Frontiers of Engineering: Reports on Leading Edge by National Academy of Engineering

By National Academy of Engineering

Studies on cutting edge Engineering from the 1999 NAE Symposium on Frontiers of Engineering held October 14-16, 1999, Irvine, California. Softcover.

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1995; Zana, 1996). However, most efforts to control surfactant properties focus on proper choice of the chemical structure of the amphiphilic molecule. The surfactant properties of macromolecules (and hence their ability to selfassemble into functionally interesting motifs) can be controlled with high sensitivity by manipulating molecular architecture without changing the chemical identity of the amphiphilic moieties. In addition to differences in surfactant properties between macromolecules in different architectural classes, subtle variations in an architectural class also lead to significant effects.

Bright, C. Carlier, and T. W. Randolph. 1996. Water-in-carbon dioxide microemulsions: An environment for hydrophiles including proteins. Science 271(5249):624–626. , and B. Smit. 1996. Computer simulations of surfactant structures. Current Opinion in Colloid and Interface Science 1(3):411–415. , K. Esselink, and R. Os. Zana. 1994. Simulating the self-assembly of Gemini (dimeric) surfactants. Science 266(5183):254. Kauffman, S. A. 1993. The Origins of Order: Self-Organization and Selection in Evolution.

Wright. 1997. Probabilistic quorum systems. Pp. , August 21–24, 1997. New York: Association for Computing Machinery. NRC (National Research Council). 1999. Trust in Cyberspace, F. B. Schneider, ed. : National Academy Press. Pittelli, F. , and H. Garcia-Molina. 1989. Reliable scheduling in a TMR database system. ACM Transactions on Computer Systems 7(1):25–60. Reiter, M. K. 1996. Distributing trust with the Rampart toolkit. Communications of the ACM 39(4):71–74. Shrivastava, S. , P. D. Ezhilchelvan, N.

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