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Sara Capecchi; Antonio Lieto; Federica Patti; Ruggero G. Pensa; Amon Rapp; Fabiana Vernero; Sandra Zingaro – IEEE Transactions on Learning Technologies, 2024
The amount of news on the web often confuses the ideas of the reader, who struggles to disentangle information that is sometimes contradictory and difficult to decipher. In the face of such an articulated scenario, the role played by schools is absolutely central: the development of critical thinking in young people (and by extension in their…
Descriptors: Middle School Students, Gamification, Social Media, Learning Activities
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McKee, Connor; Ntokos, Konstantinos – Research in Learning Technology, 2022
Microlearning, in which lecture recordings are segmented into parts, saw renewed focus as a means of maintaining student engagement amid the challenging conditions of the COVID-19 pandemic. While many institutions shifted to remote provision with segmented lecture recordings, there is a lack of consensus about the length that these segments should…
Descriptors: Learning Activities, Electronic Learning, Learner Engagement, Higher Education
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Kulmala, Kimmo; Kokkonen, Tommi; Kontro, Inkeri – Physics Education, 2021
Active learning yields better learning outcomes than traditional, lecture-based teaching. Common approaches in large lecture courses are activating elements during the lectures and warm-up activities using online learning environments. However, implementing warm-up exercises, on which students work on by themselves makes formative feedback…
Descriptors: Feedback (Response), Active Learning, Physics, Science Instruction
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Esterhazy, Rachelle – Assessment & Evaluation in Higher Education, 2018
Most research on feedback has paid limited attention to the role of disciplines and their relational dynamics. This article addresses this limitation by offering a conceptualisation of feedback as a relational process that emerges through feedback encounters shaped by the educational and professional practices of the discipline. Using data from a…
Descriptors: Feedback (Response), Student Evaluation, Undergraduate Students, College Faculty
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Zureick, Andrew H.; Burk-Rafel, Jesse; Purkiss, Joel A.; Hortsch, Michael – Anatomical Sciences Education, 2018
New instructional technologies have been increasingly incorporated into the medical school learning environment, including lecture video recordings as a substitute for live lecture attendance. The literature presents varying conclusions regarding how this alternative experience impacts students' academic success. Previously, a multi-year study of…
Descriptors: Video Technology, Outcomes of Education, Medical Students, Academic Achievement
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Scovotti, Carol – Marketing Education Review, 2016
This article reviews the experiences of a flipped classroom approach in a marketing capstone course. Students completed readings, watched lecture videos, took a quiz, and submitted a short assignment for 10 course modules. While a few minutes were devoted to clarifying confusion from lecture topics, class time was used for experiential-learning…
Descriptors: Educational Technology, Technology Uses in Education, Video Technology, Homework
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Lucke, Terry; Dunn, Peter K.; Christie, Michael – European Journal of Engineering Education, 2017
This case study trialled the introduction of a student-response system (Top Hat) in a third-year engineering Fluid Mechanics course (n = 44) to improve student engagement, motivation and cognition. It was recognised that for the potential benefits of student-response systems (SRSs) to be fully realised, more time must be allocated for student…
Descriptors: Blended Learning, Educational Technology, Homework, Technology Uses in Education
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Fautch, Jessica M. – Chemistry Education Research and Practice, 2015
The flipped classroom is a pedagogical approach that moves course content from the classroom to homework, and uses class time for engaging activities and instructor-guided problem solving. The course content in a sophomore level Organic Chemistry I course was assigned as homework using video lectures, followed by a short online quiz. In class,…
Descriptors: Organic Chemistry, Science Instruction, Teaching Methods, Educational Technology
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Saterbak, Ann; Volz, Tracy; Wettergreen, Matthew – Advances in Engineering Education, 2016
Faculty at Rice University are creating instructional resources to support teaching first-year engineering design using a flipped classroom model. This implementation of flipped pedagogy is unusual because content-driven, lecture courses are usually targeted for flipping, not project-based design courses that already incorporate an abundance of…
Descriptors: Engineering Education, Educational Technology, Technology Uses in Education, Teaching Methods
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Fryling, Meg; Yoder, Robert; Breimer, Eric – Information Systems Education Journal, 2016
While some research has suggested that video lectures are just as effective as in-person lectures to convey basic information to students, not everyone agrees that the flipped classroom model is an effective way of educating students. This research explores traditional, semi-flipped and fully-flipped classroom models by comparing three sections of…
Descriptors: Educational Technology, Technology Uses in Education, Introductory Courses, Programming
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Witecki, Gwendolyn; Nonnecke, Blair – Journal of Information Technology Education: Research, 2015
Universities have experienced increases in technology ownership and usage amongst students entering undergraduate programs. Almost all students report owning a mobile phone and many students view laptops and tablets as educational tools, though they also report using them for nonacademic activities during lectures. We explored the relationship…
Descriptors: Lecture Method, Handheld Devices, Laptop Computers, Learner Engagement
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Nogaj, Luiza A. – Journal of College Science Teaching, 2013
This article describes the conversion of a lecture-based molecular biology course into an active learning environment in a studio classroom. Specific assignments and activities are provided as examples. The goal of these activities is to involve students in collaborative learning, teach them how to participate in the learning process, and give…
Descriptors: College Science, Active Learning, Molecular Biology, Science Instruction
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Chen, Gwo-Dong; Nurkhamid; Wang, Chin-Yeh; Yang, Su-Hang; Lu, Wei-Yuan; Chang, Chih-Kai – Interactive Learning Environments, 2013
This study proposes a platform to provide a near-authentic environment, context, and situation for task-based learning. The platform includes two projection screens (a vertical and a horizontal screen) combined for situated or authentic learning. The horizontal screen extends the vertical screen scene to form a space for learning activities and…
Descriptors: Foreign Countries, English (Second Language), Second Language Instruction, Pretests Posttests
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Linn, Marcia C.; Chiu, Jennifer – Research & Practice in Assessment, 2011
High-stakes tests take time away from valuable learning activities, narrow the focus of instruction, and imply that science involves memorizing details rather than understanding the natural world. Current tests lead precollege instructors to postpone science inquiry activities until after the last standardized test is completed--often during the…
Descriptors: Science Education, Lecture Method, Student Evaluation, Concept Mapping
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Price, Edward; Simon, Beth – Physics Teacher, 2009
Digital lecturing systems (computer and projector, often with PowerPoint) offer physics instructors the ability to incorporate graphics and the power to share and reuse materials. But these systems do a poor job of supporting interaction in the classroom. For instance, with digital presentation systems, instructors have limited ability to…
Descriptors: Learning Activities, Physics, Computer Uses in Education, Educational Technology
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