Mathematical Modeling in Bioscience: Theory and Applications: Advanced Studies in Complex Systems
Editat de Hemen Duttaen Limba Engleză Paperback – apr 2025
- Provides key concepts for advanced mathematical methods for modeling in bioscience
- Includes statistical, delay, random, and stochastic mathematical models
- Focuses on broader aspects of mathematical models in bioscience
- Provides the readers with several types of dynamic representative applications
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Specificații
ISBN-13: 9780443154454
ISBN-10: 0443154457
Pagini: 300
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Seria Advanced Studies in Complex Systems
ISBN-10: 0443154457
Pagini: 300
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Seria Advanced Studies in Complex Systems
Cuprins
1. Analysis of the Impact of Time Delay Incorporation in Mathematical Models of Cellular Population Dynamic
2. Alternatives food for predators: Elucidating their impact on a predation model with Allee effect on prey
3. Modeling and analysis of an eco-epidemiological model with Caputo-Fabrizio derivative
4. The Topp-Leone-Exponentiated Half Logistic-Generalized-G Family of Distributions with Applications
5. A mathematical model for the dynamics of Visceral Leishmaniasis disease with time delay
6. Fractalization through stochasticization processes in epileptic dynamics
7. Mathematical Model of Alzheimer Disease with Nonlocal and Nonsingular derivative
8. From Bubble Nucleation to Oscillatory Denaturation: Understanding Complex DNA Dynamics through Nonlinear Modeling
9. An inertial projective Mann algorithm for solving split equilibrium problems with application to Parkinson’s disease screening
2. Alternatives food for predators: Elucidating their impact on a predation model with Allee effect on prey
3. Modeling and analysis of an eco-epidemiological model with Caputo-Fabrizio derivative
4. The Topp-Leone-Exponentiated Half Logistic-Generalized-G Family of Distributions with Applications
5. A mathematical model for the dynamics of Visceral Leishmaniasis disease with time delay
6. Fractalization through stochasticization processes in epileptic dynamics
7. Mathematical Model of Alzheimer Disease with Nonlocal and Nonsingular derivative
8. From Bubble Nucleation to Oscillatory Denaturation: Understanding Complex DNA Dynamics through Nonlinear Modeling
9. An inertial projective Mann algorithm for solving split equilibrium problems with application to Parkinson’s disease screening