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Mathematical Modeling of Biological Systems: Geometry, Symmetry and Conservation Laws

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

COVID-19 seasonality; S.I.R. models; mathematical modeling; forced seasonality; confounding variables; uncertainty; Atangana–Baleanu; Caputo; eco-epidemiology; Rosenzweig–MacArthur; epidemic ODE model; COVID-19 spread in Italy; system control and identification; blood microcirculation; ultrafiltration process; vasomotion; Fårhæus–Lindquist effect; type-1 diabetes mellitus; global analysis; β cells; regulatory system; dynamical systems; network optimization; stability analysis; global attractor; relative entropy; information geometry; Voronoi diagram; diffusion process; bivariate probability density function; diameter; polygon area; stand density; predictive microbiology; lactic acid bacteria; batch fermentation; primary mathematical model; bacterial growth; bounded noises; kinetic theory; active particles; statistical mechanics; population dynamics; Fokker–Planck equation; mathematical oncology; ecology; noise induced transitions; systems biology; enzymatic reactions; quadratization; ODE integration

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-2765-9

País de edición

Suiza