DocumentCode :
3285850
Title :
Helping students to help themselves: case studies from a metacognitive approach to computer learning and teaching
Author :
Phelps, Renata ; Ellis, Allan
fYear :
2002
fDate :
3-6 Dec. 2002
Firstpage :
1035
Abstract :
End-user training in the use of computer software and hardware has become a significant area of professional development in a range of educational, organisational and community contexts. However, technology is developing at such a rapid rate that, if an individual undertakes training in how to use a particular piece of software, that knowledge is likely to be inadequate or out-of-date in a very short period of time. Training contexts that emphasise the centrality of the ´trainer´ or teacher inevitably foster learner dependency. Although such learning contexts may be ´comfortable´ and familiar´ for some students they do not accord with the learning patterns of many ´capable´ computer users. Computer education, which fosters learner independence, holds greater potential for developing life-long, capable computer users in rapidly evolving technology contexts. Three case studies are presented which illustrate the potential of a metacognitive approach to computer learning in ´helping students to help themselves´.
Keywords :
computer aided instruction; computer science education; teaching; community contexts; computer education; computer hardware; computer learning; computer software; educational contexts; end-user training; learner dependency; learner independence; learning patterns; metacognitive approach; organisational contexts; professional development; teaching; Australia; Computer aided software engineering; Computer science education; Educational technology; Employment; Guidelines; Hardware; Particle measurements; Software measurement; Strain measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computers in Education, 2002. Proceedings. International Conference on
Print_ISBN :
0-7695-1509-6
Type :
conf
DOI :
10.1109/CIE.2002.1186143
Filename :
1186143
Link To Document :
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