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The Lorenz Attractor, a classical mathematical model
Located in Exposures / The Lorenz Attractor, a classical mathematical model
The Lorenz Attractor, a classical mathematical model
Located in Exposures / The Lorenz Attractor, a classical mathematical model
The Lorenz Attractor, a classical mathematical model
Located in Exposures / The Lorenz Attractor, a classical mathematical model
The Lorenz Attractor, a classical mathematical model
Located in Exposures / The Lorenz Attractor, a classical mathematical model
A Dynamic Model of the Cardiac Ventricular Action Potential I. Simulations of Ionic Currents and Concentration Changes
A Dynamic Model of the Cardiac Ventricular Action Potential I. Simulations of Ionic Currents and Concentration Changes
Located in Exposures / Luo, Rudy, 1994
A Model For Circadian PER Oscillations In Drosophila
Located in Exposures / Dependence of the period on the rate of protein degradation in minimal models for circadian oscillations
Arresting the mitotic oscillator and the control of cell proliferation: insights from a cascade model for cdc2 kinase activation
Located in Exposures / Arresting the mitotic oscillator and the control of cell proliferation: insights from a cascade model for cdc2 kinase activation
Latency correlates with period in a model for signal-induced Ca2l oscillations based on Ca"2-induced Ca2+ release
Located in Exposures / Latency correlates with period in a model for signal-induced Ca2l oscillations based on Ca"2-induced Ca2+ release
Modeling the mammalian circadian clock: sensitivity analysis and multiplicity of oscillatory mechanisms
Modeling the mammalian circadian clock: sensitivity analysis and multiplicity of oscillatory mechanisms
Located in Exposures / Leloup, Goldbeter, 2004
Arresting the mitotic oscillator and the control of cell proliferation: insights from a cascade model for cdc2 kinase activation
Located in Exposures / Arresting the mitotic oscillator and the control of cell proliferation: insights from a cascade model for cdc2 kinase activation