquiry, Artificial Intelligence
Paloma Suárez-Brito; Armando Elizondo-Noriega; Jenny Paola Lis-Gutiérrez; Carolina Henao-Rodríguez; María Rubi Forte-Celaya; José Carlos Vázquez-Parra – On the Horizon, 2025
Purpose: The purpose of this paper is to present the results of measuring a sample of engineering students' perceived achievement of complex thinking at different stages of their professional training. This study intended to analyze and predict the differences in the self-perception of achieved complex thinking competency by gender, semester,…
Descriptors: Foreign Countries, Engineering Education, Undergraduate Students, Sex
Chia-Jung Li; Gwo-Jen Hwang; Ching-Yi Chang; Hui-Chi Su – British Journal of Educational Technology, 2025
In professional training, developing critical thinking is essential for professionals to analyse problem situations and respond effectively to emergencies. Conventional professional training typically employs multimedia materials combined with progressive prompting (PP) to support trainees in constructing knowledge and solving problems on their…
Descriptors: Artificial Intelligence, Technology Uses in Education, Prompting, Academic Achievement
Yanyan Zhang; Xiaomin Lai; Suping Yi; Yefeng Lu – Education and Information Technologies, 2025
A new kind of reading platform supported by ChatGPT has quickly become a popular research assistant among students due to its instant natural language interaction and question-answering capabilities. This study explored the effects of ChatGPT-based reading platform on student's foreign language paper reading. A total of 64 undergraduate students…
Descriptors: Artificial Intelligence, Technology Uses in Education, Natural Language Processing, Undergraduate Students
Roland Gesthuizen; Hazel Tan; Gillian Kidman – International Research in Geographical and Environmental Education, 2025
This study explores the use of virtual worlds, specifically Minecraft, on sustainability education and cognitive skills. Using the Teaching to Inspire model as a lens, we examine how students design sustainable virtual buildings and cityscapes aligned with the UN Sustainable Development Goals and the social-ecological systems (SES) framework. Our…
Descriptors: Environmental Education, Sustainability, Video Games, Cognitive Processes
Marley Belot – Online Submission, 2025
Space exploration requires individuals who can think critically, adapt to uncertainty, and learn in cognitively complex environments. This paper examines how Human Systems Engineering (HSE) and cognitive design principles can enhance both astronaut training and STEM education on Earth. The same methodologies that help astronauts manage stress,…
Descriptors: Human Factors Engineering, Cognitive Processes, STEM Education, Aerospace Education
Segun Michael Ojetunde; Umesh Ramnarain – Smart Learning Environments, 2025
Learning interaction patterns is key to the explanation of learning outcomes. Different studies have reported the relationship between classroom process variables and learning outcomes in a traditional classroom setting. However, the advent of robotics and its attendant student-robot interaction moderated by students' mathematical ability is yet…
Descriptors: Robotics, Technology Uses in Education, Mathematics Skills, Outcomes of Education
Katrina E. Forbes-McKay; Pauline A. M. Bremner; Pamela Johnston; Carol Air – Journal of Applied Research in Higher Education, 2025
Purpose: This study addresses gaps in the existing literature on students' understanding of Independent Learning (IL), whilst exploring the link between levels of IL, growth mindset, motivated strategies for learning and academic performance. Design/methodology/approach: Three hundred and eighty-six university students recruited via opportunistic…
Descriptors: Independent Study, Student Attitudes, Student Motivation, Learning Strategies
Yu Ji; Zehui Zhan; Tingting Li; Xuanxuan Zou; Siyuan Lyu – IEEE Transactions on Learning Technologies, 2025
The advent of generative artificial intelligence (GAI), exemplified by ChatGPT, has introduced both new opportunities and challenges in science, technology, engineering, and mathematics (STEM) and entrepreneurship education. This exploratory quasi-experimental study examined the effects of ChatGPT-assisted collaborative learning (CCL) on students'…
Descriptors: Man Machine Systems, Technology Uses in Education, Artificial Intelligence, Learning Processes
Muh. Makhrus; Satutik Rahayu; Didik Santoso; Syarful Annam – Educational Process: International Journal, 2025
Background/purpose. This research aims to analyze the influence and test the effectiveness of using an e-module based on sustainable development goals (SDGs) with the conceptual change model-cognitive conflict approach (CCM-CCA) integrated with local wisdom on students' critical thinking skills. Materials/methods. This research employed a…
Descriptors: Electronic Learning, Learning Modules, Sustainable Development, Concept Formation
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