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Carolyn Fitzpatrick – Journal of Faculty Development, 2025
In the rapidly evolving landscape of higher education, the clarity, measurability, and alignment of course objectives are more critical than ever. Effective course design hinges on well-defined learning objectives that guide both instruction and assessment. However, creating these objectives can be a daunting task for faculty, especially when…
Descriptors: Educational Change, Educational Objectives, Higher Education, Alignment (Education)
Daniel Miezah; Martha-Pearl Okai; Emmanuel Eshun; Frederick Sey; Francis Britwum; Frank Quansah; Ebenezer Takyi-Wadieh – Journal of Intellectual & Developmental Disability, 2025
Background: Past studies examining the associations of emotional intelligence, family support and financial stress with family quality of life (FQOL) in families of people with intellectual disability are scarce. Objective: To examine the predictors of FQOL among Ghanaian families of people with intellectual disability. Method: A sample of 176…
Descriptors: Foreign Countries, Family Environment, Quality of Life, Intellectual Disability
Xing Hu; Wen Gong – Education and Information Technologies, 2025
Amid the growing interest in generative AI technologies like ChatGPT for educational purposes, this research seeks to better understand Chinese EFL learners' acceptance and usage of them for L2 writing purposes. This study conducts an investigation by establishing a structural equation model that incorporates the Technology Acceptance Model (TAM)…
Descriptors: Foreign Countries, Artificial Intelligence, Computer Software, Technology Integration
Rong Yaojun; Kizito Tekwa – Education and Information Technologies, 2025
Research on using generative artificial intelligence (GenAI) chatbots in learning environments continues to underpin research in and out of academia. However, GenAI text-to-video (T2V) models have not been adequately investigated in academia, mostly due to their novelty. That means their potential to improve learning remains to be determined. This…
Descriptors: Artificial Intelligence, Technology Uses in Education, Captions, Video Technology
Nese Dokumaci Sütçü; Tugba Örnek – Journal of Theoretical Educational Science, 2025
The aim of this study was to examine the potential effect of intelligence games on the problem-posing skills of mathematics teachers. The research, in which case study, one of the qualitative research methods, was preferred, was conducted with two mathematics teachers enrolled in the Mathematics Education Master's Program with Thesis at a state…
Descriptors: Game Based Learning, Problem Solving, Mathematics Teachers, Masters Programs
Safaa M. Abdelhalim; Raniya Abdullah Alsehibany – Language Learning & Technology, 2025
Grounded in Vygotsky's sociocultural theory, this study examines the effectiveness of integrating ChatGPT into classroom instruction to enhance vocabulary learning. It evaluates ChatGPT's impact on vocabulary knowledge and retention compared to traditional teacher-led instruction. Using a quasi-experimental pre- and posttest control group design…
Descriptors: Artificial Intelligence, Technology Uses in Education, Vocabulary Development, Second Language Instruction
Daryl Ann Borel; Janice L. Taylor – School Leadership Review, 2025
As aspiring educational leaders, principal candidates must understand the widespread impact of generative artificial intelligence (Gen AI) in education. This qualitative phenomenological study explored the perceptions of aspiring educational leaders regarding Gen AI in academic research, highlighting the ethical concerns and challenges they…
Descriptors: Technology Uses in Education, Artificial Intelligence, Man Machine Systems, Natural Language Processing
Eric Ortega González; Jairo Jiménez – Educational Philosophy and Theory, 2025
This article examines contemporary educational practices within the rapidly evolving landscape of Artificial Intelligence. We do so by analysing the relationship between artificiality and naturalness in education. Education, often characterized as a human and thus natural-historical phenomenon, now appears increasingly shaped by artificial…
Descriptors: Artificial Intelligence, Educational Practices, Man Machine Systems, Data Analysis
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
Lisa-Angelique Lim; Louise Ainscough; Chris Deneen; Helena Pacitti; Daniel Taylor-Griffiths; Sally A. Male; Sarah Frankland – Student Success, 2025
Generative artificial intelligence (genAI) has the potential to change how we teach and how students learn. While genAI can support learning by offering personalised assistance, improving efficiency, and providing feedback, there are concerns that students may become overly dependent on it, potentially offloading their cognitive and metacognitive…
Descriptors: Artificial Intelligence, Learning Strategies, Self Management, Teaching Methods
Nga Thuy Nguyen; Huong Thi Thu Le; Hue Thi Kim Duong; Hue Thi Kim Tran; Ha Hoang Thi Bui – Teaching English with Technology, 2025
The rapid growth of artificial intelligence (AI) has impacted diverse sectors, including language education, highlighting the critical importance of user acceptance and key factors that facilitate AI adoption. This study employs a quantitative approach to investigate the factors influencing English as a Foreign Language (EFL) students' willingness…
Descriptors: Artificial Intelligence, English (Second Language), Foreign Countries, Student Attitudes
Qian Liu; Anjin Hu; Tehmina Gladman; Steve Gallagher – Innovative Higher Education, 2025
ChatGPT has sparked heated discussion in higher education since its public release and increasing empirical studies have been made available examining its application to higher education teaching and learning. To capture and synthesize the initial scholarly developments in this topic, we undertook a scoping review of empirical research into the…
Descriptors: Artificial Intelligence, Natural Language Processing, Higher Education, Student Evaluation
Jing Chen; Kaiyu Huang; Chun Lai; Tan Jin – TESOL Quarterly: A Journal for Teachers of English to Speakers of Other Languages and of Standard English as a Second Dialect, 2025
Critical thinking is an essential skill in the age of generative artificial intelligence (GenAI). GenAI affords dialectic argumentation, which provides opportunities for the development of critical thinking in argumentation (CTA). However, there was limited empirical evidence of how learners specifically utilize GenAI to construct argumentation.…
Descriptors: Artificial Intelligence, Technology Uses in Education, Critical Thinking, Persuasive Discourse
Saeun Lee; Juuso Eronen – Discover Education, 2025
The integration of advanced generative AI has profoundly influenced higher education, especially in language learning. In Japan's exam-focused and teacher-centered English education system, students have few opportunities to use generative AI to enhance critical skills like analysis, evaluation, and creativity. Learning often remains passive, with…
Descriptors: Foreign Countries, Artificial Intelligence, Technology Uses in Education, English (Second Language)
Johanna Colgrove; Hylkje Geertsema; Floortje d'Hont; Éva Kalmár; Joost Maarschalkerweerd; Dimphna H. Meijer; Jill Slinger; Martijn Wackers; Hegias Mira-Bontenbal – European Journal of STEM Education, 2025
As current challenges become more complex, bringing together people from different backgrounds to solve multifaceted problems has become crucial in the STEM field. There is growing recognition of the need to explicitly teach students the skills necessary to conduct inter- and transdisciplinary science, including communication, collaboration,…
Descriptors: Biomedicine, STEM Education, Interdisciplinary Approach, Skill Development

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