Dimensional Analysis in the Identification of Mathematical Models
Title | Dimensional Analysis in the Identification of Mathematical Models PDF eBook |
Author | Wac?aw Kasprzak |
Publisher | World Scientific |
Pages | 208 |
Release | 1990 |
Genre | Mathematics |
ISBN | 9789810203054 |
This book is the first textbook with the generalization of Dimensional Analysis, specially prepared to solve problems of identification of mathematical models based on experimental data. The generalization gives the possibility of mathematical model invariant with regard to gauge group, groups of rotation and others. The resulting formalism generates the most general and tensor homogeneous form of possible functional dependence.
Dimensional Analysis In The Identification Of Mathematical Models
Title | Dimensional Analysis In The Identification Of Mathematical Models PDF eBook |
Author | Lysik Bertold |
Publisher | World Scientific |
Pages | 206 |
Release | 1990-09-12 |
Genre | Mathematics |
ISBN | 981450677X |
This book is the first textbook with the generalization of Dimensional Analysis, specially prepared to solve problems of identification of mathematical models based on experimental data. The generalization gives the possibility of mathematical model invariant with regard to gauge group, groups of rotation and others. The resulting formalism generates the most general and tensor homogeneous form of possible functional dependence.
Dimensional Analysis in the Identification of Mathematical Models
Title | Dimensional Analysis in the Identification of Mathematical Models PDF eBook |
Author | Wacław Kasprzak |
Publisher | World Scientific Publishing Company Incorporated |
Pages | 193 |
Release | 1990 |
Genre | Mathematics |
ISBN | 9789810203047 |
This book is the first textbook with the generalization of Dimensional Analysis, specially prepared to solve problems of identification of mathematical models based on experimental data. The generalization gives the possibility of mathematical model invariant with regard to gauge group, groups of rotation and others. The resulting formalism generates the most general and tensor homogeneous form of possible functional dependence.
Maximum Entropy and Bayesian Methods
Title | Maximum Entropy and Bayesian Methods PDF eBook |
Author | C.R. Smith |
Publisher | Springer |
Pages | 0 |
Release | 2010-12-05 |
Genre | Computers |
ISBN | 9789048142200 |
Bayesian probability theory and maximum entropy methods are at the core of a new view of scientific inference. These `new' ideas, along with the revolution in computational methods afforded by modern computers, allow astronomers, electrical engineers, image processors of any type, NMR chemists and physicists, and anyone at all who has to deal with incomplete and noisy data, to take advantage of methods that, in the past, have been applied only in some areas of theoretical physics. This volume records the Proceedings of Eleventh Annual `Maximum Entropy' Workshop, held at Seattle University in June, 1991. These workshops have been the focus of a group of researchers from many different fields, and this diversity is evident in this volume. There are tutorial papers, theoretical papers, and applications in a very wide variety of fields. Almost any instance of dealing with incomplete and noisy data can be usefully treated by these methods, and many areas of theoretical research are being enhanced by the thoughtful application of Bayes' theorem. The contributions contained in this volume present a state-of-the-art review that will be influential and useful for many years to come.
Mathematical Modeling
Title | Mathematical Modeling PDF eBook |
Author | Christof Eck |
Publisher | Springer |
Pages | 519 |
Release | 2017-04-11 |
Genre | Mathematics |
ISBN | 3319551612 |
Mathematical models are the decisive tool to explain and predict phenomena in the natural and engineering sciences. With this book readers will learn to derive mathematical models which help to understand real world phenomena. At the same time a wealth of important examples for the abstract concepts treated in the curriculum of mathematics degrees are given. An essential feature of this book is that mathematical structures are used as an ordering principle and not the fields of application. Methods from linear algebra, analysis and the theory of ordinary and partial differential equations are thoroughly introduced and applied in the modeling process. Examples of applications in the fields electrical networks, chemical reaction dynamics, population dynamics, fluid dynamics, elasticity theory and crystal growth are treated comprehensively.
Similarity and Modeling in Science and Engineering
Title | Similarity and Modeling in Science and Engineering PDF eBook |
Author | Josef Kuneš |
Publisher | Springer Science & Business Media |
Pages | 451 |
Release | 2012-04-07 |
Genre | Mathematics |
ISBN | 1907343776 |
The present text sets itself in relief to other titles on the subject in that it addresses the means and methodologies versus a narrow specific-task oriented approach. Concepts and their developments which evolved to meet the changing needs of applications are addressed. This approach provides the reader with a general tool-box to apply to their specific needs. Two important tools are presented: dimensional analysis and the similarity analysis methods. The fundamental point of view, enabling one to sort all models, is that of information flux between a model and an original expressed by the similarity and abstraction Each chapter includes original examples and applications. In this respect, the models can be divided into several groups. The following models are dealt with separately by chapter; mathematical and physical models, physical analogues, deterministic, stochastic, and cybernetic computer models. The mathematical models are divided into asymptotic and phenomenological models. The phenomenological models, which can also be called experimental, are usually the result of an experiment on an complex object or process. The variable dimensionless quantities contain information about the real state of boundary conditions, parameter (non-linearity) changes, and other factors. With satisfactory measurement accuracy and experimental strategy, such models are highly credible and can be used, for example in control systems.
Mathematical Modeling and Validation in Physiology
Title | Mathematical Modeling and Validation in Physiology PDF eBook |
Author | Jerry J. Batzel |
Publisher | Springer |
Pages | 270 |
Release | 2012-12-14 |
Genre | Mathematics |
ISBN | 3642328822 |
This volume synthesizes theoretical and practical aspects of both the mathematical and life science viewpoints needed for modeling of the cardiovascular-respiratory system specifically and physiological systems generally. Theoretical points include model design, model complexity and validation in the light of available data, as well as control theory approaches to feedback delay and Kalman filter applications to parameter identification. State of the art approaches using parameter sensitivity are discussed for enhancing model identifiability through joint analysis of model structure and data. Practical examples illustrate model development at various levels of complexity based on given physiological information. The sensitivity-based approaches for examining model identifiability are illustrated by means of specific modeling examples. The themes presented address the current problem of patient-specific model adaptation in the clinical setting, where data is typically limited.