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Accelerated Discovery and Design of Nano-Material Applications in Nuclear Power by Using High Performance Scientific Computing

Accelerated Discovery and Design of Nano-Material Applications in Nuclear Power by Using High Performance Scientific Computing

Liviu Popa-Simil
Copyright: © 2015 |Pages: 36
ISBN13: 9781466674615|ISBN10: 146667461X|EISBN13: 9781466674622
DOI: 10.4018/978-1-4666-7461-5.ch004
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MLA

Popa-Simil, Liviu. "Accelerated Discovery and Design of Nano-Material Applications in Nuclear Power by Using High Performance Scientific Computing." Research and Applications in Global Supercomputing, edited by Richard S. Segall, et al., IGI Global, 2015, pp. 83-118. https://doi.org/10.4018/978-1-4666-7461-5.ch004

APA

Popa-Simil, L. (2015). Accelerated Discovery and Design of Nano-Material Applications in Nuclear Power by Using High Performance Scientific Computing. In R. Segall, J. Cook, & Q. Zhang (Eds.), Research and Applications in Global Supercomputing (pp. 83-118). IGI Global. https://doi.org/10.4018/978-1-4666-7461-5.ch004

Chicago

Popa-Simil, Liviu. "Accelerated Discovery and Design of Nano-Material Applications in Nuclear Power by Using High Performance Scientific Computing." In Research and Applications in Global Supercomputing, edited by Richard S. Segall, Jeffrey S. Cook, and Qingyu Zhang, 83-118. Hershey, PA: IGI Global, 2015. https://doi.org/10.4018/978-1-4666-7461-5.ch004

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Abstract

The accelerated development of nano-sciences and nano-material systems and technologies is made possible through the use of High Performance Scientific Computing (HPSC). HPSC exploration ranges from nano-clusters to nano-material behavior at mezzo-scale and specific macro-scale products. These novel nano-materials and nano-technologies developed using HPSC can be applied to improve nuclear devices' safety and performance. This chapter explores the use of HPSC.

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