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Tseng, Kuo-Hung; Chang, Chi-Cheng; Lou, Shi-Jer – Interactive Learning Environments, 2012
This study aims to explore how high school students collaboratively solve problems in a web problem-based learning (WPBL) system in an 8-week digital logic course using discourse analysis. Employing in-depth interviews, this study also investigated the students' attitudes toward the WPBL system. The number of teaching assistants' responses had a…
Descriptors: Foreign Countries, Web Based Instruction, Computer Assisted Instruction, Internet
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Lim, Wei-Ying; So, Hyo-Jeong; Tan, Seng-Chee – Interactive Learning Environments, 2010
While the growing prevalence of Web 2.0 in education opens up exciting opportunities for universities to explore expansive, new literacies practices, concomitantly, it presents unique challenges. Many universities are changing from a content delivery paradigm of eLearning 1.0 to a learner-focused paradigm of eLearning 2.0. In this article, we…
Descriptors: Models, Internet, Electronic Learning, Technology Uses in Education
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Casquero, Oskar; Portillo, Javier; Ovelar, Ramon; Benito, Manuel; Romo, Jesus – Interactive Learning Environments, 2010
Universities can offer eLearning 2.0 tools and services to learners while obtaining clear benefits from releasing the control over some learning content. This means a shift from the institution centred and monolithic model of traditional virtual learning environments (VLEs) to a more heterogeneous and open model. This article tries to plot an…
Descriptors: Web Sites, Learning Processes, Internet, Client Server Architecture
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Brown, Stephen – Interactive Learning Environments, 2010
This paper reflects on the current position of virtual learning environments (VLEs) in universities and speculates about likely future directions for e-learning. Using accepted models of technology innovation and looking at current Web trends, it considers the extent to which e-learning is truly embedded in institutions, how Web 2.0 is being used…
Descriptors: Electronic Learning, Higher Education, Educational Technology, Internet
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Lubliner, David; Widmeyer, George; Deek, Fadi P. – Interactive Learning Environments, 2009
The objective of this study was to determine whether there was a quantifiable improvement in learning outcomes by integrating course materials in a 4-year baccalaureate program, utilizing a knowledge repository with a conceptual map that spans a discipline. Two new models were developed to provide the framework for this knowledge repository. A…
Descriptors: Constructivism (Learning), Concept Mapping, Focus Groups, Information Systems
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Olaniran, Bolanle A. – Interactive Learning Environments, 2009
This article explores Web 2.0 in interactive learning environments. Specifically, the article examines Web 2.0 as an interactive learning platform that holds potential, but is also limited by learning styles and cultural value preferences. The article explores the issue of control from both teacher and learner perspectives, and in particular the…
Descriptors: Learner Controlled Instruction, Cognitive Style, Values, Cultural Influences
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So, Hyo-Jeong; Seow, Peter; Looi, Chee Kit – Interactive Learning Environments, 2009
This article examines the potential of mobile computing and Web 2.0 technology to support knowledge building in formal and informal settings. Desktop-based knowledge building tools have limited affordances of supporting one-to-one access, learning "in situ," and seamless integration in and out of school environments. In this initial…
Descriptors: Electronic Learning, Urban Schools, Foreign Countries, Grade 4
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Jovanovic, Jelena; Gasevic, Dragan; Torniai, Carlo; Bateman, Scott; Hatala, Marek – Interactive Learning Environments, 2009
Today's technology-enhanced learning practices cater to students and teachers who use many different learning tools and environments and are used to a paradigm of interaction derived from open, ubiquitous, and socially oriented services. In this context, a crucial issue for education systems in general, and for Intelligent Learning Environments…
Descriptors: Models, Interaction, Educational Technology, Design Requirements