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Melissa Fortner; Iva Katzarska-Miller – Teaching of Psychology, 2025
Introduction: Recent advancements in generative AI (GAI) platforms appear to mark an abrupt shift in higher education. Statement of the Problem: Instructors have a responsibility to teach students to use GAI, which is a promising tool for promoting personalized, student-centered, process-focused learning environments. Literature Review: Drawing on…
Descriptors: Artificial Intelligence, Majors (Students), Computer Software, Student Centered Learning
Fernando Almeida; Zoltan Buzady – Technology, Knowledge and Learning, 2024
This study explores the contribution of serious game teaching technology, such as FLIGBY, to the development of entrepreneurial learning outcomes in the context of an entrepreneurship course in higher education. The sample is composed of 551 students through the construction of a randomized pretest-posttest control group. A quantitative…
Descriptors: Entrepreneurship, Outcomes of Education, Comparative Analysis, Game Based Learning
Oliveira, Leonam Cordeiro de; Guerino, Guilherme Corredato; Oliveira, Leander Cordeiro de; Pimentel, Andrey Ricardo – Informatics in Education, 2023
Industry 4.0 technologies are being applied in the teaching and learning process, called Education 4.0. However, there is no specification of what is being considered when developing technologies for education in the 4.0 context. Therefore, we performed a Systematic Mapping Study to investigate the information and communication technologies (ICTs)…
Descriptors: Computer Software, Teaching Methods, Learning Processes, Information Technology
Muhiddin Furkan Kiliç; Afife Zehra Yurtsever; Feyza Açikgöz; Beste Basgut; Burcu Mavi; Ezgihan Ertuç; Sinem Sevim; Tuhan Oruk; Yavuz Selim Kiyak; Tuncay Peker – Anatomical Sciences Education, 2025
Traditional education often relies on passive learning approaches, whereas modern medical students increasingly seek interactive, technology-enhanced experiences. Despite the growing use of digital tools in anatomy education, there remains a lack of structured, student-centered 3D modeling courses embedded within the undergraduate medical…
Descriptors: Anatomy, Medical Education, Medical Students, Learner Engagement
Pinky Kusuma Ningtyas; Hayuni Retno Widarti; Parlan Parlan – Journal of Science Learning, 2024
Social media is one of the platforms that is popular and familiar to various circles. This technology has penetrated multiple fields, especially education. Many studies have shown the use of social media in the learning process. This study aims to explore the use of social media in science learning environments and their impacts. The method used…
Descriptors: Social Media, Science Education, Learning Processes, Research Reports
Yara C. Almanza-Arjona; Juan C. Durán-Álvarez; Ernesto Fernández-Urtusástegui; Claudia S. Castrejón-Perezyera – Journal of Chemical Education, 2022
The reaction rate and rate law are chemical kinetics concepts that undergraduate students have difficulty understanding and applying in real life. A further challenge is the overall reaction rate of consecutive reactions. Herein we present a creative teaching practice using the analogy-based approach to exploit the similarities between the…
Descriptors: Logical Thinking, Kinetics, COVID-19, Pandemics
Thompson, JaCoya; Arastoopour Irgens, Golnaz – Journal of Statistics and Data Science Education, 2022
Data science is a highly interdisciplinary field that comprises various principles, methodologies, and guidelines for the analysis of data. The creation of appropriate curricula that use computational tools and teaching activities is necessary for building skills and knowledge in data science. However, much of the literature about data science…
Descriptors: Data Analysis, Middle School Students, Statistics Education, Student Centered Learning
Yunze He; Meiyou Ding; Min Liu; Leyang Wu; Zheyuan Liu; Haiyan Guo; Hongjin Wang – International Review of Research in Open and Distributed Learning, 2024
Sensing and Detection Technology is a core course in engineering specialties. Traditional sensor teaching methods have obvious deficiencies in cultivating students' ability. To better foster students' comprehensive qualities, this study explored a 4D1P (Four Dimensions and One Penetration) teaching mode. We independently developed an industrial…
Descriptors: Engineering Education, Engineering Technology, Teaching Methods, Student Centered Learning
Kyle M. D. Reyes; Kyla Bruce; Shegufta Shetranjiwalla – Journal of Chemical Education, 2023
Chemistry students are passionate about using their learning to contribute toward a sustainable future, yet they feel unprepared to make green and sustainable practical decisions informed by industry-relevant tools. Most green chemistry metrics are mass-based, which do not estimate environmental impact or help address global socioeconomic…
Descriptors: Chemistry, Decision Making Skills, Sustainable Development, Computer Software
Wang, Sabrina Luxin; Zhang, Anna Yinqi; Messer, Samuel; Wiesner, Andrew; Pearl, Dennis K. – Journal of Statistics and Data Science Education, 2021
This article describes a suite of student-created Shiny apps for teaching statistics and a field test of their short-term effectiveness. To date, more than 50 Shiny apps and a growing collection of associated lesson plans, designed to enrich the teaching of both introductory and upper division statistics courses, have been developed. The apps are…
Descriptors: Student Centered Learning, Teaching Methods, Statistics Education, Introductory Courses
Aliyu, Jaafaru; Osman, Sharifah; Kumar, Jeya Amantha; Jamil, Mohd Ridhuan Mohd – Journal of Technology and Science Education, 2023
In the 21st century, teaching and learning mathematics courses witness significant expansion and development of technology use, which creates a shift from teacher-centred to student-centred learning engagement. Student engagement (SE) faces many challenges of poor performance and student difficulty in solving simultaneous equations involving…
Descriptors: Learning Strategies, Learner Engagement, Mathematics Education, Student Centered Learning
Tian, Jing; Wang, Yiheng; Ren, Chang; Lei, Yingzhe – Scholarship and Practice of Undergraduate Research, 2022
Undergraduate research experience is the process where undergraduates contribute to the development of a subject field through their inquiry-based learning (IBL). IBL is a student-centered learning strategy. Students work as professional scientists do, through inquiry. This article presents approaches to IBL and practices of an instructor from…
Descriptors: Foreign Countries, Undergraduate Students, Student Research, Inquiry
Dressman, Mark; Lee, Ju Seong; Perrot, Laurent – John Wiley & Sons, Inc, 2023
"English Language Learning in the Digital Age" is a comprehensive introduction to the theoretical background and real-world application of IDLE (Informal Digital Learning of English). Designed for teachers and future teachers preparing to teach English as a second or other language, this highly practical guide focuses on incorporating…
Descriptors: English Language Learners, English (Second Language), Language Teachers, Student Centered Learning
Portela, Carlos dos Santos; Vasconcelos, Alexandre Marcos Lins de; Oliveira, Sandro Ronaldo Bezerra; Souza, Mauricio Ronny de Almeida – Informatics in Education, 2021
The software industry is not satisfied with the preparation level of newly graduated professionals in Computing undergraduate courses. There is a predominance of traditional approaches to the Software Engineering (SE) teaching which proved to be inefficient, because they focus on the content from the professor's viewpoint. This research aims to…
Descriptors: Teaching Methods, Computer Science Education, Computer Software, Engineering Education
Pattra Suansokchuak; Pallop Piriyasurawong – Higher Education Studies, 2025
This article aims to present a new educational model that integrates engineering learning with design thinking via a cloud ecosystem to enhance digital intelligence for undergraduate students. This approach utilizes user-centered problem-solving to foster innovation and collaborative learning. The educational environment can adapt to 21st-century…
Descriptors: Design, Thinking Skills, Engineering Education, Undergraduate Students