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Research from 28 countries highlights the scope and variety of curricular change made possible by educational technology.
This first volume in the International Technology Education Series offers a unique, worldwide collection of national surveys into the developments of Technology Education in the past two decades.
This book brings together the literature in a field which may define the 21st century. Can economic and technological progress continue with educational systems which seem to answer to no one but themselves and which output graduates who can barely read and write and who have only the faintest clue how to use a map? This bibliography provides access via Title, Author and Subject Indexes. Contents: Educational Accountability; Educational Change; Educational Equalisation; Educational Leadership; Educational Planning; Educational Indicates.
This booklet includes the full text of the ISTE Standards for Students, along with the Essential Conditions, profiles and scenarios.
This volume brings together significant international research in technology education by focusing on contemporary postgraduate research, elaborating on the findings with the aim of making the content relevant to researchers, teachers and other potential researchers in the field. The book shares with readers what the research means for classroom teachers through understanding different motivations for teaching technology in schools and observing the model of learning supported by the research. Each chapter in the book includes references to the digital edition of the respective full thesis, allowing readers to consult the research in detail if necessary. This book continues the work done by 2017’s Contemporary Research in Technology Education by the same editors.
In the last decade, programming and computational thinking (CT) have been introduced on a large scale in school curricula and standards all over the world. In countries such as the UK, a new school subject—computing—was created, whereas in countries such as Sweden, programming was included in existing subjects, notably mathematics and technology education. The introduction of programming and CT in technology education implies a particular relationship between programming and technology. Programming is usually performed with technological artefacts—various types of computers—and it can also be seen as a specific branch of engineering. This book analyses the background to and current implementation of programming and computational thinking in a Swedish school technology context, in relation to international developments. The various chapters deal with pertinent issues in technology education and its relation to computers and computing, for example, computational thinking and literacy, teachers’ programming competence, and computational thinking, programming, and learning in technology education. The book includes examples from educational research that could also be used as inspiration for school teaching, teacher education and curriculum development.