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Science / Developmental biology / Pattern formation / Rayleigh–Bénard convection / Bifurcation theory / Mathematical and theoretical biology / Chaos theory / Heteroclinic cycle / Dynamical systems theory / Dynamical systems / Convection / Systems theory


Final 0506 Quark 7 Annual Report:0506 draft 5.qxd.qxd
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Document Date: 2007-01-12 05:04:14


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City

Cambridge / Houston / Leeds / Nottingham / Surrey / /

Company

Coupled Cell Networks / Coupled Systems / Leverhulme Trust / /

Country

Germany / France / Russia / United States / United Kingdom / /

Facility

Coupled Cell Networks’ Institute of Advanced Studies / Isaac Newton Institute / Giant’s Causeway / Newton Institute / University of Surrey / University of Bayreuth / /

IndustryTerm

symmetry / Approximate quasipattern solution / driven pattern forming systems / experimental systems / cell networks / reactiondiffusion systems / satellite workshop / extended systems / theoretical tools / protein signalling networks / quasiperiodic solutions / pattern-forming systems / symmetric systems / cell systems / higherdimensional dynamical systems / disparate systems / related systems / classic systems / nonlinear systems / excitable media / oscillator networks / dielectric gas discharge experiments / satellite meeting / granular media / interactive software / steady solutions / dynamical systems / /

Organization

US Air Force office of Scientific Research / EPSRC / London Mathematical Society / University of Surrey / University of Bayreuth / Isaac Newton Institute / Coupled Cell Networks’ Institute of Advanced Studies / EPSRC and the Pattern Formation in Large Domains S Wilkinson Participants / US office of Naval Research Global / Newton Institute / /

Person

Lorenz Kramer / Marie Curie / Knobloch / /

Position

feed-forward / Porter / /

ProgrammingLanguage

EC / R / /

RadioStation

Large Domains AM / S Wilkinson AM / /

Technology

neuroscience / dielectric / simulation / /

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