Abstract: Engineers are expected to function in a highly competitive environment, which demands that projects are developed in increasingly efficient and cost-effective ways, across various disciplines. This trend necessitates multidisciplinary collaboration which requires both traditional engineering skills and so called ‘soft skills’, such as good communicative competences and working cooperatively in teams. In this paper it is described how these skills were developed in the course of the University of Johannesburg’s preparation for participation in the biannual Solar Challenge
© 2023 The Authors. This is an open access article available under a Creative Commons licence. The p...
© Published under licence by IOP Publishing Ltd. The urgency of the formation of competence in the f...
The success of 21st century engineers1 depends on demanding challenges, involving a large scope of s...
Abstract: Engineers are expected to function in a highly competitive environment, which demands that...
Student projects have become an important part of most modern engineering curricula, to provide stud...
The Solar Decathlon is an international student competition requiring university-led interdisciplin...
A major challenge to Australia and New Zealand is the perceived need to develop "knowledge econ...
Engineers are responsible for creative, innovative and adaptive designs that solve challenging tech...
Science, Technology, Engineering and Mathematics (STEM) education projects can provide students at a...
Engineers can make a difference to the challenges of the next decade. However, the skills required b...
Engineers must take a leading role in addressing the challenges of mitigating climate change and ada...
Engineering education is undergoing a restructuring driven by the needs of an increasingly multidisc...
The ability to solve problems with people of diverse backgrounds is essential for engineering gradua...
Involving students in collaborative projects and experiential learning helps develop transversal ski...
In 2007 a group of final-year honours students from the School of Mechanical Engineering at the Univ...
© 2023 The Authors. This is an open access article available under a Creative Commons licence. The p...
© Published under licence by IOP Publishing Ltd. The urgency of the formation of competence in the f...
The success of 21st century engineers1 depends on demanding challenges, involving a large scope of s...
Abstract: Engineers are expected to function in a highly competitive environment, which demands that...
Student projects have become an important part of most modern engineering curricula, to provide stud...
The Solar Decathlon is an international student competition requiring university-led interdisciplin...
A major challenge to Australia and New Zealand is the perceived need to develop "knowledge econ...
Engineers are responsible for creative, innovative and adaptive designs that solve challenging tech...
Science, Technology, Engineering and Mathematics (STEM) education projects can provide students at a...
Engineers can make a difference to the challenges of the next decade. However, the skills required b...
Engineers must take a leading role in addressing the challenges of mitigating climate change and ada...
Engineering education is undergoing a restructuring driven by the needs of an increasingly multidisc...
The ability to solve problems with people of diverse backgrounds is essential for engineering gradua...
Involving students in collaborative projects and experiential learning helps develop transversal ski...
In 2007 a group of final-year honours students from the School of Mechanical Engineering at the Univ...
© 2023 The Authors. This is an open access article available under a Creative Commons licence. The p...
© Published under licence by IOP Publishing Ltd. The urgency of the formation of competence in the f...
The success of 21st century engineers1 depends on demanding challenges, involving a large scope of s...