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Methods of Soil Analysis : Part 4 Physical Methods
6.1 Solute Content and Concentration
edited_book
Author(s):
Hendrickx Jan M. H
,
Wraith Jon M
,
Corwin Dennis L
,
Gary Kachanoski R
Publication date
(Online):
September 11 2018
Publisher:
Soil Science Society of America
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A Closed-form Equation for Predicting the Hydraulic Conductivity of Unsaturated Soils1
M. Th. van Genuchten
(1980)
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A new model for predicting the hydraulic conductivity of unsaturated porous media
Yechezkel Mualem
(1976)
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Mass Transfer Studies in Sorbing Porous Media I. Analytical Solutions1
M. Th. van Genuchten
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P. Wierenga
(1976)
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Author and book information
Book Chapter
Publication date (Online):
September 11 2018
Pages
: 1253-1321
DOI:
10.2136/sssabookser5.4.c54
SO-VID:
ace11d7e-644d-4174-9392-65d8127ab8e7
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Book chapters
pp. i
Front Matter
3.2.4 Miscellaneous Methods for Measuring Matric or Water Potential
pp. 1
1.1 Introduction
pp. 1
1.2 Soil Variability
pp. 15
1.3 Errors, Variability, and Precision
pp. 45
1.4 Sampling
pp. 81
1.5 Geostatistics
pp. 119
1.6 Time and Space Series
pp. 139
1.7 Parameter Optimization and Nonlinear Fitting
pp. 159
1.8 Newer Application Techniques
pp. 229
2.2 Particle Density
pp. 241
2.3 Porosity
pp. 255
2.4 Particle-Size Analysis
pp. 295
2.5 Specific Surface Area
pp. 317
2.6 Aggregate Stability and Size Distribution
pp. 329
2.7 Shear Strength of Unsaturated Soils
pp. 363
2.8 Soil Penetrometers and Penetrability
pp. 389
2.9 Atterberg Limits
pp. 399
2.10 Soil Compressibility
pp. 417
3.1 Water Content
pp. 547
3.2.1 Piezometry
pp. 575
3.2.2 Tensiometry
pp. 609
3.2.3 Thermocouple Psychrometry
pp. 671
3.3.1 Introduction
pp. 675
3.3.2 Laboratory
pp. 721
3.3.3 Field
pp. 739
3.3.4 Parametric Models
pp. 759
3.3.5 Property-Transfer Models
pp. 783
3.3.6 Air-Water Interfacial Area
pp. 797
3.4.1 Introduction
pp. 802
3.4.2 Laboratory Methods
pp. 817
3.4.3.1 Introduction
pp. 844
3.4.3.3 Constant Head Well Permeameter (Vadose Zone)
pp. 859
3.4.3.4 Auger-Hole Method (Saturated Zone)
pp. 870
3.4.3.5 Piezometer Method (Saturated Zone)
pp. 877
3.4.3.6 Other Saturated Zone Methods
pp. 879
3.5 Unsaturated Water Transmission Parameters Obtained from Infiltration
pp. 899
3.6.1.1 Laboratory
pp. 937
3.6.1.2 Field
pp. 963
3.6.2. Inverse Methods
pp. 1009
3.6.3. Indirect Methods
pp. 1047
3.7 Evaporation from Natural Surfaces
pp. 1075
4.1 Introduction
pp. 1076
4.2 Gas Sampling and Analysis
pp. 1113
4.3 Gas Diffusivity
pp. 1141
4.4 Air Permeability
pp. 1159
4.5 Soil-Atmosphere Gas Exchange
pp. 1183
5.1 Temperature
pp. 1201
5.2 Heat Capacity and Specific Heat
pp. 1209
5.3 Thermal Conductivity
pp. 1227
5.4 Soil Thermal Diffusivity
pp. 1233
5.5 Heat Flux Density
pp. 1249
5.6 Coupled Heat and Water Transfer
pp. 1253
6.1 Solute Content and Concentration
pp. 1323
6.2 Solute Diffusion
pp. 1353
6.3 Solute Transport: Theoretical Background
pp. 1381
6.4 Solute Transport: Experimental Methods
pp. 1403
6.5 Solute Transport: Data Analysis and Parameter Estimation
pp. 1435
6.6 Solute Transport During Variably Saturated Flow-Inverse Methods
pp. 1451
6.7 Processes Governing Transport of Organic Solutes
pp. 1481
6.8 Microbial Transport
pp. 1511
Geochemical Transport
pp. 1537
Multi-Fluid Flow
pp. 1621
Soil Erosion by Water and Tillage
pp. 1663
Subject Index
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