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Li Ruijuan; Sarit Srikhao; Nirat Jantharajit – Journal of Education and Educational Development, 2024
This study examines the potential of combining Collaborative Learning (CL) and Active Learning (AL) to enhance vocational students' academic performance and self-motivation. CL fosters teamwork, social interaction, and shared responsibility, cultivating communication, critical thinking, and problem-solving skills essential for modern workplaces.…
Descriptors: Vocational Education, Cooperative Learning, Active Learning, Student Motivation
Amjad Almusaed; Marisol Rico Cortez; Asaad Almssad – International Society for Technology, Education, and Science, 2024
AI is a rapidly advancing technology, especially in education. "Generative AI" is particularly notable for revolutionizing how we teach and learn, prompting a reevaluation of teacher training. Engineering education is at the forefront of pedagogical innovation, enhancing learning tools, and fostering a new educational mindset. This…
Descriptors: Engineering Education, Artificial Intelligence, Computer Software, Educational Change
Clerici-Arias, Marcelo – Journal of Economic Education, 2021
Team-based learning is a powerful collaborative learning technique that can be used effectively in a principles of economics course, although its implementation can be costly for instructors and students alike. The author suggests a series of strategies that can result in a much smoother transition to a fully collaborative classroom. The author…
Descriptors: Economics Education, Cooperative Learning, Introductory Courses, College Instruction
Williams, Mathew L.; Sato, Brian K. – Journal of Learning Spaces, 2021
This study examined instructional shifts associated with teaching in environments optimized for active learning, including how faculty made decisions about teaching and their perceptions of how students responded to those changes. The interviews and subsequent analysis reveal a broad range of course changes, from small modifications of existing…
Descriptors: Active Learning, Educational Environment, Decision Making, College Faculty
Gracyalny, Jennifer R.; Hurtienne, Laura E. – Journal of Learning Spaces, 2023
This study collects perceptions from educators about how pedagogical practices could be transformed for a learner-centered concentration in active learning spaces to support student engagement. Seven participants provide data through a focus group, interviews, and observations. Four main themes are identified: (1) Collaboration and Engagement, (2)…
Descriptors: Student Centered Learning, Active Learning, Learner Engagement, Teaching Methods
Erin Keith; Carolyn Clarke; Allison Tucker – Canadian Journal of Action Research, 2024
Learning spaces in higher education are fraught with colonial barriers such as teacher-centered, front facing, stark, feelingless, and unwelcoming classrooms that diminish students' feelings of well-being. For pre-service teachers, these are also the types of classrooms that they often inherit as they foray into the profession. Three Bachelor of…
Descriptors: Foreign Countries, Preservice Teachers, Preservice Teacher Education, Decolonization
Nachamma Sockalingam; Kenneth Lo; Judy Teo; Cheah Chin Wei; Danny Chow Jiun Jiet; Dorien Herremans; Melvin Lee Ming Jun; Oka Kurniawan; Yixiao Wang; Pey Kin Leong – Discover Education, 2025
Singapore University of Technology and Design (SUTD) is embarking on an educational innovation program called SUTD campusX to support its future of education. SUTD campusX aims to innovate new educational models, technology tools, and pedagogies for a new form of learning called "Cyber-Physical Learning", where the concept is that both…
Descriptors: Educational Trends, Educational Innovation, Educational Practices, Teaching Methods
Wu, Liang Li; Zhu, Edward; Callaghan, Caitlin; Irwin, Derek; Reinsdorf, Dylan; Swanson, Veronica; Zwirn, Austin; Reinkensmeyer, David – Advances in Engineering Education, 2020
To provide a project-based learning experience during the COVID-19 outbreak, we mailed experimental kits to 285 undergraduate students and developed curriculum for a multi-player online robot simulation game. Students successfully achieved cognitive objectives and rated the remote learning experience comparably to the prior-year in-person…
Descriptors: Educational Change, Active Learning, Student Projects, Engineering Education
Gallagher, Hilary; Liang, Jianqiang; Torrisi-Steele, Geraldine; Ramsay, Sylvia – Journal of University Teaching and Learning Practice, 2023
Academics at Griffith university envisioned a complementary learning and supportive relationship could be developed between Bachelor of Information Technology (BAIT) students and Master of Social Work (MSW) students. Discussions between discipline specific staff highlighted that each discipline had strengths and expertise that could assist…
Descriptors: Interdisciplinary Approach, Graduate Study, Graduate Students, Interpersonal Communication
E. K. Bucholz – Biomedical Engineering Education, 2021
In the spring of 2020, brick and mortar colleges had to abruptly adapt to the reality of COVID-19 and transition to entirely online environments in a manner of weeks. This required a rapid (< 2 weeks) acquisition of knowledge and flexibility in using technology, most commonly Zoom. Upon completion of the semester, and after debriefing with…
Descriptors: Online Courses, Educational Environment, Biomedicine, Engineering Education
Instructional Change and Student Outcomes within Collaborative Problem-Solving Learning Environments
James Oren – ProQuest LLC, 2022
More than 85% of federally funded research initiatives fail to produce significant positive results (Coalition for Evidence-Based Policy, 2013). Moreover, of the less than 15% that do yield positive results, none show replicability outside of their original setting (Pogrow, 2017; Kizilcec et al., 2020). Mixed results are present in even the most…
Descriptors: Cooperative Learning, Problem Solving, Educational Change, Teaching Methods
Kim, Jeanne – Canadian Journal of Learning and Technology, 2022
Industry 4.0 advancements in technology are creating a dynamic and fast changing world that affects how we live and work. Educators need to rethink existing teaching approaches to better prepare learners for future careers that Industry 4.0 will create. The World Economic Forum defined a new education model, called Education 4.0, which contains…
Descriptors: Self Determination, Student Centered Learning, Higher Education, Educational Change
Lange, Karin E.; Deiger, Megan; Bourque, Matthew; Tingley, Peter; Peters, Emily; Jordan, Laurie E.; Giaquinto, Anthony – PRIMUS, 2021
In the context of national collaborative efforts to increase the prevalence of active learning strategies in undergraduate precalculus and calculus classrooms, we discuss the context, strategy, and processes used at one university to create change within a mathematics department. We highlight the use of a unified active learning approach and the…
Descriptors: College Mathematics, Mathematics Instruction, Active Learning, Teaching Methods
Joseph-Richard, Paul; Almpanis, Timos; Wu, Qi; Jamil, Mohammad Golam – British Educational Research Journal, 2021
Integration of research into teaching is a major area of interest in the field of higher education. Considerable work has been done on how staff and students view this integration, how it can be achieved in practice and how it might best be researched by scholars. However, relatively little research has considered how research-informed teaching…
Descriptors: Teaching Methods, Evidence Based Practice, Educational Change, Educational Practices
Leigh A. Mutchler; Amy J. Connolly; Daniel E. Rush – Journal of Information Systems Education, 2024
Information systems courses must adapt to meet the unprecedented demand for well-trained information security (InfoSec) professionals, but they cannot competently fill this gap without also ensuring that students are fluent and confident in foundational skills, both technical and behavioral. How to teach behavioral topics in InfoSec management is…
Descriptors: Information Security, Information Science Education, Information Systems, Technological Literacy