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1

J, Vinson, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Regulatory Applications., University of Arizona. Dept. of Soil and Water Science., New Mexico State University. Dept. of Agronomy., and New Mexico State University. Dept. of Mechanical Engineering., eds. Flow and transport at the Las Cruces trench site: Experiment IIb. Division of Regulatory Applications, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1997.

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2

Murray, E. J. Unsaturated soils: A fundamental interpretation of soil behaviour. Wiley-Blackwell, 2010.

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3

Ng, C. W. W. Unsaturated soil mechanics and engineering. Taylor & Francis, 2007.

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4

Jin-Song, Chen, Haan C. T. 1941-, Oklahoma Agricultural Experiment Station, and Robert S. Kerr Environmental Research Laboratory, eds. Evaluation of unsaturated/vadose zone models for Superfund sites. Robert S. Kerr Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1994.

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5

J, Leij F., Yates S. R, and Robert S. Kerr Environmental Research Laboratory, eds. The RETC code for quantifying the hydraulic functions of unsaturated soils: Project summary. U.S. Environmental Protection Agency, Robert S. Kerr Environmental Research Laboratory, 1992.

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6

Genuchten, M. Th Van. The RETC code for quantifying the hydraulic functions of unsaturated soils. Robert S. Kerr Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1992.

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7

Genuchten, M. Th Van. The RETC code for quantifying the hydraulic functions of unsaturated soils. Robert S. Kerr Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1992.

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8

International Crops Research Institute for the Semi-arid Tropics. and International Workshop on Soil Water Balance inthe Sudano-Sahelian Zone (1991 : Niamey, Niger), eds. Soil water balance in the Sudano-Sahelian zone: Summary proceedings of an International Workshop on soil water ... 18-23 Feb 1991 Niamey, Niger. International Crops Research Institute for the Semi-arid Tropics,India, 1992.

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9

Seminar on French Agronomic Research in the Tropics (1986 : World Bank), ed. Sols et eaux: Acquis et perspectives de la recherche agronomique française en zone intertropicale : actes du séminaire tenu à la Banque mondiale les 15 et 16 mai 1986. Editions de l'ORSTOM, 1986.

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10

Jin-Song, Chen, Haan C. T. 1941-, and Robert S. Kerr Environmental Research Laboratory, eds. Evaluation of unsaturated/vadose zone models for Superfund sites: Project summary. U.S. Environmental Protection Agency, Robert S. Kerr Environmental Research Laboratory, 1994.

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11

(2010), GeoShanghai International Conference. Experimental and applied modeling of unsaturated soils: Proceedings of the GeoShanghai 2010 International Conference, June 3-5, 2010, Shanghai, China. American Society of Civil Engineers, 2010.

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12

Sword, Mary A. Local soils information needed to define the root zone in process models on the Gulf Coastal Plain. Southern Research Station, 2002.

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13

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. American Society of Agronomy, 1994.

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14

Geological Survey (U.S.), ed. Geohydrology of the unsaturated zone at the burial site for low-level radioactive waste near Beatty, Nye County, Nevada. U.S. Dept. of the Interior, Geological Survey, 1986.

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15

L, Ahuja, ed. Root zone water quality model: Modelling management effects on water quality and crop production. Water Resources Publications, 2000.

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16

1972-, Hoyos Laureano R., Zhang Xiong 1971-, Puppala Anand J, and American Society of Civil Engineers, eds. Experimental and applied modeling of unsaturated soils: Proceedings of the GeoShanghai 2010 International Conference, June 3-5, 2010, Shanghai, China. American Society of Civil Engineers, 2010.

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17

Sitnikov, Anatoliĭ Borisovich. Dinamika vlagi i soleĭ v pochvogruntakh zony aėrat͡s︡ii. Nauk. dumka, 1986.

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18

L, Baehr Arthur, and Geological Survey (U.S.), eds. Estimating spatial variability of recharge in southern New Jersey from unsaturated-zone measurements. U.S. Dept. of the Interior, U.S. Geological Survey, 2003.

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19

Dietz, Siegrun. Bestimmung von Bodenwasserhaushaltskomponenten für den praxisbezogenen Einsatz in Wasserschutzgebieten. Institut für Geographie und Geoökologie der Universität Karlsruhe, 2009.

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20

Nichols, William D. Geohydrology of the unsaturated zone at the burial site for low-level radioactive waste near Beatty, Nye County, Nevada. U.S. Dept. of the Interior, Geological Survey, 1986.

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21

Nichols, William D. Geohydrology of the unsaturated zone at the burial site for low-level radioactive waste near Beatty, Nye County, Nevada. U.S. G.P.O., 1987.

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22

Nichols, William D. Geohydrology of the unsaturated zone at the burial site for low-level radioactive waste near Beatty, Nye County, Nevada. U.S. Dept. of the Interior, Geological Survey, 1986.

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23

Connellan, Geoff. Water Use Efficiency for Irrigated Turf and Landscape. CSIRO Publishing, 2013. http://dx.doi.org/10.1071/9780643106888.

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Achieving high water use efficiency in maintaining turf, trees and landscape areas is a core responsibility of open space managers. Water Use Efficiency for Irrigated Turf and Landscape provides a logical and scientifically sound approach to irrigation in urban areas in Australia. It is based on green space delivering defined outcomes using the principles of water sensitive urban design and irrigation efficiency.
 The book covers all stages of the water pathway – from the source to delivery into the plant root zone. Major topics include system planning, estimating water demand, water qual
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24

Bourrié, Guilhem. Soils As a Key Component of the Critical Zone 3: Soils and Water Circulation. Wiley & Sons, Incorporated, John, 2018.

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25

Bourrié, Guilhem. Soils As a Key Component of the Critical Zone 3: Soils and Water Circulation. Wiley & Sons, Incorporated, John, 2018.

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26

Bidlake, William Rhind. Seed zone temperature and moisture conditions under conventional-till and no-till systems in Alaska. 1988.

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27

Barrow, N. J., and Bnayahu Bar-Yosef. Inorganic Contaminants in the Vadose Zone. Brand: Springer, 2011.

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28

Inorganic contaminants in the vadose zone. Springer-Verlag, 1989.

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29

Barrow, N. J., Bnayahu Bar-Yosef, and J. Goldshmid. Inorganic Contaminants in the Vadose Zone. Springer London, Limited, 2012.

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30

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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31

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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32

Wang, Ming-che. In-situ evaluation of capillary wick tension in wick lysimeters for sampling from vadose zone. 1993.

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33

Wang, Ming-che. In-situ evaluation of capillary wick tension in wick lysimeters for sampling from vadose zone. 1993.

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34

The RETC code for quantifying the hydraulic functions of unsaturated soils: Project summary. U.S. Environmental Protection Agency, Robert S. Kerr Environmental Research Laboratory, 1992.

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35

Advanced Unsaturated Soil Mechanics and Engineering. Taylor & Francis, 2007.

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36

Haase, Diane L. Transplant shock in stored and unstored 2+0 Douglas-fir seedlings: Effect of initial root volume and soil water content. 1991.

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37

Ahuja, Lajpat, K. W. Rojas, J. D. Hanson, M. J. Shaffer, and L. Ma. Root Zone Quality Model: Modelling Management Effects on Water Quality & Crop Production & Computer Program. Water Resources Pubns, 2000.

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38

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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39

Unsaturated soil mechanics in geotechnical practice. 2013.

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40

Bond, W. Soil Physical Methods for Estimating Recharge - Part 3. CSIRO Publishing, 1998. http://dx.doi.org/10.1071/9780643105355.

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Measurements in and just below the plant root zone, using principles of soil physics, can be used to estimate recharge. This booklet describes the Zero Flux Plane Method, Methods Based on Darchy's law, and Lysimetry for making such estimates. The work presents the basic concepts of soil water physics that will be referred to in this and other booklets in the series. Another method, the Soil Water Flux Meter, is discussed briefly, but as this is not sufficiently well developed for routine use readers are referred elsewhere for full details. All these methods require that consideration be given
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41

Tinker, Peter B., and Peter Nye. Solute Movement in the Rhizosphere. Oxford University Press, 2000. http://dx.doi.org/10.1093/oso/9780195124927.001.0001.

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This is a completely revised edition of the previously titled Solute Movement in the Soil-Root System. It describes in detail how plant nutrients and other solutes move in the soil in response to plant uptake, and it provides a basis for understanding processes in the root zone so that they can be modeled realistically in order to predict the effects of variations in natural conditions or our own practices.
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42

Hopkins, Graeme, and Christine Goodwin. Living Architecture. CSIRO Publishing, 2011. http://dx.doi.org/10.1071/9780643103078.

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Extensively illustrated with photographs and drawings, Living Architecture highlights the most exciting green roof and living wall projects in Australia and New Zealand within an international context.
 Cities around the world are becoming denser, with greater built form resulting in more hard surfaces and less green space, leaving little room for vegetation or habitat. One way of creating more natural environments within cities is to incorporate green roofs and walls in new buildings or to retrofit them in existing structures. This practice has long been established in Europe and elsewhe
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