The Resource Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi
Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi
Resource Information
The item Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University of Missouri Libraries.This item is available to borrow from 1 library branch.
Resource Information
The item Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University of Missouri Libraries.
This item is available to borrow from 1 library branch.
 Summary
 "This book is a work of applied mathematics focusing on the functional study of the nonlinear boundary value problems relating to water flow in porous media. As far as revealed by the literature, a systematic study of these models within the above mentioned framework has not been done and the book has been written with the belief that the abstract theory may be sometimes easier and richer in consequences for applications than standard classical approaches are. The volume deals with diffusion type models and emphasizes the mathematical treatment of their nonlinear aspects."Jacket
 Language
 eng
 Extent
 1 online resource (xv, 315 pages)
 Contents

 Foreword. Introduction
 Part I Modelling water infiltration in soils. 1 Brief overview of unsaturated flow concepts. 2 Settlement of the mathematical models of nonhysteric infiltration
 Part II Analysis of infiltration models. 3 Basic existence theorems for evolution equations. 4 Functional approach to the quasiunsaturated infiltration. 5 Functional approach to the saturatedunsaturated infiltration model
 Part III Inverse problems in infiltration. 7 Identification of the boundary conditions from recorded observations
 Part IV Appendix
 Isbn
 9781402048791
 Label
 Functional approach to nonlinear models of water flow in soils
 Title
 Functional approach to nonlinear models of water flow in soils
 Statement of responsibility
 by Gabriela Marinoschi
 Title variation
 Nonlinear models of water flow in soils
 Subject

 Bodenwasser
 Bodenwasserstrom
 Groundwater flow  Mathematical models
 Groundwater flow  Mathematical models
 Groundwater flow  Mathematical models
 Hydraulik
 Hydrodynamics  Mathematical models
 Hydrodynamics  Mathematical models
 Hydrodynamics  Mathematical models
 Hydrodynamics  Mathematical models
 Hydrologic cycle  Mathematical models
 Hydrologic cycle  Mathematical models
 Hydrologic cycle  Mathematical models
 Hydrologic cycle  Mathematical models
 Mathematisches Modell
 Nonlinear boundary value problems  Numerical solutions
 Nonlinear boundary value problems  Numerical solutions
 Nonlinear boundary value problems  Numerical solutions
 Partielle Differentialgleichung
 Porèoser Stoff
 Poröser Stoff
 Randwertproblem
 SCIENCE  Mechanics  Hydrodynamics
 Soil infiltration rate  Mathematical models
 Soil infiltration rate  Mathematical models
 Soil infiltration rate  Mathematical models
 Soil infiltration rate  Mathematical models
 Soils  Solute movement  Mathematical models
 Soils  Solute movement  Mathematical models
 Soils  Solute movement  Mathematical models
 Wasserhaushalt
 Boden
 Language
 eng
 Summary
 "This book is a work of applied mathematics focusing on the functional study of the nonlinear boundary value problems relating to water flow in porous media. As far as revealed by the literature, a systematic study of these models within the above mentioned framework has not been done and the book has been written with the belief that the abstract theory may be sometimes easier and richer in consequences for applications than standard classical approaches are. The volume deals with diffusion type models and emphasizes the mathematical treatment of their nonlinear aspects."Jacket
 Action
 digitized
 Cataloging source
 GW5XE
 http://library.link/vocab/creatorName
 Marinoschi, Gabriela
 Dewey number
 631.4/32
 Illustrations
 illustrations
 Index
 index present
 Language note
 English
 LC call number
 S594
 LC item number
 .M268 2006eb
 Literary form
 non fiction
 NAL call number
 S594
 NAL item number
 .M268 2006
 Nature of contents

 dictionaries
 bibliography
 Series statement
 Mathematical modellingtheory and applications
 Series volume
 v. 21
 http://library.link/vocab/subjectName

 Soil infiltration rate
 Soils
 Groundwater flow
 Hydrodynamics
 Hydrologic cycle
 Nonlinear boundary value problems
 SCIENCE
 Hydrologic cycle
 Soil infiltration rate
 Hydrodynamics
 Groundwater flow
 Hydrodynamics
 Hydrologic cycle
 Nonlinear boundary value problems
 Soil infiltration rate
 Soils
 Partielle Differentialgleichung
 Wasserhaushalt
 Bodenwasserstrom
 Bodenwasser
 Poröser Stoff
 Mathematisches Modell
 Boden
 Hydraulik
 Randwertproblem
 Porèoser Stoff
 Label
 Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi
 Bibliography note
 Includes bibliographical references (pages 305311) and index
 Carrier category
 online resource
 Carrier category code

 cr
 Carrier MARC source
 rdacarrier
 Color
 multicolored
 Content category
 text
 Content type code

 txt
 Content type MARC source
 rdacontent
 Contents
 Foreword. Introduction  Part I Modelling water infiltration in soils. 1 Brief overview of unsaturated flow concepts. 2 Settlement of the mathematical models of nonhysteric infiltration  Part II Analysis of infiltration models. 3 Basic existence theorems for evolution equations. 4 Functional approach to the quasiunsaturated infiltration. 5 Functional approach to the saturatedunsaturated infiltration model  Part III Inverse problems in infiltration. 7 Identification of the boundary conditions from recorded observations  Part IV Appendix
 Control code
 209940033
 Dimensions
 unknown
 Extent
 1 online resource (xv, 315 pages)
 Form of item
 online
 Isbn
 9781402048791
 Media category
 computer
 Media MARC source
 rdamedia
 Media type code

 c
 Other control number
 10.1007/1402048807
 Other physical details
 illustrations.
 http://library.link/vocab/ext/overdrive/overdriveId
 9781402048791
 Reproduction note
 Electronic reproduction.
 Specific material designation
 remote
 System control number
 (OCoLC)209940033
 System details
 Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
 Label
 Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi
 Bibliography note
 Includes bibliographical references (pages 305311) and index
 Carrier category
 online resource
 Carrier category code

 cr
 Carrier MARC source
 rdacarrier
 Color
 multicolored
 Content category
 text
 Content type code

 txt
 Content type MARC source
 rdacontent
 Contents
 Foreword. Introduction  Part I Modelling water infiltration in soils. 1 Brief overview of unsaturated flow concepts. 2 Settlement of the mathematical models of nonhysteric infiltration  Part II Analysis of infiltration models. 3 Basic existence theorems for evolution equations. 4 Functional approach to the quasiunsaturated infiltration. 5 Functional approach to the saturatedunsaturated infiltration model  Part III Inverse problems in infiltration. 7 Identification of the boundary conditions from recorded observations  Part IV Appendix
 Control code
 209940033
 Dimensions
 unknown
 Extent
 1 online resource (xv, 315 pages)
 Form of item
 online
 Isbn
 9781402048791
 Media category
 computer
 Media MARC source
 rdamedia
 Media type code

 c
 Other control number
 10.1007/1402048807
 Other physical details
 illustrations.
 http://library.link/vocab/ext/overdrive/overdriveId
 9781402048791
 Reproduction note
 Electronic reproduction.
 Specific material designation
 remote
 System control number
 (OCoLC)209940033
 System details
 Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
Subject
 Bodenwasser
 Bodenwasserstrom
 Groundwater flow  Mathematical models
 Groundwater flow  Mathematical models
 Groundwater flow  Mathematical models
 Hydraulik
 Hydrodynamics  Mathematical models
 Hydrodynamics  Mathematical models
 Hydrodynamics  Mathematical models
 Hydrodynamics  Mathematical models
 Hydrologic cycle  Mathematical models
 Hydrologic cycle  Mathematical models
 Hydrologic cycle  Mathematical models
 Hydrologic cycle  Mathematical models
 Mathematisches Modell
 Nonlinear boundary value problems  Numerical solutions
 Nonlinear boundary value problems  Numerical solutions
 Nonlinear boundary value problems  Numerical solutions
 Partielle Differentialgleichung
 Porèoser Stoff
 Poröser Stoff
 Randwertproblem
 SCIENCE  Mechanics  Hydrodynamics
 Soil infiltration rate  Mathematical models
 Soil infiltration rate  Mathematical models
 Soil infiltration rate  Mathematical models
 Soil infiltration rate  Mathematical models
 Soils  Solute movement  Mathematical models
 Soils  Solute movement  Mathematical models
 Soils  Solute movement  Mathematical models
 Wasserhaushalt
 Boden
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<div class="citation" vocab="http://schema.org/"><i class="fa faexternallinksquare fafw"></i> Data from <span resource="http://link.library.missouri.edu/portal/Functionalapproachtononlinearmodelsofwater/CTGFCdlqTJM/" typeof="Book http://bibfra.me/vocab/lite/Item"><span property="name http://bibfra.me/vocab/lite/label"><a href="http://link.library.missouri.edu/portal/Functionalapproachtononlinearmodelsofwater/CTGFCdlqTJM/">Functional approach to nonlinear models of water flow in soils, by Gabriela Marinoschi</a></span>  <span property="potentialAction" typeOf="OrganizeAction"><span property="agent" typeof="LibrarySystem http://library.link/vocab/LibrarySystem" resource="http://link.library.missouri.edu/"><span property="name http://bibfra.me/vocab/lite/label"><a property="url" href="http://link.library.missouri.edu/">University of Missouri Libraries</a></span></span></span></span></div>