S-system modelling of endemic infections
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Publication:805528
DOI10.1016/0898-1221(90)90325-EzbMath0728.92019MaRDI QIDQ805528
Eberhard O. (Editor-in-Chief) Voit
Publication date: 1990
Published in: Computers \& Mathematics with Applications (Search for Journal in Brave)
Related Items
Tutorial:S-system analysis of continuous univariate probability distributions ⋮ Biochemical systems theory: a review ⋮ A comparison of variant theories of intact biochemical systems. II: Flux- oriented and metabolic control theories ⋮ Symmetries of \(S\)-systems ⋮ GS-distributions: a new family of distributions for continuous unimodal variables
Uses Software
Cites Work
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- Equivalence between S-systems and Volterra systems
- Recasting nonlinear differential equations as S-systems: a canonical nonlinear form
- Growth equations: A general equation and a survey of special cases
- On the identification of superspreaders for infectious disease
- Identification of silent infections in SIR epidemics
- The effects of asymptomatic attacks on the spread of infectious disease: A deterministic model
- Evaluation of the Noncentral t Distribution with S-Systems
- Efficient Solution of Nonlinear Ordinary Differential Equations Expressed in S-system Canonical Form
- Models for endemic infections with asymptomatic cases. I. One group
- A Suprasystem of Probability Distributions
- Growth of complex systems can be related to the properties of their underlying determinants
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