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Titlebook: An Invitation to Mathematical Biology; David G Costa,Paul J Schulte Textbook 2023 The Editor(s) (if applicable) and The Author(s), under e

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https://doi.org/10.1007/978-3-663-09726-6n as we shall see next. Typical examples of such growth and decay situations, which are rather exact and appear in most calculus books, are bacteria growth, infectious disease recovery, and radioactive decay (an interested reader may want to check “compound interest” as related to exponential growth
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Donatella della Porta,Louisa Parks in Eq. .. In this chapter, we shall consider a general form of a Discrete Time Model (also called a “Discrete Dynamical System” in mathematics). We will introduce methods for determining the fixed points (values of the population size (.) which do not change for future time steps), and the stabilit
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Die internationale Klimabewegungs. In this chapter, we shall consider a biology application to Population Genetics. The first application will consider wing color in moths in the case where two phenotypes (the outward expression of a trait) are present: moths with white or black wings. Next, we will expand this to a situation wher
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Bürgergesellschaft und Demokratied in the medium, which practically speaking would lead to an eventual leveling of the number of bacteria. In this chapter, we will derive a Continuous Time Model for the phenomenon of logistic growth. Next, we will develop an approach, called phase-line analysis, to find steady states and assess the
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Donatella della Porta,Louisa Parksit, a decidedly unrealistic result from a biological perspective. In a model of exponential growth of a single population, we could approach the similar problem of unlimited growth by adding a term for competition within the population (intraspecific), that term including a carrying capacity. Here,
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Donatella della Porta,Louisa Parksous diseases is likely to be quite enhanced. Therefore, this chapter will provide an introduction to some of the mathematical modeling approaches to the spread and dynamics of infectious diseases among the human population.
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https://doi.org/10.1007/978-3-662-26198-9ght absorbed or radiation emitted at infrared wavelengths), exchange with the air or other fluids in convection, heat conducted between the organism and a physical surface, and energy associated with the evaporation of water through its latent heat of vaporization. In this chapter, we will consider
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