Gender-structured population modeling: mathematical methods, numerics, and simulations
✍ Scribed by M. Ianelli, M. Martcheva, F.A. Milner
- Book ID
- 127455443
- Publisher
- Society for Industrial and Applied Mathematics, Society for Industrial and Applied Mathematics
- Year
- 2005
- Tongue
- English
- Weight
- 1 MB
- Series
- Frontiers in applied mathematics
- Category
- Library
- City
- Philadelphia
- ISBN
- 0898715776
No coin nor oath required. For personal study only.
✦ Synopsis
Gender-Structured Population Modeling: Mathematical Methods, Numerics, and Simulations gives a unified presentation of and mathematical framework for modeling population growth by couple formation. It provides an overview of both past and present modeling results. The authors focus on pair formation (marriage) and two-sex models with different forms of the marriage function the basis of couple formation and discuss which of these forms might make a better choice for a particular population (the United States). The book also provides results on model analysis, gives an up-to-date review of mathematical demography, discusses numerical methods, and puts deterministic modeling of human populations into historical perspective.
The authors describe several models and derive the theoretical results that demonstrate the validity of these models. The numerical methods for approximating the solutions of the differential models the equivalent of creating discrete simulators are delineated. Simulation results are compared with actual demographic data to show some of the difficulties concerning the availability of data and to show that mathematical demography provides reasonable qualitative and quantitative estimates. The models in this book can be applied to different sets of data.
✦ Subjects
Матметоды и моделирование в биологии
📜 SIMILAR VOLUMES
This text, based on the author's teaching at Ecole Polytechnique, introduces the reader to the world of mathematical modelling and numerical simulation. Covering the finite difference method; variational formulation of elliptic problems; Sobolev spaces; elliptical problems; the finite element metho