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1

Shirer, Hampton N., ed. Nonlinear Hydrodynamic Modeling: A Mathematical Introduction. Berlin, Heidelberg: Springer Berlin Heidelberg, 1987. http://dx.doi.org/10.1007/3-540-17557-1.

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2

N, Shirer Hampton, ed. Nonlinear hydrodynamic modeling: A mathematical introduction. Berlin: Springer-Verlag, 1987.

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3

Shirer, Hampton N. Nonlinear Hydrodynamic Modeling: A Mathematical Introduction. Berlin, Heidelberg: Springer Berlin Heidelberg, 1987.

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4

Constructive modeling of structural turbulence and hydrodynamic instabilities. New Jersey: World Scientific, 2009.

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5

Belot︠s︡erkovskiĭ, O. M. Constructive modeling of structural turbulence and hydrodynamic instabilities. New Jersey: World Scientific, 2009.

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6

Belot͡serkovskiĭ, O. M. Constructive modeling of structural turbulence and hydrodynamic instabilities. New Jersey: World Scientific, 2009.

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7

Geiger, Sam R. Hydrodynamic modeling of towed buoyant submarine antenna's in multidirectional seas. Springfield, Va: Available from National Technical Information Service, 2000.

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8

Peng, Jian. An integrated geochemical and hydrodynamic model for tidal coastal environments. Los Angeles, CA: University of Southern California, 2006.

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9

Measurement of soil-borne lead bioavailability in human adults, and its application in biokinetic modeling. [New York]: [Columbia University], 1998.

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10

Rahmani, M. Hydrodynamic modeling of corrosion of carbon steels and cast irons in sulfuric acid. Houston, TX: Published for the Materials Technology Institute of the Chemical Process Industries by the National Association of Corrosion Engineers, 1992.

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11

Anastassakis, Georgios N. Hydrodynamic modeling and optimization of processes in flotation cells with external air-blow. [New York]: Knovel, 2011.

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12

Advances in data-based approaches for hydrologic modeling and forecasting. Singapore: World Scientific, 2010.

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13

A, Ostrovskiĭ L., and Environmental Technology Laboratory (Oceanic and Atmospheric Research Laboratories), eds. Laboratory modeling and theoretical studies of hydrodynamic motions around a sphere moving in a thermocline. Boulder, Colo: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Oceanic and Atmospheric Research Laboratories, Environmental Technology Laboratory, 2001.

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14

J, Brogdon Noble, and Hydraulics Laboratory (U.S.), eds. Cumberland Sound and Kings Bay pre-Trident and basic Trident channel hydrodynamic and sediment transport hybrid modeling. Vicksburg, Miss: US Army Corps of Engineers, Hydraulics Laboratory, 1990.

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15

Kalwij, Ineke Margôt. Assessing the field irrigation performance and alternative management options for basin surface irrigation systems through hydrodynamic modeling. Lahore: Pakistan National Program, International Irrigation Management Institute, 1996.

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16

J, Brogdon Noble, and Hydraulics Laboratory (U.S.), eds. Cumberland Sound and Kings Bay pre-Trident and basic Trident channel hydrodynamic and sediment transport hybrid modeling. Vicksburg, Miss: US Army Corps of Engineers, Hydraulics Laboratory, 1990.

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17

A, Granat Mitchell, and Hydraulics Laboratory (U.S.), eds. Verification of the hydrodynamic and sediment transport hybrid modeling system for Cumberland Sound and Kings Bay navigation channel, Georgia. Vicksburg, Miss: US Army Corps of Engineers, Hydraulics Laboratory, 1989.

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18

Holtschlag, David J. Detection of conveyance changes in St. Clair River using historical water-level and flow data with inverse one-dimensional hydrodynamic modeling. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2009.

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19

D, Boon John, Virginia. Dept. of Transportation., and Virginia Institute of Marine Science., eds. Three dimensional hydrodynamic-sedimentation modeling study: Hampton Roads Crossing, Lower James River, Virginia : a report to the Virginia Department of Transportation. Gloucester Point, Va: Virginia Institute of Marine Science, Dept. of Physical Science, 1999.

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20

Holtschlag, David J. Detection of conveyance changes in St. Clair River using historical water-level and flow data with inverse one-dimensional hydrodynamic modeling. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2009.

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21

Holtschlag, David J. Detection of conveyance changes in St. Clair River using historical water-level and flow data with inverse one-dimensional hydrodynamic modeling. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2009.

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22

Holtschlag, David J. Detection of conveyance changes in St. Clair River using historical water-level and flow data with inverse one-dimensional hydrodynamic modeling. Reston, Va: U.S. Dept. of the Interior, U.S. Geological Survey, 2009.

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23

1954-, Mount Jeffrey F., California Energy Commission. Public Interest Energy Research., and University of California, Davis. Center for Watershed Sciences., eds. Pulsed-flow effects on foothill yellow-legged frog (Rana boylii): Integration of empirical, experimental, and hydrodynamic modeling approaches : first-year progress report : PIER interim project report. [Sacramento, Calif.]: California Energy Commission, 2008.

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24

Jenkins, Scott A. Hydrodynamic modeling of dispersion and dilution of concentrated seawater produced by the ocean desalination project at the Encina Power Plant, Carlsbad, CA, Part II: Saline anomalies due to theoretical extreme case hydraulic scenarios. San Diego, CA: Poseidon Resources, 2005.

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25

Shirer, Hampton N. Nonlinear Hydrodynamic Modeling: A Mathematical Introduction. Springer, 2014.

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26

Riahi, D. N. Mathematical Modeling and Simulation in Hydrodynamic Stability. WORLD SCIENTIFIC, 1996. http://dx.doi.org/10.1142/2794.

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27

Mathematical Modeling and Simulation in Hydrodynamic Stability. World Scientific Publishing Company, 1996.

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28

Lake Michigan mass balance study: Hydrodynamic modeling project. Ann Arbor, Mich: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Great Lakes Environmental Research Laboratory, 1998.

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29

Belotserkovskii, O. M. Constructive Modeling of Structural Turbulence and Hydrodynamic Instabilities. World Scientific Publishing Co Pte Ltd, 2009.

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30

Shirer, Hampton N. Nonlinear Hydrodynamic Modeling: A Mathematical Introduction (Lecture Notes in Physics). Springer-Verlag, 1987.

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31

Waterbody Hydrodynamic and Water Quality Modeling: An Introductory Workbook and CD-ROM on Three-Dimensional Waterbody Modeling. American Society of Civil Engineers, 2001.

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32

Review of the Department of Defense Biokinetic Modeling Approach in Support of Establishing an Airborne Lead Exposure Limit. Washington, D.C.: National Academies Press, 2020. http://dx.doi.org/10.17226/25683.

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33

Committee to Review DoD?s Proposed Occupational Exposure Limits for Lead, Board on Environmental Studies and Toxicology, Division on Earth and Life Studies, and National Academies of Sciences, Engineering, and Medicine. Review of the Department of Defense Biokinetic Modeling Approach in Support of Establishing an Airborne Lead Exposure Limit. National Academies Press, 2020.

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34

Board on Environmental Studies and Toxicology, Division on Earth and Life Studies, National Academies of Sciences, Engineering, and Medicine, and Committee to Review DoDâ¬"s Proposed Occupational Exposure Limits for Lead. Review of the Department of Defense Biokinetic Modeling Approach in Support of Establishing an Airborne Lead Exposure Limit. National Academies Press, 2020.

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35

Board on Environmental Studies and Toxicology, Division on Earth and Life Studies, National Academies of Sciences, Engineering, and Medicine, and Committee to Review DoDâ¬"s Proposed Occupational Exposure Limits for Lead. Review of the Department of Defense Biokinetic Modeling Approach in Support of Establishing an Airborne Lead Exposure Limit. National Academies Press, 2020.

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36

Committee to Review DoD?s Proposed Occupational Exposure Limits for Lead, Board on Environmental Studies and Toxicology, Division on Earth and Life Studies, and National Academies of Sciences, Engineering, and Medicine. Review of the Department of Defense Biokinetic Modeling Approach in Support of Establishing an Airborne Lead Exposure Limit. National Academies Press, 2020.

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