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1

Cunha, M. da Conceição. Groundwater characterization, management and monitoring. Southampton: WIT Press, 2011.

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2

Board, Iowa Highway Research. Innovative solutions for slope stability reinforcement and characterization. Ames, Iowa: Center for Transportation Research and Education, Iowa State University, 2005.

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3

1929-, Wilson L. G., Everett Lorne G, and Cullen Stephen J, eds. Handbook of vadose zone characterization & monitoring. Boca Raton: Lewis Publishers, 1995.

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4

Schenderlein, William. Ground water quality monitoring program: Colorado western slope. [Denver, Colo.?]: Colorado Division of Water Resources, Office of the State Engineer, 1993.

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5

Austin, Bradford. Ground water monitoring activities, west slope of Colorado. [Denver, Colo.?]: Agricultural Chemicals Program, Water Quality Control Division, Colorado Dept. of Public Health and Environment, 1998.

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6

Chopra, Satinder. Heavy oils: Reservoir characterization and production monitoring. Tulsa, OK: Society of Exploration Geophysicists, 2010.

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7

Chopra, Satinder. Heavy oils: Reservoir characterization and production monitoring. Tulsa, OK: Society of Exploration Geophysicists, 2010.

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8

U.S. Dept. of Energy. Characterization, monitoring, and sensor technology crosscutting program. [Washington, D.C.?]: U.S. Dept. of Energy, 1995.

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9

Cao, Zijun, Yu Wang, and Dianqing Li. Probabilistic Approaches for Geotechnical Site Characterization and Slope Stability Analysis. Berlin, Heidelberg: Springer Berlin Heidelberg, 2017. http://dx.doi.org/10.1007/978-3-662-52914-0.

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10

Kline, Thomas C. North Slope amphidromy assessment: Final report. [Fairbanks: University of Alaska, Coastal Marine Institute, 1999.

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11

Geological Survey (U.S.), ed. The Sagavanirktok River, North Slope Alaska: Characterization of an Arctic stream. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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12

United States. Dept. of Energy. Office of Science and Technology., ed. Characterization, monitoring & sensor technology crosscutting program: Technology summary. [Washington, D.C.?]: U.S. Dept. of Energy, 1996.

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13

United States. Office of Science And Technology., ed. Characterization, monitoring & sensor technology crosscutting program: Technology summary. [Washington, D.C.?]: U.S. Dept. of Energy, 1996.

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14

United States. Dept. of Energy. Office of Science and Technology., ed. Characterization, monitoring & sensor technology crosscutting program: Technology summary. [Washington, D.C.?]: U.S. Dept. of Energy, 1996.

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15

Service, United States Forest, and Technology & Development Program (U.S.), eds. Simplified user's guide to time-domain-reflectometry monitoring of slope stability. Washington, D.C: U.S. Dept. of Agriculture, Forest Service, National Technology & Development Program, 2009.

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16

Boulding, J. Russell. Subsurface characterization and monitoring techniques: A desk reference guide. Washington, DC: U.S. Environmental Protection Agency, Office of Research and Development, 1994.

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17

U.S. Dept. of Energy. Characterization, monitoring, and sensor technology crosscutting program: Technology summary. Oak Ridge, TN: U.S. Dept. of Energy, 1995.

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18

United States. Dept. of Energy. Office of Technology Development., ed. Characterization, monitoring, and sensor technology crosscutting program: Technology summary. [Washington, D.C.?]: U.S. Dept. of Energy, Office of Environmental Management, Technology Development, 1995.

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19

Inc, Eastern Research Group, Center for Environmental Research Information (U.S.), and Environmental Monitoring Systems Laboratory (Las Vegas, Nev.), eds. Subsurface characterization and monitoring techniques: A desk reference guide. Cincinnati, OH: U.S. Environmental Protection Agency, 1993.

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20

U.S. Dept. of Energy. Characterization, monitoring, and sensor technology integrated program: Poster session handout. [Washington, D.C.]: U.S. Dept. of Energy, Office of Environmental Restoration and Waste Management, Office of Technology Development, 1993.

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21

U.S. Dept. of Energy. Characterization, monitoring, and sensor technology integrated program: Poster session handout. [Washington, D.C.]: U.S. Dept. of Energy, Office of Environmental Restoration and Waste Management, Office of Technology Development, 1993.

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22

David, Nielsen, ed. Practical handbook of environmental site characterization and ground-water monitoring. 2nd ed. Boca Raton, FL: CRC/Taylor & Francis, 2006.

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23

United States. Dept. of Energy. Office of Technology Development, ed. Characterization, monitoring, and sensor technology integrated program: Poster session handout. [Washington, D.C.]: U.S. Dept. of Energy, Office of Environmental Restoration and Waste Management, Office of Technology Development, 1993.

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24

Tracey, Gregory A. Application of in situ UV spectrometry for characterization of harbor sediment. Concord, MA: U.S. Army Corps of Engineers, New England District, 2000.

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25

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Engine materials characterization and damage monitoring by using x-ray technologies. [Washington, DC]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1993.

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26

U.S. Dept. of Energy. Characterization, monitoring, and sensor technology integrated program (CMST-IP): Technology summary. [Washington, D.C.]: U.S. Dept. of Energy, Office of Environmental Management, Office of Technology Development, 1994.

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27

U.S. Dept. of Energy. Characterization, monitoring, and sensor technology integrated program (CMST-IP): Technology summary. Washington, D.C: U.S. Dept. of Energy, 1994.

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28

D, Jindal G., and Bhabha Atomic Research Centre, eds. Medical analyzer for the study of physiological variability and disease characterization. Mumbai: Bhabha Atomic Research Centre, 2003.

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29

Ulusay, R., ed. The ISRM Suggested Methods for Rock Characterization, Testing and Monitoring: 2007-2014. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-07713-0.

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30

Cheung, Katrina. Chemical and isotopic characterization of shallow groundwater from selected monitoring wells in Alberta: 2006-2007. [Edmonton]: Alberta Environment, 2009.

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31

Hempen, Gregory Lynn. Geophysical methods for hazardous waste site characterization: Course notes. Sudbury, Mass: Association of Engineering Geologists, 1992.

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32

Smith, Gary Frederick. Monitoring Maryland's Chesapeake Bay oysters: A comprehensive characterization of modified fall survey results, 1990-1991. Oxford, Md. (904 S. Morris St., Oxford 21654): Maryland Dept. of Natural Resources, Chesapeake Bay Research and Monitoring Division, Habitat Impacts Program, Cooperative Oxford Laboratory, 1992.

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33

United States. Department of Energy. Office of Science and Technology. Alternative landfill cover: Subsurface contaminants focus area and characterization, monitoring, and sensor technology crosscutting program. Washington, D.C.]: U.S. Dept. of Energy, Office of Environmental Management, Office of Science and Technology, 2000.

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34

Center, Lewis Research, ed. X-ray attenuation measurements for high-temperature materials characterization and in-situ monitoring of damage accumulation. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1992.

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35

Center, Lewis Research, ed. X-ray attenuation measurements for high-temperature materials characterization and in-situ monitoring of damage accumulation. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1992.

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36

M, Heffernan Linda, Coastal Marine Institute (Baton Rouge, La.), and United States. Minerals Management Service. Gulf of Mexico OCS Region, eds. Development and characterization of sea anemones as bioindicators of offshore resource exploitation and environmental impact. [New Orleans, La.]: U.S. Dept. of the Interior, Minerals Management Service, Gulf of Mexico OCS Region, 1999.

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37

Soh, Chee-Kiong. Smart Materials in Structural Health Monitoring, Control and Biomechanics. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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38

A, Bertrand W., Hite Robert L, Day D. M, Biological Streams Characterization Work Group., and Illinois Bureau of Water, eds. Biological stream characterization (BSC): Biological assessment of Illinois stream quality through 1993. Springfield, Ill. (2200 Churchill Rd., Springfield 62794-9276: Illinois Environmental Protection Agency, Bureau of Water, 1996.

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39

Tynan, Cynthia. Characterization of the oceanographic habitat of cetaceans in the southern Indian Ocean between 82⁰-115⁰ E: Cruise report from World Ocean Circulation Experiment (WOCE) I8S and I9S. Seattle, WA: U.S. Dept. of Commerce, National Oceanic and Atmoospheric Administration, National Marine Fisheries Service, Alaska Fisheries Science Center, 1996.

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40

F, Radke Lawrence, and Pacific Northwest Research Station (Portland, Or.), eds. Airborne monitoring and smoke characterization of prescribed fires on forest lands in western Washington and Oregon: Final report. Portland, Or. (319 S.W. Pine Street): U.S. Dept. of Agriculture, Forest Service, Pacific Northwest Research Station, 1990.

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41

Saponaro, Sabrina. Vapor emission to outdoor air and enclosed spaces for human health risk assessment: Site characterization, monitoring, and modeling. Hauppauge, N.Y: Nova Science Publishers, 2011.

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42

Archuleta, Christy-Ann M. Automated delineation and characterization of watersheds for more than 3,000 surface-water-quality monitoring stations active in 2010 in Texas. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2012.

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43

Guidelines for Slope Performance Monitoring. Taylor & Francis Group, 2020.

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44

Sharon, Robert, and Erik Eberhardt, eds. Guidelines for Slope Performance Monitoring. CSIRO Publishing, 2020. http://dx.doi.org/10.1071/9781486311002.

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Abstract:
Although most mining companies utilise systems for slope monitoring, experience indicates that mining operations continue to be surprised by the occurrence of adverse geotechnical events. A comprehensive and robust performance monitoring system is an essential component of slope management in an open pit mining operation. The development of such a system requires considerable expertise to ensure the monitoring system is effective and reliable. Written by instrumentation experts and geotechnical practitioners, Guidelines for Slope Performance Monitoring is an initiative of the Large Open Pit (LOP) Project and the fifth book in the Guidelines for Open Pit Slope Design series. Its 10 chapters present the process of establishing and operating a slope monitoring system; the fundamentals of pit slope monitoring instrumentation and methods; monitoring system operation; data acquisition, management and analysis; and utilising and communicating monitoring results. The implications of increased automation of mining operations are also discussed, including the future requirements of performance monitoring. Guidelines for Slope Performance Monitoring summarises leading mine industry practice in monitoring system design, implementation, system management, data management and reporting, and provides guidance for engineers, geologists, technicians and others responsible for geotechnical risk management.
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45

Environmental Monitoring and Characterization. Elsevier, 2004. http://dx.doi.org/10.1016/b978-0-12-064477-3.x5000-0.

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46

Artiola, Janick, Mark L. Brusseau, and Ian L. Pepper. Environmental Monitoring and Characterization. Academic Press, 2004.

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47

Environmental Monitoring and Characterization. Academic Press, 2004.

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48

Artiola, Janick, Mark L. Brusseau, and Ian L. Pepper. Environmental Monitoring and Characterization. Elsevier Science & Technology Books, 2004.

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49

Advances in Unstable Slope Instrumentation and Monitoring. Washington, D.C.: Transportation Research Board, 2020. http://dx.doi.org/10.17226/25897.

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50

Everett, Lorne G., L. Gray Wilson, and Stephen J. Cullen. Handbook of Vadose Zone Characterization and Monitoring. Taylor & Francis Group, 2018.

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