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1

Kirschner, F. E. Delineation of near-surface preferential pathways of contaminant transport within the unsaturated zone using soil-gas: A new method for hydrogeological site characterization and evaluation. s.n, 1993.

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2

Bidlake, W. R. Near-surface water balance of an undeveloped upland site in West-Central Florida. U.S. G.P.O., 1996.

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3

Gray, J. R. Runoff, sediment transport, and surface collapse at a low-level radioactive-waste burial site near Sheffield, Illinois. s.n, 1985.

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4

Miner, James J. Orangeville potential wetland compensation site: Final hydrogeologic characterization report : Illinois Route 26, near Orangeville, Stephenson County, Illinois (Federal Aid Project 316). Illinois State Geological Survey, 1997.

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5

Miner, James J. Plainfield potential wetland compensation site: Final hydrogeologic characterization report : Illinois Route 59, near Plainfield, Will County, Illinois (Federal Aid Project 338). Illinois State Geological Survey, 1997.

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6

Eddy-Miller, Cheryl A. Characterization of interactions between surface water and near-stream groundwater along Fish Creek, Teton County, Wyoming, by using heat as a tracer. U.S. Geological Survey, 2009.

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7

Miner, James J. Van Patten Woods potential wetland compensation site: Final hydrogeologic characterization report : Illinois Route 173, near Rosecrans, Lake County, Illinois (Federal Aid Project 303). Illinois State Geological Survey, 1997.

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8

Bauer, Robert A. Characterization of coal mine subsidence and impacts on bedrock and near surface hydrology over a shallow high-extraction retreat mining operation in Illinois. s.n, 1987.

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9

Meyer, Kathleen R. Characterization of releases to surface water from the Rocky Flats Plant: Task 2, verification and analysis of source terms. Radiological Assessments Corporation, 1999.

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10

Gaggiani, Neville G. Effects of land disposal of municipal sewage sludge on soil, streambed sediment, and ground- and surface-water quality at a site near Denver, Colorado. U.S. Dept. of the Interior, U.S. Geological Survey, 1991.

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11

Hall, David W. Evaluation of agricultural best-management practices in the Conestoga River Headwaters, Pennsylvania: Effects of nutrient management on quality of surface runoff at a small carbonate-rock site near Ephrata, Pennsylvania, 1984-90. U.S. Dept. of the Interior, U.S. Geological Survey, 1997.

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12

Surface Wave Methods for near-Surface Site Characterization. Taylor & Francis Group, 2017.

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13

Foti, Sebastiano, Carlo Lai, Glenn J. Rix, and Claudio Strobbia. Surface Wave Methods for Near-Surface Site Characterization. CRC Press, 2014. http://dx.doi.org/10.1201/b17268.

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14

Surface Wave Methods For Nearsurface Site Characterization. CRC Press, 2012.

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15

United States. National Aeronautics and Space Administration., ed. Near-surface geologic units exposed along Ares Vallis and in adjacent areas: A potential source of sediment at the Mars Pathfinder landing site. National Aeronautics and Space Administration, 1997.

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16

United States. National Aeronautics and Space Administration., ed. Near-surface geologic units exposed along Ares Vallis and in adjacent areas: A potential source of sediment at the Mars Pathfinder landing site. National Aeronautics and Space Administration, 1997.

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17

Near-surface geologic units exposed along Ares Vallis and in adjacent areas: A potential source of sediment at the Mars Pathfinder landing site. National Aeronautics and Space Administration, 1997.

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18

Near-surface geologic units exposed along Ares Vallis and in adjacent areas: A potential source of sediment at the Mars Pathfinder landing site. National Aeronautics and Space Administration, 1997.

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19

L, Blad Blaine, University of Nebraska--Lincoln. Dept. of Agricultural Meteorology., and United States. National Aeronautics and Space Administration., eds. Measuring and modeling near-surface reflected and emitted radiation fluxes at the FIFE site: Final report for period April 15, 1987-May 31, 1990. Dept. of Agricultural Meteorology, Institute of Agriculture and Natural Resources, University of Nebraska--Lincoln, 1990.

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20

L, Blad Blaine, University of Nebraska--Lincoln. Dept. of Agricultural Meteorology., and United States. National Aeronautics and Space Administration., eds. Measuring and modeling near-surface reflected and emitted radiation fluxes at the FIFE site: Final report for period April 15, 1987-May 31, 1990. Dept. of Agricultural Meteorology, Institute of Agriculture and Natural Resources, University of Nebraska--Lincoln, 1990.

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21

L, Blad Blaine, and United States. National Aeronautics and Space Administration, eds. Measuring and modeling near surface reflected and emitted radiation fluxes at the FIFE site: Semi-annual status report for April 15, 1987 - February 29, 1988. Center for Agricultural Meteorology and Climatology and Dept. of Agronomy, Instiute of Agriculture and Natural Resources, University of Nebraska-Lincoln, 1988.

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22

Hayazawa, Norihiko, and Prabhat Verma. Nanoanalysis of materials using near-field Raman spectroscopy. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.10.

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This article describes the use of tip-enhanced near-field Raman spectroscopy for the characterization of materials at the nanoscale. Tip-enhanced near-field Raman spectroscopy utilizes a metal-coated sharp tip and is based on surface-enhanced Raman scattering (SERS). Instead of the large surface enhancement from the metallic surface in SERS, the sharp metal coated tip in the tip-enhanced Raman scattering (TERS) provides nanoscaled surface enhancement only from the sample molecules in the close vicinity of the tip-apex, making it a perfect technique for nanoanalysis of materials. This article f
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23

L, Lietman Patricia, Pennsylvania. Dept. of Environmental Protection, and Geological Survey (U.S.), eds. Evaluation of agricultural best-management practices in the Conestoga River headwaters, Pennsylvania: Characterization of surface-runoff and ground-water quantity and quality in a small carbonate basin near Churchtown, Pennsylvania, prior to terracing and implementation of nutrient management. U.S. Dept. of the Interior, U.S. Geological Survey, 1996.

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