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1

Stathers, Robert John. Forest soil temperature manual. [Victoria, B.C.]: Canada/BC Economic & Regional Development Agreement, 1990.

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2

Stathers, Robert John. Forest soil temperature manual. Victoria, B.C: Ministry of Forests, Research Branch, 1990.

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3

Curtis, C. S. Soil temperature bibliography with abstracts. Lincoln, NE: High Plains Climate Center, Dept. of Agricultural Meteorology, University of Nebraska, 1995.

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4

Hanks, R. J. Applied soil physics: Soil water and temperature applications. 2nd ed. New York: Springer-Verlag, 1992.

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5

Hussein, J. Soil temperatures in Zimbabwe. [Harare]: Dept. [of] Land Management, Faculty of Agriculture, University of Zimbabwe, 1986.

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6

Hughes, Paul A. Water tables, soil temperatures, and morphological characteristics in selected Maine soils. Orono, Me: Dept. of Plant, Soil, and Environmental Sciences, University of Maine, 1993.

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7

Franco, E. P. Cardoso. Os regimes, térmico e de humidade, nos solos da república popular de Angola. Lisboa: Ministério do Planeamento e da Administração do Território, Secretaria de Estado da Ciência e Tecnologia, Instituto de Investigação Científica Tropical, 1993.

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8

Franco, E. P. Cardoso. Contribuição para o estudo do pedoclima no arquipélago da Madeira. [Lisbon]: Secretaria Regional da Economia, Instituto de Investigação Científica Tropical, 1990.

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9

Vose, James M. A soil temperature model for closed canopied forest stands. Asheville, N.C: Southeastern Forest Experiment Station, 1991.

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10

Vose, James M. A soil temperature model for closed canopied forest stands. Asheville, N.C: U.S. Dept. of Agriculture, Forest Service, Southeastern Forest Experiment Station, 1991.

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11

Greene, Sarah. Soil and air temperatures for different habitats in Mount Rainier National Park. Portland, Or: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.

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12

Greene, Sarah. Soil and air temperatures for different habitats in Mount Rainier National Park. [Portland, Or.]: U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Forest and Range Experiment Station, 1985.

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13

Eifler, Ute. Das Wärmeverhalten von Sandböden unter Waldbedeckung. Mainz: Naturhistorisches Museum Mainz, 1994.

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14

Crews, Jerry T. Temperature and soil moisture regimes in and adjacent to the Fernow Experimental Forest. Newtown Square, PA: U.S. Dept. of Agriculture, Forest Service, Northeastern Research Station, 2000.

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15

Hungerford, Roger D. Overstory removal and residue treatments affect soil surface, air, and soil temperature: Implications for seedling survival. Ogden, UT: U.S. Dept. of Agriculture, Forest Service, Intermountain Research Station, 1987.

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16

Cyprus. Hypourgeio Geōrgias kai Physikōn Porōn., ed. A Study of the soil temperatures in Cyprus. 2nd ed. Nicosia: The Service, 1986.

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17

International Conference on Soil Solarization (1st 1990 Amman, Jordan). Soil solarization: Proceedings of the First International Conference on Soil Solarization, Amman, Jordan, 19-25 February 1990. Rome: Food and Agriculture Organization of the United Nations, 1991.

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18

Chechick, Fania. Mishṭar ṭemperaṭurat ha-ḳarḳaʻ be-Yiśraʼel. Bet Dagan: Miśrad ha-taḥburah, ha-Sherut ha-meṭʼorologi, ha-Gaf le-meṭeʼorologyah ḥaḳlaʼit, 1997.

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19

Germanov, V. P. Teploobespechennostʹ melioriruemykh zemelʹ sovkhoza "Ukhtinskiĭ": Sposoby uluchshenii͡a teplovogo rezhima severnykh pochv : rekomendat͡sii. Petrozavodsk: Karelʹskiĭ filial AN SSSR, 1989.

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20

Gori︠a︡ev, V. E. Agrofizicheskie osnovy i metody regulirovanii︠a︡ gidrotermicheskogo rezhima pochv: Na primere Altaĭskogo krai︠a︡. Novosibirsk: Izd-vo Sibirskogo otd-nii︠a︡ Rossiĭskoĭ akademii nauk, 2003.

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21

Mulla, D. J. Using time domain reflectometry to measure frost depth and unfrozen water content in soil. Pullman, Wash: State of Washington Water Research Center, 1985.

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22

United States. National Aeronautics and Space Administration., ed. Documentation for program SOILSIM: A computer program for the simulation of heat and moisture flow in soils and between soils, canopy and atmosphere. Newark, Del: Center for Remote Sensing, College of Marine Studies, University of Delaware, 1990.

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23

Hwang, Soo-Jin. The effects of soil moisture on the energy balance at the bare soil surface. Tsukuba, Japan: Environmental Research Center, University of Tsukuba, 1995.

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24

Everett, Richard L. Soil water and temperature in harvested and nonharvested pinyon-juniper stands. Ogden, UT: U.S. Dept. of Agriculture, Forest Service, Intermountain Research Station, 1985.

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25

Karvonen, Tuomo. A model for predicting the effect of drainage on soil moisture, soil temperature and crop yield. Otaniemi, Finland: Helsinki University of Technology, Laboratory of Hydrology and Water Resources Engineering, 1988.

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26

Everett, Richard L. Soil water and temperature in harvested and nonharvested pinyon-juniper stands. [Ogden, Utah]: U.S. Dept. of Agriculture, Forest Service, Intermountain Forest and Range Experiment Station, 1985.

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27

Bootsma, A. Soil climate classification and winter risk assesment for the Atlantic region based on estimated soil temperatures. [Ottawa]: Research Branch, Agriculture Canada, 1990.

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28

Birnstingl, J. Low-temperature thermal desorption: Hydrocarbon and PCB remediation case studies. London: CIRIA, 2000.

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29

Kowalczyk, E. A. A soil-canopy scheme for use in a numerical model of the atmosphere - 1D stand alone model. Australia: CSIRO, 1991.

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30

Kowalczyk, E. A. A soil-canopy scheme for use in a numerical model of the atmosphere - 1D stand alone model. Australia: CSIRO, 1991.

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31

Kowalczyk, E. A. Implementation of a soil-canopy scheme into the CSIRO GCM - regional aspects of the model response. [Melbourne]: Commonwealth Scientific and Industrial Research Organization, 1994.

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32

S, Chauhan Y., ed. Effects of soil solarization on pigeonpea and chickpea. Patancheru, Andhra Pradesh, India: International Crops Research Institute for the Semi-Arid Tropics, 1988.

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33

Krechetov, P. P. Ėkologo-geograficheskiĭ analiz temperaturnogo rezhima pochv Vostochno-Evropeĭskoĭ ravniny i Predkavkazʹi︠a︡. Moskva: Pelikan, 2007.

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34

M, Haase Sally, and Pacific Southwest Forest and Range Experiment Station (Berkeley, Calif.), eds. Measuring soil and tree temperatures during prescribed fires with thermocouple probes. Berkeley, Calif. (P.O. Box 245, Berekely, Calif. 94701-0245): U.S. Dept. of Agriculture, Forest Service, Pacific Southwest Research Station, 1992.

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35

Miller, Brad. Soil temperature effects on water relations of Picea mariana seedlings. Ottawa: National Library of Canada, 1991.

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36

A, Albini F., and Intermountain Research Station (Ogden, Utah), eds. Models for fire-driven heat and moisture transport in soils. Ogden, UT: U.S. Dept. of Agriculture, Forest Service, Intermountain Research Station, 1996.

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37

(Firm), Montgomery Watson, and United States. Army. Corps of Engineers. Sacramento District., eds. On-site soil treatability study using low temperature thermal desorption: Presidio of San Francisco, San Francisco, California : final. Walnut Creek, Calif: Montgomery Watson, 1998.

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38

Venne, Melanie. Soil moisture and soil temperature of north and south facing aspects of a hillslope transect, Sudbury. Sudbury, Ont: Laurentian University, 2005.

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39

Peck, Lindamae. Heat transfer and frost-thaw penetration in soil surrounding an inclusion of sand: Numerical model results relevant to electromagnetic sensor system performance. [Hanover, N.H]: US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1995.

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40

Peck, Lindamae. Heat transfer and frost-thaw penetration in soil surrounding an inclusion of sand: Numerical model results relevant to electromagnetic sensor system performance. [Hanover, N.H]: US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1995.

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41

Peck, Lindamae. Heat transfer and frost-thaw penetration in soil surrounding an inclusion of sand: Numerical model results relevant to electromagnetic sensor system performance. [Hanover, N.H]: US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1995.

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42

Everett, Richard L. Soil water and temperature in harvested and nonharvested pinyon-juniper stands. Ogden, UT: U.S. Dept. of Agriculture, Forest Service, Intermountain Research Station, 1985.

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43

Isfahany, T. Mehrian. Thermodynamics of the adsorption of organic cations on kaolinite: Temperature dependence and calorimetry. Wageningen: Landbouwuniversiteit te Wageningen, 1992.

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44

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

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45

Brar, Gurdarshan S. Soil physical environment and root growth in northern climates. [Hanover, N.H.]: US Army Corps of Engineers, Cold Regions Research and Engineering Laboratory, 1996.

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46

Kankyōshō, Japan. Heisei 20-nendo Kankyōshō kūru shiti suishin jigyō seika hōkokukai: Chikasui chichūnetsu o ri-katsuyōshita hīto airando taisaku ni yoru chikasui jiban kankyō e no eigyō hyōka. [Tokyo]: Kankyōshō, 2009.

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47

Mitsubishi Materiaru Tekuno Kabushiki Kaisha. Kankyōshō Heisei 20-nendo kūru shitī suishin jigyō "chichū hōnetsu ni yoru dojōnai seitaikei e no eikyō chōsa" hōkokusho =: Investigation on the effect of ground heat disposal on soil ecosystem. [Tokyo]: Mitsubishi Materiaru Tekuno Kabushiki Kaisha, 2009.

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48

M, Felʹdman G., and Institut merzlotovedenii͡a︡ (Akademii͡a︡ nauk SSSR), eds. Posobie po prognozu temperaturnogo rezhima gruntov I͡A︡kutii. I͡A︡kutsk: In-t merzlotovedenii͡a︡ SO AN SSSR, 1988.

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49

Figueroa, J. Ludwig. Monitoring and analysis of data obtained from moisture temperature recording stations. Cleveland, Ohio: Case Western Reserve University, Dept. of Civil Engineering, 2001.

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50

(Firm), Montgomery Watson, and United States. Army. Corps of Engineers. Sacramento District., eds. Final wet weather best management practices and spill contingency plan for operation of soil treatment system using low temperature thermal desorption: Presidio of San Francisco, California. Sacramento, Calif: The Corps, 1996.

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