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Applied mathematics / Electronics / Adder / Binary logic / Computer arithmetic / Z1 / Flip-flop / DNA computing / Natural computing / Computing / Theoretical computer science / Logic gates


Document Date: 2014-09-03 02:36:48


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Company

S0 B HA A B S Co / ACS / Manchester University Press / E 10 D A B CLK Co FA C / /

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Facility

Computer Engineering University of Minnesota / /

IndustryTerm

genetic regulatory networks / chemical systems / steady-state solutions / chemical reactions / transient solution / chemical computation / abstract chemical reaction / biochemical systems / cellular systems / communications using engineering / finite stochastic chemical reaction networks / signal processing operations / biological systems / chemical concentrations / regulatory networks / chemical kinetics / signal processing / biochemical reaction networks / higher-order cellular information processing / electronic systems / steady-state solution / molecular systems / abstract molecular reaction network / digit-serial signal processing architectures / gene networks / energy / engineering genetic regulatory networks / /

Organization

National Science Foundation / MIT / Keshab K. Parhi Department of Electrical / National Academy of Sciences / University of Minnesota / /

Person

F. C. Simmel / Marc D. Riedel / A. J. Turberfield / B. Yurke / Hua Jiang / A. P. Mills / Jr / J. Neumann / /

Position

General / /

PublishedMedium

Proceedings of the National Academy of Sciences / PLoS ONE / Journal of Molecular Biology / Journal of Theoretical Biology / IEEE Transactions on Information Theory / Natural Computing / Archive for Rational Mechanics and Analysis / Journal of The Royal Society Interface / Molecular Systems Biology / /

Technology

cancer detection / Directed evolution / gene expression / simulation / integrated circuit / /

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