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Alexey Kopyl; Yuki Yew; Jian Wern Ong; Thomas Hiscox; Calem Young; Murat Muradoglu; Tuck Wah Ng – Journal of Chemical Education, 2024
Efforts to encourage laboratory automation through student access to and usage of commercial equipment are hampered by prohibitive acquisition costs. Here, an automated liquid handler using manual pipettes was developed to operate on a commercial hobbyist 3D printer at a cost of US $325. Arising from an iterative design process that ensured…
Descriptors: Science Laboratories, Laboratory Equipment, Computer Peripherals, Printing
Ishant Singhal; Guru Ratan Satsangee; Lakshya Bhardwaj; Gaurang S. Sharma; Anand Swarup Chandrakar; Hritav Gupta; Gargi Malik; Bobby Tyagi; Ankit Sahai; Rahul Swarup Sharma – IEEE Transactions on Learning Technologies, 2024
3D-printing (3DP) is a rapidly evolving sector and is advancing at an unmatched pace. Integrating digital-based approaches to disseminate knowledge within institutional curricula is crucial for mainstreaming knowledge. This work explores the development of a virtual lab (VL) for additive manufacturing (AM), using an interactive VL simulator. The…
Descriptors: Computer Peripherals, Printing, Laboratories, Computer Simulation
Knochel, Aaron D.; Meeken, Luke – European Journal of STEM Education, 2021
We review the development of a mobile makerspace platform focused on digital fabrication in particular additive manufacturing (AM) or what is more commonly referred to as 3D printing. We engage in a reflexive analysis of our curriculum development as a part of the iterative process of this design-based research project. We review the component…
Descriptors: Curriculum Development, Manufacturing, Art Education, STEM Education