Books on the topic 'Soil porosity'

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1

Horton, Robert K. Determination of effective porosity of soil materials. S.l: s.n, 1988.

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2

Chrétien, Jean. Rôle du squelette dans l'organisation des sols: Conséquences sur les caractéristiques de l'espace poral des sols sur arènes et sur terrasses fluviatiles. Paris: INRA, 1986.

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3

G, Barber Richard, and Food and Agriculture Organization of the United Nations., eds. Optimizing soil moisture for plant production: The significance of soil porosity. Rome: Food and Agriculture Organization of the United Nations, 2003.

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4

Everett, Lorne G., and Martin N. Sara. Evaluation and remediation of low permeability and dual porosity environments. Edited by Symposium on Evaluation and Remediation of Low Permeability and Dual Porosity Environments (2001 : Reno, Nev.) and ASTM International. W. Conshohocken, PA: ASTM, 2002.

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5

L, Thompson Michael, McBride John F, and Hazardous Waste Engineering Research Laboratory., eds. Determination of effective porosity of soil materials: Project summary. Cincinnati, OH: U.S. Environmental Protection Agency, Hazardous Waste Engineering Research Laboratory, 1988.

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6

R, Nimmo John, Geological Survey (U.S.), and United States. Dept. of Energy., eds. Laboratory and field hydrologic characterization of the shallow subsurface at an Idaho National Engineering and Environmental Laboratory waste-disposal site. Idaho Falls, Idaho: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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7

Guilluy, D. Effets des couvertures permanentes sur la porosité d'andosols cultivés: Étude des propriétés physiques et du fonctionnement hydrodynamique de l'horizon cultural. [Saint-Denis]: Laboratoire de physique du sol, 1991.

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8

K, Nielson K., and Air and Energy Engineering Research Laboratory., eds. Correlation of Florida soil-gas permeabilities with grain size, moisture, and porosity: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1991.

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9

K, Nielson K., and Air and Energy Engineering Research Laboratory, eds. Correlation of Florida soil-gas permeabilities with grain size, moisture, and porosity: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1991.

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10

H, Anderson S., Hopmans J. W, Soil Science Society of America. Division S-1., and Soil Science Society of America. Division S-6., eds. Tomography of soil-water-root processes: Proceedings of a symposium sponsored by Division S-1 and S-6 of the Soil Science Society of America in Minneapolis, Minnesota, 4 Nov. 1992. Madison, Wis., USA: American Society of Agronomy, 1994.

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11

D, Meshri Indu, Ortoleva Peter J, and American Association of Petroleum Geologists., eds. Prediction of reservoir quality through chemical modeling. Tulsa, Okla., U.S.A: American Association of Petroleum Geologists, 1990.

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12

Kelly, Brian P. Vertical hydraulic conductivity of soil and potentiometric surface of the Missouri River alluvial aquifer at Kansas City, Missouri and Kansas, August 1992 and January 1993. Rolla, Mo: U.S. Geological Survey, 1995.

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13

Yong, R. N. Soil remediation of nonaqueous phase liquids. Montreal, Que., Canada: Geotechnical Research Centre, McGill University, 1991.

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14

Friedel, Michael. Modeling in situ copper leaching in an unsaturated setting. Washington, D.C: U.S. Dept. of the Interior, Bureau of Mines, 1991.

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15

Goode, Daniel J. Age, double porosity, and simple reaction modifications for the MOC3D ground-water transport model. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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16

Goode, Daniel J. Age, double porosity, and simple reaction modifications for the MOC3D ground-water transport model. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1999.

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17

Williams, Todd Joseph. Effects of temperature and moisture content on transport of organic vapours in dual-porosity soil. Ottawa: National Library of Canada, 2000.

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18

Rohr, Gabriele von. Auswirkungen des Rohrleitungsbaus auf bodenphysikalische Kenngrössen. Bern: Geographisches Institut der Universität Bern, 1996.

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19

Somerton, Wilbur H. Thermal properties and temperature-related behavior of rock/fluid systems. Amsterdam: Elsevier, 1992.

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20

1958-, Ulmer-Scholle D. S., and American Association of Petroleum Geologists., eds. A color guide to the petrography of carbonate rocks: Grains, textures, porosity, diagenesis. Tulsa, Ok: American Association of Petroleum Geologists, 2003.

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21

Klotz, Dietmar. Erfahrung mit Säulenversuchen zur Bestimmung der Schadstoffmigration. Neuherberg: GSF, Forschungszentrum für Umwelt und Gesundheit, 1992.

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22

Green, R. T. Hydraulic characterization of hydrothermally altered nopal tuff. Washington, DC: Division of Regulatory Applications, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1995.

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23

Green, R. T. Hydraulic characterization of hydrothermally altered nopal tuff. Washington, DC: Division of Regulatory Applications, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1995.

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24

Selyakov, V. I. Percolation models for transport in porous media with applications to reservoir engineering. Dordrecht: Kluwer Academic Publishers, 1996.

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25

(Editor), Martin N. Sara, Lorne G. Everett (Editor), and Symposium on Evaluation and Remediation of Low Permeability and Dual p (Editor), eds. Evaluation and Remediation of Low Permeability and Dual Porosity Environments. ASTM International, 2002.

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26

Hopmans, Jan W., and Stephen H. Anderson. Soil- Water- Root Processes: Advances in Tomography and Imaging. Wiley & Sons, Limited, John, 2015.

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27

Hopmans, Jan W., and Stephen H. Anderson. Soil- Water- Root Processes: Advances in Tomography and Imaging. Wiley & Sons, Limited, John, 2020.

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28

Wu, Laosheng. Relationship between pore size, particle size, aggregate size and water characteristics. 1987.

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29

Kelly, Shaun Francis. Non-convective ion movement in unsaturated porous media. 1998.

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30

Kelly, Shaun Francis. Non-convective ion movement in unsaturated porous media. 1998.

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31

Lima, Glaucia da Penha. Carbon tetrachloride transport and biodegradation in dual porosity soil columns. 2005.

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32

Anderson, S. H. Tomography of Soil-Water-Root Processes: Proceedings of a Symposium Sponsored by Division S-1 and S-6 of the Soil Science Society of America in Minn (S S S a Special Publication). American Society of Agronomy, 1994.

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33

Muršec, Mateja. A Student’s Guide to Practical Work in Soil Science. University of Maribor Press, 2022. http://dx.doi.org/10.18690/um.fkbv.11.2022.

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Abstract:
The student's guide is intended for foreign students choosing Soil science subject at UM. It contains the basics of the geological composition of the lithosphere, classification, mineral composition, and recognition of various rocks. Students are guided through the use of proper equipment and methods of sampling, transportation, preservation, and sample preparation prior to further analysis. Field work and laboratory procedures for determining various physical (soil structure, texture, bulk density, porosity, soil moisture, soil colour) and chemical (soil reaction, organic matter content, nitrogen, phosphorus, and potassium content) characteristics of soil quality are described. Finally, it helps students to describe the soil profile with an accurate description of the general soil horizons and the determination of the soil type.
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34

Lerner, D. N. Soil and Groundwater Research Report 4: Sources and Movement of Chlorinated Solvents in Dual Porosity Rocks. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1993.

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35

Understanding the Micro to Macro Behaviour of Rock - Fluid Systems. Geological Society of London, 2005.

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