This essay responds to the contribution of Volny Fages and Virginia Albe, in this volume, to the field of research in science education, and places it in the context of the plethora of government and industry policy documents calling for more Science, Technology, Engineering and Mathematics (STEM) education in schools and universities and the tension between these and students' declining interest in studying STEM subjects. It also draws attention to the parallels between the silences around sociopolitical issues in government policies and curriculum related to STEM, including nanoscience, and those found with respect to environmental education two decades ago, and relates these to the resurgence of a scientific rationalist approach to ...
This chapter traces the development of STEM advocacy as a globalizing modernist discourse based in n...
In the popular imagination, science and technology are often seen as fields of knowledge production ...
STEM (Science, Technology, Engineering, and Mathematics) areas are integral content disciplines in a...
In response to society’s expanding uses of technology, it is clear that the goals and contexts of sc...
Proposals for science, technology, engineering and mathematics to be presented in the secondary curr...
In this article, we outline the key principles of education for sustainability (EfS) that enable us ...
There is little debate that protecting eco-systems and sustaining the environment is important, crit...
STEM graduates operate in workplaces and societies reshaped by advancements in AI, interdisciplinary...
There is now a plethora of writing around science, technology, engineering, and mathematics (STEM) e...
When we suggested, almost two years ago, the idea of a special edition of this journal related to ST...
Both the concept of sustainable development and the nature of education for sustainable development ...
In this paper I make the case to open for critical scrutiny the purpose of STEM education policy in ...
For over two decades, Science, Technology, Engineering and Mathematics (STEM) education in Australia...
STEM in its multiple forms (STEAM, STEMM) has been presented as a solution for many of the world’s p...
This narrative essay describes a project in an urban sixth grade science class that began as an effo...
This chapter traces the development of STEM advocacy as a globalizing modernist discourse based in n...
In the popular imagination, science and technology are often seen as fields of knowledge production ...
STEM (Science, Technology, Engineering, and Mathematics) areas are integral content disciplines in a...
In response to society’s expanding uses of technology, it is clear that the goals and contexts of sc...
Proposals for science, technology, engineering and mathematics to be presented in the secondary curr...
In this article, we outline the key principles of education for sustainability (EfS) that enable us ...
There is little debate that protecting eco-systems and sustaining the environment is important, crit...
STEM graduates operate in workplaces and societies reshaped by advancements in AI, interdisciplinary...
There is now a plethora of writing around science, technology, engineering, and mathematics (STEM) e...
When we suggested, almost two years ago, the idea of a special edition of this journal related to ST...
Both the concept of sustainable development and the nature of education for sustainable development ...
In this paper I make the case to open for critical scrutiny the purpose of STEM education policy in ...
For over two decades, Science, Technology, Engineering and Mathematics (STEM) education in Australia...
STEM in its multiple forms (STEAM, STEMM) has been presented as a solution for many of the world’s p...
This narrative essay describes a project in an urban sixth grade science class that began as an effo...
This chapter traces the development of STEM advocacy as a globalizing modernist discourse based in n...
In the popular imagination, science and technology are often seen as fields of knowledge production ...
STEM (Science, Technology, Engineering, and Mathematics) areas are integral content disciplines in a...