19,555 research outputs found

    Technology Enhanced Learning in Psychology: Current Direction and Perspectives

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    Contemporary use of digital technologies has rapidly transformed the learning and teaching environment within higher education (Beetham and White, 2013; Jordan, 2013). When used effectively, technology can improve the usefulness and quality of feedback to support learning and create unique opportunities for active, independent learning (Trapp et al., 2011; Higher Education Academy, 2012; UoW, 2015). However, identifying appropriate technology and effectively embedding this within teaching practices can be challenging. Here we outline the way in which Psychology staff at the University of Worcester have used technology to enhance the student learning experience in four key areas: promoting engagement in large groups, enhancing participation in research, teaching via blended learning and fostering a learning community. We hope that sharing our experiences will be of value to colleagues interested in using technology for similar purposes

    Design approaches in technology enhanced learning

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    Design is a critical to the successful development of any interactive learning environment (ILE). Moreover, in technology enhanced learning (TEL), the design process requires input from many diverse areas of expertise. As such, anyone undertaking tool development is required to directly address the design challenge from multiple perspectives. We provide a motivation and rationale for design approaches for learning technologies that draws upon Simon's seminal proposition of Design Science (Simon, 1969). We then review the application of Design Experiments (Brown, 1992) and Design Patterns (Alexander et al., 1977) and argue that a patterns approach has the potential to address many of the critical challenges faced by learning technologists

    Technology-enhanced learning

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    Published ArticleThe aim of the paper is, firstly, to deal with the reasons for the sudden increase in interest in the use of technology in higher education. The main focus of the paper will be on 18 issues that must be taken into account in successfully integrating technology into the curriculum. These include, among others, the impact of pedagogy on the integration of technology and the needs of the learners. The limitations of certain forms of technology in the South African situation will be discussed

    Joint response to the Royal Society’s call for views: Vision for science and mathematics education 5-19

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    This response has been prepared by a consortium of the leading Technology Enhanced Learning (TEL) research labs in the UK, in collaboration with the UK’s Technology Enhanced Learning research programme and the Association for Learning Technology (ALT)

    Modelling benefits-oriented costs for technology enhanced learning

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    The introduction of technology enhanced learning (TEL) methods changes the deployment of the most important resource in the education system: teachers' and learners' time. New technology promises greater personalization and greater productivity, but without careful modeling of the effects on the use of staff time, TEL methods can easily increase cost without commensurate benefit. The paper examines different approaches to comparing the teaching time costs of TEL with traditional methods, concluding that within-institution cost-benefit modeling yields the most accurate way of understanding how teachers can use the technology to achieve the level of productivity that makes personalisation affordable. The analysis is used to generate a set of requirements for a prospective, rather than retrospective cost-benefit model. It begins with planning decisions focused on realizing the benefits of TEL, and uses these to derive the likely critical costs, hence the reversal implied by a 'benefits-oriented cost model'. One of its principal advantages is that it enables innovators to plan and understand the relationship between the expected learning benefits and the likely teaching costs
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