Matter matters: offloading machine computation to material computation for shape changing interfaces. Yao, L. In Proceedings of the adjunct publication of the 27th annual ACM symposium on User interface software and technology, of UIST'14 Adjunct, pages 29–32, New York, NY, USA, October, 2014. Association for Computing Machinery.
Matter matters: offloading machine computation to material computation for shape changing interfaces [link]Paper  doi  abstract   bibtex   
This paper introduces material computation to offload computing from machine to material, in the process of creating shape-changing output. It contains the explanation on the mechanism of transformation, the concept of material computation, the summary and analysis of literature research within and beyond the HCI field, the interaction loop integrating material computation, and my own practice in material computation technics and applications.
@inproceedings{yao_matter_2014,
	address = {New York, NY, USA},
	series = {{UIST}'14 {Adjunct}},
	title = {Matter matters: offloading machine computation to material computation for shape changing interfaces},
	isbn = {978-1-4503-3068-8},
	shorttitle = {Matter matters},
	url = {https://doi.org/10.1145/2658779.2661170},
	doi = {10.1145/2658779.2661170},
	abstract = {This paper introduces material computation to offload computing from machine to material, in the process of creating shape-changing output. It contains the explanation on the mechanism of transformation, the concept of material computation, the summary and analysis of literature research within and beyond the HCI field, the interaction loop integrating material computation, and my own practice in material computation technics and applications.},
	urldate = {2021-06-15},
	booktitle = {Proceedings of the adjunct publication of the 27th annual {ACM} symposium on {User} interface software and technology},
	publisher = {Association for Computing Machinery},
	author = {Yao, Lining},
	month = oct,
	year = {2014},
	keywords = {hybrid material, machine computation, material computation, shape change output, shape changing interface},
	pages = {29--32},
}

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