| Exploring an epidemic in an e-science environment |
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Communications of the ACM
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Volume 48 , Issue 9 (September 2005)
table of contents
Special issue: RFID
Pages: 109 - 114
Year of Publication: 2005
ISSN:0001-0782
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Author
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Hai Zhuge
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Chinese Academy of Sciences, Beijing, China
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Downloads (6 Weeks): 6, Downloads (12 Months): 63, Citation Count: 3
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ABSTRACT
Rules of bio-epidemic and e-epidemic inspire scientists to create a live, scalable interconnected environment for effectively managing situations in nature, society, and the digital virtual world.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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Ebel, H., Mielsch, L.-I., and Bornholdt, S. Scale-free topology of e-mail networks. Physical Rev. 66, (2002).
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Kleinberg, J. Navigation in a small world. Nature 406 (2000), 845.
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Kleinberg, J. and Lawrence, S. The structure of the Web. Science 294, 30 (2001), 1849--1850.
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Lipsitch, M. et al. Transmission dynamics and control of Severe Acute Respiratory Syndrome. Science 300, (June 2003), 1966--1970.
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Zhuge, H. The Knowledge Grid. World Scientific, Singapore, 2004.
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