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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 27, 1974 - Issue 4
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Original Articles

The pair potential energy function for krypton

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Pages 867-872 | Received 01 Aug 1973, Published online: 22 Aug 2006

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Read on this site (12)

Amir H. Jalili, Ali Abbaspour, Hassan Behnejad & Larry A. Viehland. (2010) Determination of and interaction potentials from gaseous ion mobility data. Molecular Physics 108:1, pages 35-40.
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JEREMYM. HUTSON & BRIANJ. HOWARD. (2002) Anisotropic intermolecular forces. I. Rare gas—hydrogen chloride systems. Molecular Physics 100:1, pages 151-164.
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RonaldA. Aziz & M.J. Slaman. (1986) The argon and krypton interatomic potentials revisited. Molecular Physics 58:4, pages 679-697.
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JeremyM. Hutson & BrianJ. Howard. (1982) Anisotropic intermolecular forces. Molecular Physics 45:4, pages 769-790.
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RonaldA. Aziz. (1979) An improved potential for krypton. Molecular Physics 38:1, pages 177-190.
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G.C. Maitland, E.A. Mason, L.A. Viehland & W.A. Wakeham. (1978) A justification of methods for the inversion of gas transport coefficients. Molecular Physics 36:3, pages 797-816.
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G.C. Maitland & W.A. Wakeham. (1978) Direct determination of intermolecular potentials from gaseous transport coefficients alone. Molecular Physics 35:5, pages 1443-1469.
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G. Peter Matthews & E. Brian Smith. (1976) An intermolecular pair potential energy function for methane. Molecular Physics 32:6, pages 1719-1729.
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P. Clancy, D.W. Gough, G.P. Matthews, E.B. Smith & G.C. Maitland. (1975) Simplified methods for the inversion of thermophysical data. Molecular Physics 30:5, pages 1397-1407.
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RonaldA. Aziz & WilliamL. Kocay. (1975) Comparison of predictions of dilute gas bulk properties on the basis of some new krypton potentials. Molecular Physics 30:3, pages 857-868.
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D.W. Gough, G.P. Matthews, E.B. Smith & G.C. Maitland. (1975) The direct determination of pair potential energy functions for mixed interactions: Ar-Kr. Molecular Physics 29:6, pages 1759-1765.
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Paulette Clancy & Maurice Rigby. (1975) Intermolecular potential energy functions from gaseous viscosity data. Choice of the well depth. Molecular Physics 29:4, pages 1035-1038.
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Ian C. Jenkins, John C. Crocker & Talid Sinno. (2015) Interaction potentials from arbitrary multi-particle trajectory data. Soft Matter 11:35, pages 6948-6956.
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Delara Mohammad-Aghaie, Mohammad Mehdi Papari & Amjad Reza Ebrahimi. (2014) Determination of Transport Properties of Dilute Binary Mixtures Containing Carbon Dioxide through Isotropic Pair Potential Energies. Chinese Journal of Chemical Engineering 22:3, pages 274-286.
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A.H. Jalili, N. Seyed Matin, L.A. Viehland & M. Shahsavan. (2009) Determination of HeO+ and HeO− interaction potentials from gaseous ion-mobility data. Chemical Physics 365:1-2, pages 94-99.
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Fernando Pirani, Simona Brizi, Luiz F. Roncaratti, Piergiorgio Casavecchia, David Cappelletti & Franco Vecchiocattivi. (2008) Beyond the Lennard-Jones model: a simple and accurate potential function probed by high resolution scattering data useful for molecular dynamics simulations. Physical Chemistry Chemical Physics 10:36, pages 5489.
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G.D. Roston & Z.F. Ghatass. (2006) Test of the intercombination rules on the two excited states (30 and 31) potential parameters of the second group metal atoms perturbed by inert gases. Journal of Quantitative Spectroscopy and Radiative Transfer 101:2, pages 205-209.
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Jarosław Koperski. (2002) Study of diatomic van der Waals complexes in supersonic beams. Physics Reports 369:3, pages 177-326.
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R. Signorell, U. Hollenstein & F. Merkt. (2001) High-resolution photoelectron spectroscopic study of the first electronic states of Kr2+. The Journal of Chemical Physics 114:22, pages 9840-9851.
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Mohsen Najafi & Behzad Haghighi. (2000) Direct Calculation of the Intermolecular Interaction Potential from the Extended Principle of Corresponding States for N 2 –He . Physica Scripta 61:1, pages 97-101.
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Ali Maghari, Hassan Behnejad & Farzin Nematbakhsh. (1999) Direct Determination of the Intermolecular Potential for H 2 –H 2 from a Viscosity Correlation Equation . Journal of the Physical Society of Japan 68:7, pages 2276-2280.
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G D Roston. (1998) On the Validity of Different Intercombination Rules for the Parameters of the Ground State (X 1 0 + ) Potentials of the Second Group Metal Atoms Perturbed by Inert Gases . Physica Scripta 57:2, pages 222-224.
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Mohammad Hadi Ghatee, Mohammad Mehdi Papari & Ali Boushehri. (1997) Direct Calculation of CH 4 –He Interaction Potential from the Extended Principle of Corresponding States . Bulletin of the Chemical Society of Japan 70:11, pages 2643-2646.
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. (1996) Direct Determination of the Intermolecular Potentials for Ne–Ar, Ne–Kr and Ne–Xe. Journal of the Physical Society of Japan 65:2, pages 407-410.
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Ali Boushehri & Fariba S. Hashemi. (1996) Direct Measurement of the Intermolecular Potentials of CH 4 –Xe, CH 4 –Kr, CH 4 –Ar, and CH 4 –Ne from the Extended Principle of Corresponding States . Bulletin of the Chemical Society of Japan 69:1, pages 67-70.
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Mark Keil, Laurie J. Danielson & Peter J. Dunlop. (1991) On obtaining interatomic potentials from multiproperty fits to experimental data. The Journal of Chemical Physics 94:1, pages 296-309.
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Tai Tsuchizawa, Kaoru Yamanouchi & Soji Tsuchiya. (1990) Interatomic potentials of the C 1 and D + states of XeNe, XeAr, and XeKr as studied by tunable vacuum ultraviolet laser spectroscopy . The Journal of Chemical Physics 92:3, pages 1560-1567.
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P. E. LaRocque, R. H. Lipson, P. R. Herman & B. P. Stoicheff. (1986) Vacuum ultraviolet laser spectroscopy. IV. Spectra of Kr2 and constants of the ground and excited states. The Journal of Chemical Physics 84:12, pages 6627-6641.
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Terry S. Carlton. (1985) Relative atomic radii from scaling of repulsive interatomic force in noble gas van der Waals molecules. The Journal of Chemical Physics 82:5, pages 2341-2345.
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R. A. Aziz. 1984. Inert Gases. Inert Gases 5 86 .
M. V. Bobetic & J. A. Barker. (1983) Solid-state properties of argon, krypton, and xenon near 0 K from an potential . Physical Review B 28:12, pages 7317-7320.
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J.J.H. van den Biesen, R.M. Hermans & C.J.N. van den Meijdenberg. (1982) Experimental total collision cross sections in the glory region for noble gas systems. Physica A: Statistical Mechanics and its Applications 115:3, pages 396-439.
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J.J.H. van den Biesen & C.J.N. van den Meijdenberg. (1982) Relation between total cross section data and the interaction potential; A comparison with closely connected data. Physica A: Statistical Mechanics and its Applications 115:3, pages 375-395.
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A. Borysow & T. Grycuk. (1982) Collision-induced Raman spectra of Hg-rare gas Van der Waals complexes. Physica B+C 114:3, pages 414-422.
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Peter D. Dacre & Lothar Frommhold. (1982) Rare gas diatom polarizabilities. The Journal of Chemical Physics 76:7, pages 3447-3460.
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C. Y. Ng. 1982. Advances in Chemical Physics. Advances in Chemical Physics 263 362 .
T. Grycuk & E. Czerwosz. (1981) Interatomic potentials of the Hg-Kr Van der Waals molecule. Physica B+C 106:3, pages 431-444.
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E.Brian Smith, Andrew R. Tindell, Bryan H. Wells & JoséLuis Brun. (1981) A direct method for the inversion of isotopic thermal diffusion data. Physica B+C 106:1, pages 117-122.
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J.S. Rowlinson. (1981) The thermodynamic properties of fluid mixtures. Physics and Chemistry of the Earth 13-14, pages 41-64.
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J.J.H. Van Den Biesen, F.A. Stokvis, E.H. Van Veen & C.J.N. Van Den Meijdenberg. (1980) Measurements on the glory structure in the total cross section of noble gas systems. Physica A: Statistical Mechanics and its Applications 100:2, pages 375-396.
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Robert J. Le Roy. (1979) Comment regarding potential functions, level spacings and thermodynamic properties of van der Waals molecules. Chemical Physics Letters 67:1, pages 207-211.
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A. Boushehri, L.A. Viehland & E.A. Mason. (1978) On the extended principle of corresponding states and the pair interaction potential. Physica A: Statistical Mechanics and its Applications 91:3-4, pages 424-436.
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A. Boushehri, L.A. Viehland & E.A. Mason. (1978) Direct determination of interaction potentials from gas viscosity measurements alone. Chemical Physics 28:3, pages 313-318.
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M. W. Lee, P. Neufeld & J. Bigeleisen. (1977) Liquid–vapor isotope fractionation factors in argon–krypton binary mixtures. The Journal of Chemical Physics 67:12, pages 5639-5644.
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Myung W. Lee & Jacob Bigeleisen. (1977) Calculation of the mean force constants of the rare gases and the rectilinear law of mean force. The Journal of Chemical Physics 67:12, pages 5634-5638.
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Larry A. Viehland, Margaret M. Harrington & E.A. Mason. (1976) Direct determination of ion-neutral molecule interaction potentials from gaseous ion mobility measurements. Chemical Physics 17:4, pages 433-441.
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V. P. S. Nain, Ronald A. Aziz, P. C. Jain & S. C. Saxena. (1976) Interatomic potentials and transport properties for neon, argon, and krypton. The Journal of Chemical Physics 65:8, pages 3242-3249.
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Eric Dickinson. (1976) Thermal conductivity of noble gas + hydrogen mixtures: the separability of translational and internal energy transport. Chemical Physics Letters 42:1, pages 64-68.
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P. Clancy & E.B. Smith. (1976) The determination of intermolecular potential energy functions from isotopic thermal diffusion data. Physica B+C 83:2, pages 231-236.
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J. A. Barker. (1975) Second virial coefficients and interatomic potentials for inert gases. The Journal of Chemical Physics 63:6, pages 2767-2768.
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D. E. Freeman, K. Yoshino & Y. Tanaka. (1974) Vacuum ultraviolet absorption spectrum of the van der Waals molecule Xe2. I. Ground state vibrational structure, potential well depth, and shape. The Journal of Chemical Physics 61:11, pages 4880-4889.
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J. A. Barker, R. O. Watts, Jong K. Lee, T. P. Schafer & Y. T. Lee. (1974) Interatomic potentials for krypton and xenon. The Journal of Chemical Physics 61:8, pages 3081-3089.
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