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McKnight, Lucinda – Changing English: Studies in Culture and Education, 2021
With artificial intelligence (AI) now producing human-quality text in seconds via natural language generation, urgent questions arise about the nature and purpose of the teaching of writing in English. Humans have already been co-composing with digital tools for decades, in the form of spelling and grammar checkers built into word processing…
Descriptors: Robotics, Artificial Intelligence, Writing (Composition), Writing Instruction
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Blackley, Susan; Howell, Jennifer – Australian Journal of Teacher Education, 2019
In this paper, we use our qualitative research notes and observations to portray a model for integrated STEM education and summarise primary school students' typical and recurring ways in which they engaged with each new robot. The purpose of this paper is two-fold: first, to unpack key elements of the Australian Curriculum: Technologies in order…
Descriptors: STEM Education, Robotics, Teaching Methods, Programming
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Berson, Ilene R.; Murcia, Karen; Berson, Michael J.; Damjanovic, Victoria; McSporran, Virginia – Kappa Delta Pi Record, 2019
Drawing on data from preschools in Australia and the United States, the authors highlight strategies to help teachers demystify the process of engaging young learners with tangible technologies and showcase how robotic manipulatives serve as catalysts for peer collaboration, socio-emotional development, and creative problem solving.
Descriptors: Foreign Countries, Preschool Teachers, Preschool Education, Robotics
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Vatalis, Emilia – Australian Primary Mathematics Classroom, 2018
This article explores how the use of digital devices such as fitness trackers, robotic toys and handheld mobile devices may be used by teachers to enhance student learning in geometric reasoning. It provides teachers with specific examples that encompass current pedagogy and practice to discuss the benefits of using these mobile devices within a…
Descriptors: Educational Technology, Technology Uses in Education, Handheld Devices, Telecommunications
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Bragg, Leicha A.; Koch, Jessica; Willis, Ashley – Australian Primary Mathematics Classroom, 2017
One way to heighten students' interest in the classroom is by personalising tasks. Through designing Robot Bioglyphs students are able to explore personalised data through a creative and engaging process. By understanding, producing and interpreting data, students are able to develop their statistical literacy, which is an essential skill in…
Descriptors: Teaching Methods, Statistics, Student Motivation, Foreign Countries
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Attard, Catherine – Australian Primary Mathematics Classroom, 2012
In this article, the author explores the value of using simple robotics such as BeeBots and ProBots to enhance the teaching and learning of mathematics in the primary classroom. Before making the decision to use such technologies, it is important that they be evaluated in terms of their affordances and constraints. In other words, teachers need to…
Descriptors: Robotics, Grade 4, Mathematics Achievement, Teaching Methods
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Maud, Ian – Teaching Science, 2008
Teaching Robotics in the classroom involves the use of different strategies to a conventional classroom but yields exceptional outcomes: in most cases students are teaching themselves and may not even realise it! This is "learning by stealth" and produces effective knowledge. Students also develop many additional and complementary skills…
Descriptors: Robotics, Teaching Methods, Skill Development, Science Instruction
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Anderson, Neil – Education in Rural Australia, 2009
This paper and presentation reviews the collective opinion of key Australian researchers concerning the emerging technologies most likely to have a significant impact on learning and teaching in regional, rural and remote areas. It then draws on the conclusions of the Horizon Report (2008) concerning key ICT drivers likely to influence…
Descriptors: Influence of Technology, Rural Education, Information Technology, Computer Uses in Education
Social and Labour Bulletin, 1983
A series of articles looks at computerization and unions in Australia, France, and India; bargaining agreements about technological innovation in India, the United Kingdom, and the United States; and the effects of technology on the labor force in the Federal Republic of Germany, Japan, and the United States. (SK)
Descriptors: Automation, Employment Patterns, Job Layoff, Labor Needs