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1

Paul, Amitesh. Low-Angle Polarized Neutron and X-Ray Scattering from Magnetic Nanolayers and Nanostructures. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-63224-7.

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2

Whipple, Raymond D. Low-speed aerodynamic characteristics of a 1/8-scale X-29A airplane model at high angles of attack and sideslip. Hampton, Va: Langley Research Center, 1986.

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3

Tape, Walter. Atmospheric halos and the search for angle x. Washington, DC: American Geophysical Union, 2006.

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4

Jarmo, Moilanen, ed. Atmospheric halos and the search for angle X. Washington, DC: American Geophysical Union, 2005.

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5

1926-, Brumberger H., ed. Modern aspects of small-angle scattering. Dordrecht: Kluwer Academic Publishers, 1995.

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6

A, Feĭgin L., and Taylor George W, eds. Structure analysis by small-angle x-ray and neutron scattering. New York: Plenum Press, 1987.

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7

Feigin, L. A., and D. I. Svergun. Structure Analysis by Small-Angle X-Ray and Neutron Scattering. Edited by George W. Taylor. Boston, MA: Springer US, 1987. http://dx.doi.org/10.1007/978-1-4757-6624-0.

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8

Carlo, Steven Roy. Small angle x-ray scattering and modelling studies of nitrogenase. Leicester: De MontfortUniversity, 1996.

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9

Morley, Richard. An X-ray study of the low mass X-ray binary XB 1916-053. Birmingham: University of Birmingham, 1999.

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10

Wilson, J. W. X-ray production in low energy proton stopping. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1988.

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11

Lamb, Donald Q., and Joseph Patterson, eds. Cataclysmic Variables and Low-Mass X-Ray Binaries. Dordrecht: Springer Netherlands, 1985. http://dx.doi.org/10.1007/978-94-009-5319-2.

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12

Wilson, J. W. X-ray production in low energy proton stopping. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1988.

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13

Wilson, John W. X-ray production in low energy proton stopping. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1988.

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14

Kerr, Adam Bruce. Determining small-angle rotations of a head from X-ray angiograms. Ottawa: National Library of Canada, 1992.

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15

Schauer, D. A. A low-energy x-ray irradiator for electrophysiological studies. Bethesda, Md: Defense Nuclear Agency, Armed Forces Radiobiology Research Institute, 1988.

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16

Furugren, Bo. Biomolekyler studerade med la gvinkelro ntgenspridning =: Biomolecules studied by small-angle X-ray scattering. Uppsala: Sveriges lantbruksuniversitet, 1987.

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17

Verrill, S. P. JMFA--a graphically interactive java program that fits microfibril angle x-ray diffraction data. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 2001.

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18

Verrill, S. P. JMFA--a graphically interactive java program that fits microfibril angle x-ray diffraction data. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 2001.

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19

Kikō), Foton Fakutorī Kenkyūkai (2004 Kō-enerugī Kasokuki Kenkyū. Kō X-sen o mochiita dainamikku kōzō no kanōsei: Foton Fakutorī Kenkyūkai. Tsukuba-shi: High Energy Accelerator Research Organization, 2005.

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20

Foton Fakutorī Kenkyūkai (2003 Kō-enerugī Kasokuki Kenkyū Kikō). X-sen shōkaku sanran, kaisetsu kenkyū no hatten ni mukete: Genjō to kongo no kadai. [Tsukuba-shi]: High Energy Accelerator Research Organization, 2004.

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21

Verrill, S. P. JMFA 2--a graphically interactive Java program that fits microfibril angle x-ray diffraction data. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 2006.

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22

Verrill, S. P. JMFA 2--a graphically interactive Java program that fits microfibril angle x-ray diffraction data. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 2006.

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23

Christian, Damian Joseph. Spectral and temporal behavior of low mass x-ray binaries observed with the Einstein SSS and MPC, and the Broad Band X-Ray Telescope. [S.l.]: University of Maryland, 1993.

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24

Seller, P. Investigation of a low-energy x-ray spectrometer based on pixellated hybrid silicon detectors. Chilton: Rutherford Appleton Laboratory, 2004.

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25

Siegmund, Oswald H. W. UV, X-ray, and gamma-ray space instrumentation for astronomy XV: 26-27 August, 2007, San Diego, California, USA. Edited by Society of Photo-optical Instrumentation Engineers. Bellingham, Wash: SPIE, 2007.

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26

Zeinolebadi, Ahmad. In-situ Small-Angle X-ray Scattering Investigation of Transient Nanostructure of Multi-phase Polymer Materials Under Mechanical Deformation. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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27

Zeinolebadi, Ahmad. In-situ Small-Angle X-ray Scattering Investigation of Transient Nanostructure of Multi-phase Polymer Materials Under Mechanical Deformation. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-35413-7.

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28

Society of Photo-optical Instrumentation Engineers, ed. UV, X-ray, and gamma-ray space instrumentation for astronomy XV: 26-27 August, 2007, San Diego, California, USA. Bellingham, Wash: SPIE, 2007.

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29

Pająk, Lucjan. Nanoniejednorodoności materiałów a efekt małokątowego rozpraszania promieni rentgenowskich i neutronów. Katowice: Wydawn. Uniwersytetu Śląskiego, 2010.

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30

(Society), SPIE, ed. UV, X-ray, and gamma-ray space instrumentation for astronomy XVI: 3 August 2009, San Diego, California, United States. Bellingham, Wash: SPIE, 2009.

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31

Q, Lamb Donald, and Patterson Joseph, eds. Cataclysmic variables and low-mass X-ray binaries: Proceedings of the 7th North American Workshop held in Cambridge, Massachusetts, U.S.A., January 12-15, 1983. Dordrecht: D. Reidel Pub. Co., 1985.

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32

North American Workshop on Cataclysmic Variables and Low Mass X-ray Binaries (11th 1989 Santa Fe, N.M.). Accretion-powered compact binaries: Proceedings of the 11th North American Workshop on Cataclysmic Variables and Low Mass X-ray Binaries, Santa Fe, NM, October 9-13, 1989. Cambridge: Cambridge University Press, 1990.

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33

Wang, Yinkun. Energy dispersive x-ray diffraction system: A response function for the CZT detector and an analysis of noise a low momentum transfer arguments. Sudbury, Ont: Laurentian University, School of Graduate, 2006.

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34

Deptuch, Grzegorz. Monolityczne detektory pikselowe w zastosowaniu do obrazowania niskoenergetycznych elektronów i miękkiego promieniowania X: Monolithic active pixel sensors in application for imaging of low-energy electrons and soft X-ray photos. Kraków: Wydawnictwa AGH, 2013.

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35

Paul, Amitesh. Low-Angle Polarized Neutron and X-Ray Scattering from Magnetic Nanolayers and Nanostructures. Springer, 2018.

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36

Paul, Amitesh. Low-Angle Polarized Neutron and X-Ray Scattering from Magnetic Nanolayers and Nanostructures. Springer, 2017.

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37

L, Ricket Jonathan, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., eds. Low-speed aerodynamic characteristics of a 1/8-scale X-29A airplane model at high angles of attack and side slip. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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38

L, Ricket Jonathan, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., eds. Low-speed aerodynamic characteristics of a 1/8-scale X-29A airplane model at high angles of attack and side slip. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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39

L, Ricket Jonathan, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch., eds. Low-speed aerodynamic characteristics of a 1/8-scale X-29A airplane model at high angles of attack and side slip. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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40

Low-speed aerodynamic characteristics of a 1/8-scale X-29A airplane model at high angles of attack and side slip. [Washington, DC]: National Aeronautics and Space Administration, Scientific and Technical Information Branch, 1986.

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41

Biological Small Angle Scattering: Theory and Practice. Oxford University Press, 2018.

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42

Rudman, Reuben. Low-Temperature X-Ray Diffraction: Apparatus and Techniques. Springer, 2012.

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43

Siegmund, Oswald. UV, X-Ray, and Gamma-Ray Space Instrumentation for Astronomy XIX. SPIE, 2015.

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44

Small Angle X-Ray and Neutron Scattering from Solutions of Biological Macromolecules. Oxford University Press, 2013.

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45

Timmins, Peter A., Dmitri I. Svergun, and Michel H. J. Koch. Small Angle X-Ray and Neutron Scattering from Solutions of Biological Macromolecules. Oxford University Press, 2020.

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46

United States. National Aeronautics and Space Administration., ed. ROSAT observations of clusters with wide-angle tailed radio sources. Las Cruces, N.M: College of Arts and Sciences, Dept. of Astronomy, New Mexico State University, 1993.

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47

Doniach, Sebastian, and Jan Lipfert. Small-Angle X-Ray Scattering: Applications to Structural Molecular Biology and Biomaterials. Wiley & Sons, Incorporated, John, 2013.

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48

H, Zeman G., Pellmar T. C, and Armed Forces Radiobiology Research Institute (U.S.), eds. A low-energy x-ray irradiator for electrophysiological studies. Bethesda, Md: Defense Nuclear Agency, Armed Forces Radiobiology Research Institute, 1988.

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49

H, Zeman G., Pellmar T. C, and Armed Forces Radiobiology Research Institute (U.S.), eds. A low-energy x-ray irradiator for electrophysiological studies. Bethesda, Md: Defense Nuclear Agency, Armed Forces Radiobiology Research Institute, 1988.

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50

H, Zeman G., Pellmar T. C, and Armed Forces Radiobiology Research Institute (U.S.), eds. A low-energy x-ray irradiator for electrophysiological studies. Bethesda, Md: Defense Nuclear Agency, Armed Forces Radiobiology Research Institute, 1988.

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