Selected article for: "differential equation and time evolution"

Author: Noviello, A.; Romeo, F.; De Luca, R.
Title: Time evolution of non-lethal infectious diseases: a semi-continuous approach
  • Cord-id: xcqvfu9h
  • Document date: 2006_5_5
  • ID: xcqvfu9h
    Snippet: A model describing the dynamics related to the spreading of non-lethal infectious diseases in a fixed-size population is proposed. The model consists of a non-linear delay-differential equation describing the time evolution of the increment in the number of infectious individuals and depends upon a limited number of parameters. Predictions are in good qualitative agreement with data on influenza, which is taken to be a representative type of non-lethal infectious disease.
    Document: A model describing the dynamics related to the spreading of non-lethal infectious diseases in a fixed-size population is proposed. The model consists of a non-linear delay-differential equation describing the time evolution of the increment in the number of infectious individuals and depends upon a limited number of parameters. Predictions are in good qualitative agreement with data on influenza, which is taken to be a representative type of non-lethal infectious disease.

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