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1

Geological Survey (U.S.). GIS surface effects archive of underground nuclear detonations conducted at Yucca Flat and Pahute Mesa, Nevada Test Site, Nevada. The Survey, 2001.

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2

Frassinelli, Mark C. Effect of tail size reductions on longitudinal aerodynamic characteristics of a three-surface F-15 model with nonaxisymmetric nozzles. Langley Research Center, 1990.

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3

Geological Survey (U.S.), ed. GIS Surface Effects Map Archive, Nevada Test Site, Nevada, U.S. Geological Survey, Open-File Report 03-151, 2003, (CD-ROM). s.n., 2003.

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4

Kontakiotis, Ioannis T. The effect of volume fraction, specific surface and age on the first crack load and size of ferrocement in flexure. UMIST, 1997.

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5

Kondo, Jun, and A. Yoshimori, eds. Fermi Surface Effects. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-642-83425-7.

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6

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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7

Aliofkhazraei, Mahmood. Nanocoatings: Size Effect in Nanostructured Films. Springer-Verlag Berlin Heidelberg, 2011.

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8

Geological Survey (U.S.), ed. GIS Surface Effects Archive of Underground Nuclear Detonations Constructed at Yucca Flat and Pahute Mesa, Nevada Test Site, Nevada, U.S. Geological Survey, Open-File Report 01-272, 2001. s.n., 2001.

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9

Fiorani, Dino, ed. Surface Effects in Magnetic Nanoparticles. Springer US, 2005. http://dx.doi.org/10.1007/b136494.

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10

Altenbach, Holm, and Nikita F. Morozov, eds. Surface Effects in Solid Mechanics. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-35783-1.

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11

Media, Springer Science+Business, ed. Surface effects in magnetic nanoparticles. Springer, 2005.

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12

Tripp, John H. Surface roughness effects in elastohydrodynamic contacts. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1985.

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13

Tripp, John H. Surface roughness effects in elastohydrodynamic contacts. National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1985.

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14

Kopsalis, Ioannis. Surface Effects in Segmented Silicon Sensors. Staats- und Universitätsbibliothek Hamburg, 2017.

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15

G, Einspruch Norman, and Bauer Robert S, eds. Surface and interface effects in VLSI. Academic Press, 1985.

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16

Czanderna, Alvin W., Theodore E. Madey, and Cedric J. Powell, eds. Beam Effects, Surface Topography, and Depth Profiling in Surface Analysis. Springer US, 2002. http://dx.doi.org/10.1007/b119182.

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17

1930-, Czanderna Alvin Warren, Madey Theodore E, and Powell C. J, eds. Beam effects, surface topography, and depth profiling in surface analysis. Plenum Press, 1998.

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18

Luyten, Hans, Maria Hendriks, and Jaap Scheerens. School Size Effects Revisited. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-06814-5.

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19

Kuncser, Victor, and Lucica Miu, eds. Size Effects in Nanostructures. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-44479-5.

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20

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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21

Dziedzic, Dilcele Silva Moreira. Effects of implant surface topography on osteoconduction. Faculty of Dentistry, University of Toronto], 1995.

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22

Schulze, Volker. Modern mechanical surface treatment: States, stability, effects. Wiley-VCH, 2006.

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23

Maracy, Majid. Hysteresis and surface effects in transition boiling. University of Birmingham, 1988.

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24

1952-, Winston Clifford, ed. The Economic effects of surface freight deregulation. Brookings Institution, 1990.

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25

International Conference on Computer Methods and Experimental Measurements for Surface Treatment Effects (6th 2003 Crete, Greece). Surface treatment VI: Computer methods and experimental measurements for surface treatment effects. Edited by Brebbia C. A, Hosson, J. T. M. de., and Nishida S. WIT, 2003.

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26

Borstel, Gunnar, Andris Krumins, and Donats Millers, eds. Defects and Surface-Induced Effects in Advanced Perovskites. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-011-4030-0.

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27

Peng, S. S. Topographical effects of surface subsidence - a case study. s.n, 1987.

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28

Zaretsky, Erwin V. Effects of surface removal on rolling-element fatigue. National Aeronautics and Space Administration, 1987.

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29

I, Bowles R., Smith F. T. 1948-, and Langley Research Center, eds. Surface--cooling effects on compressible boundary--layer instability. National Aeronautics and Space Administration, Langley Research Center, 1990.

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30

Great Britain. Scottish Office Development Department. Controlling the environmental effects of surface mineral workings. Scottish Office Development Department, 1998.

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31

Jing, Tao. Surface charge accumulation in SF6: Mechanisms and effects. Delft University Press, 1993.

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32

Dollhopf, Douglas J. Effects of surface manipulation on mined land reclamation. s.n, 1985.

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33

Cairns-McFeeters, Eugenia L. Effects of surface-based ducts on electromagnetic systems. Naval Postgraduate School, 1992.

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34

Gunnar, Borstel, Krūmin̳š A, Millers Donats, and NATO Advanced Research Workshop on Defects and Surface-Induced Effects in Advanced Perovskites (1999 : Jūrmala, Latvia), eds. Defects and surface-induced effects in advanced perovskites. Kluwer Academic Publishers, 2000.

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35

Seddougui, Sharon O. Surface-cooling effects on compressible boundary-layer instability. Institute for Computer Applications in Science and Engineering, 1990.

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36

Borstel, Gunnar. Defects and Surface-Induced Effects in Advanced Perovskites. Springer Netherlands, 2000.

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37

I, Bowles R., Smith F. T. 1948-, and Langley Research Center, eds. Surface--cooling effects on compressible boundary--layer instability. National Aeronautics and Space Administration, Langley Research Center, 1990.

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38

National Research Council (U.S.). Water Science and Technology Board. Committee on Ground Water Recharge in Surface-Mined Areas. Surface coal mining effects on ground water recharge. National Academy Press, 1990.

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39

Protection, Kentucky Dept for Natural Resources and Environmental. Regulations for the strip mining of coal, surface effects of underground coal mining, surface effects of non-coal mining. Commonwealth of Kentucky, Dept. for Natural Resources and Environmental Protection, Bureau of Surface Mining Reclamation and Enforcement, 1988.

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40

J, Azzam M. O., Mann J. A, and Lewis Research Center, eds. Effect of gravity on surface tension. National Aeronautics and Space Administration, Lewis Research Center, 1998.

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41

Altenbach, Holm. Surface Effects in Solid Mechanics: Models, Simulations and Applications. Springer Berlin Heidelberg, 2013.

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42

International, Conference on Computer Methods and Experimental Measurements for Surface Treatment Effects (1st 1993 Southampton Eng ). Computer methods and experimental measurements for surface treatment effects. Computational Mechanics Publications, 1993.

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43

Prudhoe, J. Slow speed 'dynamic' axle weighers: Effects of surface irregularities. Transport and Road Research Laboratory, Vehicles Group, Vehicle and Environment Division, 1988.

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44

Shortall, A. C. Composite inlay/luting resin bond strength - surface treatment effects. Elsevier Science, 1996.

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45

S, Lefohn Allen, ed. Surface level ozone exposures and their effects on vegetation. Lewis Publishers, 1992.

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46

1917-, Prigogine Ilya, and Rice Stuart A. 1932-, eds. Evolution of size effects in chemical dynamics. Wiley, 1988.

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47

Shulepov, S. Yu. Surface Roughness & Particle Size Effect in Brownian Coagulation. Delft Univ Pr, 1997.

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48

Fermi Surface Effects. Springer-Verlag Berlin and Heidelberg GmbH & Co. K, 1988.

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49

Fermi Surface Effects. Island Press, 1988.

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50

Narlikar, A. V. Small Superconductors—Introduction. Edited by A. V. Narlikar. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780198738169.013.1.

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Abstract:
This article provides an overview of small superconductors, including some of the basic definitions, prominent characteristics, and important effects manifested by such materials. In particular, it discusses size effects, surface effects, electron-mean-free-path effects, phase slips, unusual vortex states, and proximity effects. The article first considers the two characteristic length scales of superconductors, namely the magnetic penetration depth and coherence length, before proceeding with an analysis of two size effects that account for how superconductivity responds when the bulk sample
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