Keyword search (4,163 papers available)

"Persistence" Keyword-tagged Publications:

Title Authors PubMed ID
1 Understanding the environmental fate and risks of organophosphate esters: Challenges in linking precursors, parent compounds, and derivatives Li Z; Chen R; Xing C; Zhong G; Zhang X; Jones KC; Zhu Y; 40845576
CHEMBIOCHEM
2 Multiphase OH Oxidation of Bisphenols: Chemical Transformation and Persistence in the Environment Yu J; Wu B; Peng C; Wentzell J; Wheeler MJ; Osagu JO; Zhang X; Li L; Abbatt JPD; Liggio J; 40569786
CHEMBIOCHEM
3 Strategies to Reduce Uncertainties from the Best Available Physicochemical Parameters Used for Modeling Novel Organophosphate Esters across Multimedia Environments Xing C; Ge J; Chen R; Li S; Wang C; Zhang X; Geng Y; Jones KC; Zhu Y; 40105294
CHEMBIOCHEM
4 A unified stochastic SIR model driven by Lévy noise with time-dependency Easlick T; Sun W; 39027117
MATHSTATS
5 We're building it up to burn it down: fire occurrence and fire-related climatic patterns in Brazilian biomes Diele Viegas LM; Sales L; Hipólito J; Amorim C; Johnson de Pereira E; Ferreira P; Folta C; Ferrante L; Fearnside P; Mendes Malhado AC; Frederico Duarte Rocha C; M Vale M; 36312759
BIOLOGY

 

Title:A unified stochastic SIR model driven by Lévy noise with time-dependency
Authors:Easlick TSun W
Link:https://pubmed.ncbi.nlm.nih.gov/39027117/
DOI:10.1186/s13662-024-03818-3
Publication:Advances in continuous and discrete models
Keywords:Extinctionvy jumpNonlinear transmission and recoveryPersistencePositive global solutionTime-dependencyUnified stochastic SIR model
PMID:39027117 Category: Date Added:2024-07-19
Dept Affiliation: MATHSTATS
1 Centre de recherche du CHU Sainte-Justine, Département de Mathématiques et de Statistique, Université de Montréal, Montreal, Canada.
2 Department of Mathematics and Statistics, Concordia University, Montreal, Canada.

Description:

We propose a unified stochastic SIR model driven by Lévy noise. The model is structural enough to allow for time-dependency, nonlinearity, discontinuity, demography, and environmental disturbances. We present concise results on the existence and uniqueness of positive global solutions and investigate the extinction and persistence of the novel model. Examples and simulations are provided to illustrate the main results.





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