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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 34, 1977 - Issue 2
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Original Articles

Liquid water

I. Electron scattering

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Pages 505-524 | Received 16 Feb 1977, Published online: 22 Aug 2006

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Read on this site (4)

J. C. Dore , M. Garawi & M.-C. Bellissent-Funel. (2004) Neutron diffraction studies of the structure of water at ambient temperatures, revisited [a review of past developments and current problems]. Molecular Physics 102:19-20, pages 2015-2035.
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Hidesuke Yadaka. (1984) On the Structure of Liquid Water and the Refractive Indices in Visible Light Region. Physics and Chemistry of Liquids 13:3, pages 203-230.
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A.Y. Wu, E. Whalley & G. Dolling. (1982) Neutron diffraction of heavy water to 15·6 kbar. Molecular Physics 47:3, pages 603-628.
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G. Pálinkás, E. Kálmán & P. Kovács. (1977) Liquid water. Molecular Physics 34:2, pages 525-537.
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Articles from other publishers (41)

M. B. de Kock, S. Azim, G. H. Kassier & R. J. D. Miller. (2020) Determining the radial distribution function of water using electron scattering: A key to solution phase chemistry. The Journal of Chemical Physics 153:19.
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Yu. V. Novakovskaya. (2020) Hydrogen-bond Network of Water and Irradiation Effects. Physics of Wave Phenomena 28:2, pages 161-167.
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A. K. Soper. (2013) The Radial Distribution Functions of Water as Derived from Radiation Total Scattering Experiments: Is There Anything We Can Say for Sure?. ISRN Physical Chemistry 2013, pages 1-67.
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Yan Zubavichus, Yongjie Yang, Michael Zharnikov, Oliver Fuchs, Thomas Schmidt, Clemens Heske, Eberhard Umbach, George Tzvetkov, Falko P. Netzer & Michael Grunze. (2004) Local Structure of Amorphous Ice as Revealed by O K‐Edge EXAFS. ChemPhysChem 5:4, pages 509-514.
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László Pusztai. (1999) Partial pair correlation functions of liquid water. Physical Review B 60:17, pages 11851-11854.
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Philippe A. Bopp, Alexei A. Kornyshev & Godehard Sutmann. (1998) Frequency and wave-vector dependent dielectric function of water: Collective modes and relaxation spectra. The Journal of Chemical Physics 109:5, pages 1939-1958.
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Der-Ming Duh, Donna N. Perera & A. D. J. Haymet. (1995) Structure and properties of the CF1 central force model of water: Integral equation theory. The Journal of Chemical Physics 102:9, pages 3736-3746.
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Helmut Bertagnolli & Teja S. Ertel. (2003) X‐Ray Absorption Spectroscopy of Amorphous Solids, Liquids, and Catalytic and Biochemical Systems—Capabilities and Limitations. Angewandte Chemie International Edition in English 33:1, pages 45-66.
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Helmut Bertagnolli & Teja S. Ertel. (2006) Röntgenabsorptionsspektroskopie an amorphen Festkörpern, Flüssigkeiten, katalytischen und biochemischen Systemen — Möglichkeiten und Grenzen. Angewandte Chemie 106:1, pages 15-37.
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D. M. Blakey. 1994. Hydrogen Bond Networks. Hydrogen Bond Networks 381 388 .
M. C. Bellissent-Funel, L. Bosio, A. Hallbrucker, E. Mayer & R. Sridi-Dorbez. (1992) X-ray and neutron scattering studies of the structure of hyperquenched glassy water. The Journal of Chemical Physics 97:2, pages 1282-1286.
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C. A. Sacchi. (1991) Laser-induced electric breakdown in water. Journal of the Optical Society of America B 8:2, pages 337.
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P. Bopp. 1991. Intermolecular Forces. Intermolecular Forces 337 366 .
N Ohtori, S Okazaki, O Odawara, I Okada, M Misawa & T Fukunaga. (1990) Pulsed neutron diffraction study on a molten NaOD structure using a nickel metal cell. Journal of Physics: Condensed Matter 2:26, pages 5825-5832.
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B. X. Yang & J. Kirz. (1987) Extended x-ray-absorption fine structure of liquid water. Physical Review B 36:2, pages 1361-1364.
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I. I. Sheikhet, V. N. Levchuk & B. Ya. Simkin. (1987) New boundary conditions in monte carlo methods: Calculations on pure water. Journal of Structural Chemistry 28:2, pages 222-226.
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Philippe Bopp. 1987. Software-Entwicklung in der Chemie 1. Software-Entwicklung in der Chemie 1 69 98 .
D. Levesque, J. J. Weis & J. P. Hansen. 1987. Applications of the Monte Carlo Method in Statistical Physics. Applications of the Monte Carlo Method in Statistical Physics 37 91 .
Klaus‐Dietmar Merboldt & Jens Frahm. (2010) 1 H‐NMR Relaxation Study of Water in Binary Solvent Mixtures in the Absence and Presence of Electrolytes . Berichte der Bunsengesellschaft für physikalische Chemie 90:7, pages 614-621.
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M. Wojcik & E. Clementi. (1986) Molecular dynamics simulation of liquid water with three-body forces included. The Journal of Chemical Physics 84:10, pages 5970-5971.
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Yukio Tanaka, Norio Ohtomo & Kiyoshi Arakawa. (1985) The Structure of Liquid Alcohols by Neutron and X-ray Diffraction. III. Liquid Structure of Methanol. Bulletin of the Chemical Society of Japan 58:1, pages 270-276.
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G. Kabisch, E. Kálmán, G. Pálinkás, T. Radnai & F. Gaizer. (1984) Complex formation and solvation of zinc bromide in N,N-dimethylformamide solution: An electron diffraction and Raman study. Chemical Physics Letters 107:4-5, pages 463-468.
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D. Levesque, J. J. Weis & J. P. Hansen. 1984. Applications of the Monte Carlo Method in Statistical Physics. Applications of the Monte Carlo Method in Statistical Physics 37 91 .
Othmar Steinhauser. (2010) On the Orientational Structure and Dielectric Properties of Water. A Comparison of ST2 and MCY Potential. Berichte der Bunsengesellschaft für physikalische Chemie 87:2, pages 128-142.
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B. Ya. Simkin & I. I. Sheikhet. (1983) Characteristic features of calculations of the structure of solutions by the Monte Carlo method. Journal of Structural Chemistry 24:1, pages 65-69.
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P. A. Egelstaff. 1983. Advances in Chemical Physics. Advances in Chemical Physics 1 60 .
R.W. Impey, P.A. Madden & I.R. McDonald. (1982) Oxygen-oxygen correlations in liquid water. Chemical Physics Letters 88:6, pages 589-594.
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Elmar Wolfgang Lang & Hans‐Dietrich Lüdemann. (2003) Anomalies of Liquid Water. Angewandte Chemie International Edition in English 21:5, pages 315-329.
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Elmar Wolfgang Lang & Hans‐Dietrich Lüdemann. (2006) Anomalien des flüssigen Wassers. Angewandte Chemie 94:5, pages 351-365.
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M. D. Zeidler. (1982) Strukturuntersuchungen an molekularen Flüssigkeiten. Zeitschrift für Physikalische Chemie 133:1, pages 1-23.
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Michael D. Morse & Stuart A. Rice. (1982) Tests of effective pair potentials for water: Predicted ice structures. The Journal of Chemical Physics 76:1, pages 650-660.
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B. Wojciechowski. (1981) Structural phase transitions in saturated aqueous solutions. Journal of Crystal Growth 52, pages 824-828.
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A.A. Kornyshev. (1981) Nonlocal screening of ions in a structurized polar liquid — new aspects of solvent description in electrolyte theory. Electrochimica Acta 26:1, pages 1-20.
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A.A. Kornyshev & M.A. Vorotyntsev. (1980) Nonlocal electrostatic approach to the double layer and adsorption at the electrode-electrolyte interface. Surface Science 101:1-3, pages 23-48.
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Manfred D. Zeidler. (2003) The Structure of Simple Molecular Liquids. Angewandte Chemie International Edition in English 19:9, pages 697-708.
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Manfred D. Zeidler. (1980) Struktur einfacher molekularer Flüssigkeiten. Angewandte Chemie 92:9, pages 700-712.
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P Kovacs, L Haklik & E Kalman. (1980) Microdensitometer for reading electron intensities of non-crystalline substances. Journal of Physics E: Scientific Instruments 13:8, pages 819-820.
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D. Grand, A. Bernas & E. Amouyal. (1979) Photoionization of aqueous indole: Conduction band edge and energy gap in liquid water. Chemical Physics 44:1, pages 73-79.
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Mark G. Sceats, M. Stavola & Stuart A. Rice. (1979) A zeroth order random network model of liquid water. The Journal of Chemical Physics 70:8, pages 3927-3938.
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E Kalman, P Kovacs, L Haklik & G Palinkas. (1978) A new sector device for electron diffraction studies on liquids. Journal of Physics E: Scientific Instruments 11:4, pages 361-363.
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I.C. Baianu, N. Boden, D. Lightowlers & M. Mortimer. (1978) A new approach to the structure of concentrated aqueous electrolyte solutions using pulsed NMR methods. Chemical Physics Letters 54:1, pages 169-175.
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