236 resultados para cognition and learning

em Deakin Research Online - Australia


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This poster presents research-in-progress into the educational affordances of so-called Web 2.0 sites, services, with a particular emphasis on those applications that involve forms of shared human-machine cognition and that promote public knowledge networking. This research involves reviewing many hundreds of Web 2.0 tools and selecting approximately 50 for further analysis and exploration as learning applications. In doing so, the research will generate examples of unusual affordances provided by Web 2.0; it will also present a more structured categorisation of the kinds of uses and benefits of these tools. This approach is valuable because much current research and analysis of the impact of Web 2.0 on education, particularly higher education, has emphasised a relatively limited array of tools – principally blogs, wikis and social networking services – that offer educators and students opportunities for student-led collaborative work. Such opportunities involve strong emphasis on constructivist pedagogy: students’ interactions with each other, mediated via the Internet, are viewed as the positive benefit which networked learning can provide. However, Web 2.0 is far more than just collaboration, and associated shared self-expression. In particular, Web 2.0 includes many examples of services that take one form of input from a user and, rather than just sharing it with others, enable the transformation of that input into different forms, either as visualisations, maps, or other re-representations. Web 2.0 is also starting to see the development of knowledge-work engines that embody the concept of shared cognition, in which the service and the user cooperate in the production of some final knowledge output or which present to users knowledge that has already been processed more extensively than through simple searching. Web 2.0 is also closely associated with the idea that knowledge work is now networked and distributed; it involves users appropriating, creating and sharing knowledge products in a very public way, far beyond the narrow ‘audience’ of a particular course or program of study. The research presented in this poster will provide, firstly, examples of the Web 2.0 tools which emphasise these additional ways of exploiting the Internet for networked learning; secondly, the research will provide a first iteration of the overarching structure of categories and classifications which can be used to assess any proposed Web 2.0 application in terms of its affordances for learning as knowledge networking. By understanding these technologies, truly collaborative networked learning can be developed that blends with the emerging cultures of online behaviour increasingly common to contemporary student populations.

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The key challenges for achieving flexibility in flexible mode programmes in engineering and technology include: the integration of the explicit and implicit content in potentially disparate and isolated study modules across the whole programme curriculum; ensuring the validity and consistency of policies for granting students advanced standing based on recognition for prior learning and workplace experience; developing learning materials and experiences that cater for a wide and diverse audience, while at the same time offering relevance to the individual student in their own context; creating innovative communication environments that bring remote students into both the directed and the discursive discussion that are an important part of the learning process; and the financial and resourcing sustainability of the development, maintenance and delivery of high quality flexible mode  engineering and technology study programmes.

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This paper presents a brief history of the use of online technologies in the support of teaching and learning in the School of Engineering and Technology at Deakin University, Victoria, Australia. It addresses the following topics: flexible engineering programs at Deakin University; computer-based learning in the School of Engineering and Technology; progression from individual efforts to formal, centralized control of the World Wide Web (Web); the costs of information technology; experiences with grant funded development projects; managing the development of online material; student access and equity; and staff development and cultural change. A sustainable online content development model is proposed to carry the School’s online initiatives in support of teaching and learning activities into the future.

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Constructivism is a wide school of thought and its view on learning has important implications to both teaching and learning. Taking a constructivist view of learning to explain interdisciplinary education may help teachers understand the process of building concepts and learning among students as well as the implementation of assessment tasks. Based on a constructivist view of learning, this paper illustrates the assessment aspect of interdisciplinary learning using concrete examples of students' work collected from the Schools Around the World (SAW) project. SAW is an international project which was established in order to set standards for students' work and to stimulate the sharing of teaching ideas among teachers from nine participating nations or regions, with an aim to promote professional development among teachers. This paper attempts to introduce the background of interdisciplinary learning and its assessment methods and hopes to stimulate professional discussion in this respect among teachers.

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In 1998 the author published a paper entitled ‘Current Issues and limitations in using the Internet for Teaching and Learning’ [1] that acknowledged the new educational possibilities provided by the Internet, while at the same time sought to identify the limitations and related issues of going on-line in education. As predicted, the passage of time and the advancement of technology have ameliorated many of the identified limitations, and, have brought new issues to the fore. This paper re-visits the area of important strategic issues in using the Internet for education, giving an overview of equity and access, infrastructure and costs, copyright and plagiarism, content development, libraries and on-line information access, and other strategic issues. As in the earlier paper, this paper draws on the experiences of the author in conventional and off-campus university teaching in engineering.