441-474 | Review of Mesoscopic Modeling of Liquids in Materials Science | A. Ten Bosch |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 36, Number 4 | |
199-205 | Dielectric Relaxation of Binary Mixtures of Glycerol with Three Monohydric Alcohols | G. Wilke; H. Betting; M. Stockhausen |
207-214 | Force Fields in Liquid and Solid Cu Metal: Relation Between Quantum Chemical and Density Functional Treatments | N. H. March; K. Ray |
215-228 | Electrical Resistivity of Liquid Sb-Te Solutions | B. Onderka; K. Fitzner |
229-244 | Partial Molar Properties and Sound Velocities in Aqueous Methanol Solutions of Homologous Dicarboxylic Acids | U. N. Dash; B. K. Mohanty |
245-256 | Dimethylsulfoxide - N,N-Dimethylformamide Binary Mixtures and Their Physicochemical Properties | Cezary M. Kinart; Adam Bald; Wojciech J. Kinart; Andrzej Kolasinski |
257-263 | Solubility of Anthracene in Binary Alkane 2-Isopropoxyetha-Nol Solvent Mixtures at 298.2 K | Carmen E. Hernández; Lindsay E. Roy; Gaddum D. Reddy; Geo L. Martinez; Autumn Jackson; Guenevere Brown; Tammie L. Borders; Jessica T. Sanders; William E. Acree Jr. |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 36, Number 2 | |
67-74 | Undercooled State of Liquid Rubidium | R. N. Singh; R. P. Jaju |
75-82 | Evaluation of Excess Gibbs Energy of Mixing in Extremely Dilute in Nonpolar Solvents Solutions of TRI-N-Butyl Phosphate | S. Parija; B. Mohanty; S. K. Ray; S. Tripathy; G. S. Royb |
83-90 | Apparent Molar Volumes of Amino Acids in Very Dilute Aqueous Solutions at 25,00°C | Carmen Maria Romero; Ricardo Munar |
91-103 | Thomas-Fermi Theory of an Inhomogeneous Electron Liquid Generalized to Incorporate Density Gradients | C. Amovilli; N. H. March; T. G. Schmalz; D. J. Klein |
105-112 | Dielectric Constants of Some Miscible Aqueous-Organic Solvent Mixtures | B. R. Pujari; B. Barik; B. Behera |
113-127 | Magnetic Anomalies in Liquid Gold Alloys | P. Terzieff |
129-132 | The Shape of the Self-Consistent Field form of the Differential Equation for the Ground-State Electron Density of a Weakly Inhomogeneous But Fully Interacting Electron Liquid | N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 36, Number 1 | |
1-16 | Separation of the Partial Structure Factors in Molten Copper Halides and Derivation of Dielectric Constants | Yoshiyuki Shirakawa; Masatoshi Saito; Yasutomo Arai; Masanobu Kusakabe; Shigeru Tamaki |
17-28 | Thermodynamic Investigation of Viscosity and Diffusion in Binary Liquid Alloys | R. N. Singh; F. Sommer |
29-36 | Evaluation of Excess Free Energy of Mixing in Binary Mixture of Polar-Nonpolar Liquids Using Dielectric Probe-an Experimental Assessment of the Efficiency of Proposed Equation | Sandip Kumar Ray; Gouri Sankar Roy |
37-51 | Phase Equilibria in the Ternary System Methyl 1,1-Dimethylethyl Ether Oxolane Heptane | Jaime Wisniak; Gabriela Embon; Ran Shafir |
53-65 | Excess Molar Volumes of Aqueous Solutions of 1-Propanol, 2-Propanol, Allyl Alcohol and Propargyl Alcohol | Muhammad A. Saleh; Shamim Akhtar; Meherun Nessa; Muhammad S. Uddin; Mohammad M. H. Bhuiyan |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 35, Number 3 | |
131-151 | Some Aspects of Phase Diagrams of Homonuclear Diatomic Assemblies, Including Melting and Critical Point Properties | N. H. March; M. P. Tosi |
153-163 | Calculations of g(r) for Liquid Cu and Ni Using Many-Body | G. M. Bhuiyan; M. A. Khaleque; R. I. M. A. Rashid; S. M. Mujibur Rahman |
165-173 | Conductivity Properties of Some Tetraalkylammonium Iodides in the Water N,N-Dimethylformamide Mixtures at 298.15 K | Adam Szejgis; Adam Bald; Jerzy Gregorowicz |
175-189 | Structure of Liquid Sulfur Through Polymer Percus-Yevick Theory | Yurko Duda; Myroslav F. Holovko |
191-199 | Inhomogeneous Electron Liquid: H Atom Dirac Density Matrix in Limit of Infinite Number of Closed Shells | C. Amovilli; N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 35, Number 1 | |
1-58 | An Assessment of Thermodynamic Consistency Tests for Vapor-Liquid Equilibrium Data | Jaime Wisniak; Alexander Apelblat; Hugo Segura |
59-65 | Differential Equation for Ground-State Electron Density in an Inhomogeneous Relativistic Electron Liquid | N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 34, Number 3 | |
125-153 | The Solubility of Gases in Liquids | Jaime Wisniak; Alexander Apelblat; Hugo Segura |
155-167 | The Behaviour of a Fluid Mixture in Contact with a Surface | M. J. Stott |
169-179 | Electrical Conductivity, Thermoelectric Power, and Thermal Conductivity of Bi29Tl35Se36 Chalcogenide Glass Semiconductors in Solid and Liquid States | K. A. Sharaf |
181-187 | Internal Structures of Liquid N,N-Dimethylformamideformamide Binary Mixtures | M. Cezary; Kinart; J. Wojciech; Kinart; Lech Skulski; Andrzej Kolasiński |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 34, Number 2 | |
65-75 | Determination of the Free Enthalpy of Formation of the Au-Te Melts by Knudsen-Cell Effusion Combined with a Mass-Spectrometer | A. Yassin; R. Chastel; R. Castanet |
77-87 | Estimation of Solubility of Paraffins in Water by the Method of Neural Nets | B. S. N. Murty; Y. Ravi Kumar; N. V. K. Dutt; P. J. Reddy |
89-102 | A Simple and Accurate Method for Isothermal Phase Equilibrium Studies | S. M. Ashraf; M. Ramakrishna; D. H. L. Prasad |
103-124 | Thermochemical Investigations of Hydrogen-Bonded Solutions. Part 13. Prediction of Pyrene Solubilities in Binary Alcohol Alcohol Solvent Mixtures Using Alcohol-Specific Mobile Order Theory Stability Constants | Mary E. R. McHale; Kristin A. Fletcher; Karen S. Coym; William E. Acree Jr.; Venu G. Varanasi; Scott W. Campbell |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 33, Number 2 | |
65-83 | Theoretical Approaches to Thermal Conductivity in Liquids | D. M. Heyes; N. H. March |
85-92 | Temperature Dependence of the Excess Entropy for Liquid Alloys | R. N. Singh; K. A. Azez |
93-112 | Thermochemical Investigations of Hydrogen-Bonded Solutions: Part 12. Development of Expression for Predicting Solute Solubility in Binary Alcohol Water Solvent Mixtures Based Upon Mobile Order Theory | Mary E. R. McHale; Siddharth Pandey; William E. Acree Jr. |
113-120 | Electrical and Thermoelectric Properties of CuInTe2 in the Solid and Liquid Phases | N. H. Mousa; M. M. El–bahay; A. Abdelghany; A. H. Abou El Ela |
121-131 | Speeds of Sound and Isentropic Compressibilities of Alkyl Cellosolve With Aliphatic Alcohols at 308.15K | K. V. R. Reddy; K. Rambabu; A. Krishnaiah |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 33, Number 1 | |
1-16 | Speed of Sound and Viscosities of Butyl Acetate and Substituted Alcohols at 303.15 K | D. Ramachandran; K. Rambabu; P. Venkateswarlu; K. Mohankrishnan; G. K. Raman |
17-36 | An Improved First-Order Perturbation Theory of Simple Fluids Using High Temperature Approximation and Random Phase Approximation | K. Shukla |
37-56 | Excess Thermodynamic Properties of Ternary Fluid Mixtures from Molecular Dynamics Simulation and Van Der Waals One-Fluid Theory | K. Shukla |
57-63 | Dielectric Relaxation of Guaiacol in Solution and in ITS Pure Liquid State | G. Wilke; M. Stockhausen |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 32, Number 4 | |
191-209 | An Ionic Model for Molecular Units in Molten Aluminium Trichloride and Alkali Chloroaluminates | Z. Akdeniz; G. Pastore; M. P. Tosi |
211-217 | Evaluation of Excess Correlation Factor in Dilute Binary Mixtures of Tri-N-Butyl Phosphate (TBP) in Nonpolar Solvents | Suparna Ray; Biswadas Mohanty; Sandip Kumar Ray; Gouri Sankar Roy |
219-223 | Kinetic Energy of an Inhomogeneous Electron Liquid: Form for Atom With on p Plus s Shells | A. Nagy; N. H. March |
225-232 | Model for Self-Diffusion Coefficient | Raman Sharma; K. Tankeshwar |
233-237 | Isobaric Vapour-Liquid Equilibria in the Allyl Alcohol 1,1,1-Trichloroethane System | R. Vijaya Kumar; M. Anand Rao; M. Venkateshwara Rao; D. H. L. Prasad |
239-244 | Structure of Liquid Cu-Pb Alloys | S. Mudry |
245-249 | First-Order Density Matrix, Pair-Distribution Function And Structure Factor of a Fermi Liquid | A. Holas; N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 31, Number 4 | |
201-207 | Thermoelectric Power of the Liquid (Pb-Sn)I-x Tex Alloy | A. Ozols; E. G. Sancho; D. H. Kurlat |
209-230 | Brownian Dynamics Simulations of Aggregation and Gel Formation in Lennard-Jones Fluids | J. F. M. Lodge; D. M. Heyes |
231-244 | Two-Compound Formation in Liquid Binary Alloys: Temperature Dependence of Thermodynamic Functions in Mercury Indium Alloy | K. S. Attri; P. K. Ahluwalia; K. C. Sharma |
245-252 | Interplay of Structures and Forces in the Electronic Conductivity of Liquid Mercury | H. Lehmann |
253-258 | Investigations Into the Physicochemical Behaviour of Cobalt(II)Laurate | B. K. Tyagi; R. P. Varma; Anil Kumar |
259-264 | Excess Free Energy of Mixing of Polar Nonpolar Liquids-an Experimental Assessment of the Efficiency of the Proposed Equation | Sandip Kumar Ray; Gouri Sankar Roy |
265-266 | Electron or Hole Liquids Flowing Through Antiferromagnetic Assemblies: Proposed Test of t-J Model for High Tc Materials | N. H. March |
a-b | Editorial board page for “Physics and Chemistry of Liquids”, Volume 31, Number 2 | |
71-81 | Analysis of Liquid-Vapour Phase Transitions for Restricted Primitive Model of Ionic System in Mean Spherical Approximation | N. C. Tkachev |
83-88 | The Deformation of Bubbles and Drops in Immiscible Fluids | B. V. Paranjape; M. B. Paranjape |
89-96 | Structure of Partly Quenched Molten Copper Chloride | G. Pastore; H. Tatlipinar; M. P. Tosi |
97-107 | Ultrasonic Study on Carbonato-Bis-(Ethylene Diamine) Cobalt(III) Chloride in Glycerol-Water Mixed Solvent Systems | P. K. Misra; B. B. Swain; V. Chakravortty |
109-125 | Lattice Models of Growth of Aligned Dipolar Fluids | O. Maas; D. M. Heyes |
127-134 | Conductometric, Viscometric and Ultrasonic Studies of Terbium Laurate in Benzene-Methanol Mixture | K. N. Mehrotra; Neerja Sharma |
a-b | Editorial board page for “Physics and Chemistry of Liquids”, Volume 29, Number 1 | |
1-7 | The Internal Structures of Liquid Dimethylsulfoxide-Acetone Mixtures | Cezary M. Kinart; Wojciech J. Kinart |
9-21 | Ordering Phenomena in Na-Ga and Na-Sn Molten Alloys | O. Akinlade |
23-30 | Screening of an Ion in a Finite Electron Gas and its Relation to Cluster Structure | J. A. Alonso; L. E. González; M. P. Iñiguez |
31-41 | A Hard-Sphere Model in Analytic form for Atomic Transport Properties of Liquid Metals | T. Itami; K. Sugimura |
43-58 | Density and Thermal Expansion of Molten Manganese, Iron, Nickel, Copper, Aluminum and Tin by Means of the Gamma-Ray Attenuation Technique | P. M. Nasch; S. G. Steinemann |
59-68 | Self Diffusion Coefficient and Force Auto-Correlation Function | Rajneesh K. Sharma; K. N. Pathak; K. Tankeshwar; S. Ranganathan |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 28, Number 2 | |
71-78 | Intermediate Range Order in Model Liquid Binary Alloys | J. Wang; I. L. McLaughlin; M. Silbert |
79-94 | Many-Body Effects in the Static Structure of Dense Krypton and Xenon | J. Youden; P. A. Egelstaff |
95-115 | Molecular and Brownian Dynamics Simulations of Self-Diffusion in Inverse Power Fluids | D. M. Heyes; A. C. Brańka |
117-127 | Growth Processes and Associative Properties in Alcohols by Dielectric and FTIR Spectroscopy | V. Crupi; M. P. Jannelli; S. Magazu; G. Maisano; D. Majolino; P. Migliardo |
129-140 | Thermodynamic and Structural Interpretations of the Undercooled Liquid Metals | R. N. Singh; F. Sommer |
141-144 | Limit of Fermi Liquid Regime and Binding Energy of Charged (2e) Boson in High Tc Cuprates | N. H. March; R. Pucci; S. A. Egorov |
a-b | Editorial board page for “Physics and Chemistry of Liquids”, Volume 28, Number 1 | |
1-27 | Mechanical Properties of Liquids: Newtonian and Beyond | D. M. Heyes; N. H. March |
29-33 | Thermodynamic Properties of the Systems n-Butyl Acetate-Chloroethanes and Ethenes | M. Gowrisankar; K. Rambabu; P. Venkateswarlu; G. K. Raman |
35-40 | Molar Excess Volumes of Ternary Mixtures of Non-Electrolyte Solutions at 303.15 K | G. Subramanya Sastry; U. Srinivasulu; K. Sivakumar; P. Ramachandra Naidu |
41-48 | Study on the Internal Structures of Liquid Formamide-Propane-1,2-Diol Mixtures | Cezary M. Kinart |
49-55 | Influence of Solvent Environment on Linear Correlation Factor and Dielectric Relaxation Time of Ethanediol, 1,2 Propanediol, Diethylene Glycol and Cyclohexanol | N. Chelliah; R. Sabesan |
57-62 | Physicochemical Characteristics of Cerium(III) Caprylate | Anil Kumar |
63-70 | Thermodynamic Investigation of Solid and Liquid Au-Te Alloys | Pascal Anres; Helène Bros; André Coulet; Robert Castanet |
a-b | Editorial board page for “Physics and Chemistry of Liquids”, Volume 27, Number 4 | |
203-214 | Effect of Core-Ion Potentials on Thermodynamic Properties of Liquid Alkali Metals and Alloys | Sudhir Singh; R. N. Singh |
215-218 | Heat Capacity of Toluene Dimethyl Formamide Mixtures | T. E. Vittal Prasad; A. Rajiah; D. H. L. Prasad |
219-224 | NMR Relaxation Studies in Aqueous Solutions of Amino Acids | V. Arulmozhi; A. Srinivasa Rao |
225-233 | Dielectric and Index of Refraction Properties of Binary Mixtures of Polyoxyethene Glycol Monobutyl Ethers with Water | Joseph Macneil; Dale Turner; R. Palepu |
235-243 | Short-range Correlations in Degenerate Multicomponent Plasmas | Fernando Vericat; Augusto A. Melgarejo |
245-259 | Molecular Complexes in Dilute Liquid Binary Solutions | M. Surma |
261-265 | Concentration Fluctuations in Hydrogen-bonded Fluid Mixtures | M. Silbert; O. H. Scalise; A. E. Rodríguez |
a-b | Editorial board page for “Physics and Chemistry of Liquids”, Volume 27, Number 2 | |
69-75 | A New Predictive Relation for Ternary Excess Volumes | William E. Acree Jr.; Anita I. Zvaigzne; P. R. Naidu |
77-82 | Inhomogeneous Electron Liquid in Intense Electric Fields | S. Pfalzner; N. H. March |
83-91 | Determination of a Tricritical Point in a Pentanary Microemulsion | B. Ginzberg; S. Bergerman; D. H. Kurlat |
93-102 | Origin of Charge Oscillation of Surface Density Profiles of Inhomogeneous Charged Fluids Using the Square-gradient Density Functional Model | M. Iwamatsu |
103-113 | Viscosity of NaI Solutions in Water-tert-Butanol Mixtures at 35 And 40°C | Stefania Taniewska-osińska; Anna Kacperska |
115-121 | N,N-Dimethylformamide-methanol Binary Mixtures and their Assumed Internal Structures | Cezary M. Kinart |
123-135 | Charge Ordering and Size Effects in the Structure of a Model 2:1 Ionic Compound | J. Boronat; M. Silbert |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 26, Number 3 | |
153-160 | Brownian Dynamics Simulations of Model Near-Hard-Sphere Suspensions | D. M. Heyes; A. C. Branka |
161-169 | Equation of State for Soft Reference System | K. N. Khanna; Abdul Quayoum |
171-177 | Light Scattering from Binary Liquid Systems II. The Partial Pressure of Solutions | Hossam Wahid |
179-184 | Effective Atomic Diameter Changes on Mixing Liquid Metals | B. Karaoglu |
185-199 | Light Scattering of Binary Liquid Systems III. The Residual Gibbs Potential of Solutions | Hossam Wahid |
201-207 | Proton Magnetic Resonance Relaxation Studies in Aqueous Solutions of Alkali Halides and Sugars | V. Arulmozhi; A. Srinivasa Rao |
209-216 | Study of Intermolecular Interactions in Liquid Butane-1,4-Diol-Water Mixtures by Means of Measuring Their 1H-NMR Spectra and Analysis of Their Physicochemical Properties | Cezary M. Kinart |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 26, Number 1 | |
1-13 | Thermodynamic Consistency and Classical Liquid Structural Theory | K. I. Golden; N. H. March |
15-31 | Light Scattering Arising From Composition Fluctuations in Binary Liquid Systems | Hossam Wahid |
33-38 | Electrical Conductivity of Aqueous Solutions of Water-Soluble Polymerization Initiators Based on the Thioxanthone Structure | Wojciech J. Kinart; Cezary M. Kinart |
39-45 | Vapour Liquid Equilibrium of the Systems of 1-Bromobutane with n-Hexane and n-Heptane | K. Rambabu; G. K. Raman; Y. V. L. Ravikumar |
47-58 | An Investigation of Tanol/Benzene Solutions in Weak and Strong Fields by EPR | M. Sünnetçiglu; G. Bngöl |
59-66 | Long-Wavelength Analysis of the Direct Correlation Function for Coulomb Liquids | K. I. Golden; N. H. March |
67-83 | A Dielectric Relaxation Study of Some Liquid Dihydric Alcohols and Their Mixtures with Water | A. Lux; M. Stockhausen |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 25, Number 4 | |
205-241 | Determination of Three Body Correlations in Simple Liquids by RMC Modelling of Diffraction Data. II. Elemental Liquids | M. A. Howe; R. L. McGreevy; L. Pusztai; I. Borzsák |
243-250 | Molecular Interactions in Binary Mixtures of Aqueous Methyl Violet Solutions | K. Ravindranatha Reddy; L. Rama Murthy |
251-267 | Higher Order Conditional Probabilities And Short Range Order in Molten Alloys | R. N. Singh |
269-272 | Structural Theory of The Liquid-Gas Critical Point | N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 23, Number 4 | |
189-210 | Thermal Conductivity and Disorder in Nonmetallic Materials | Russell G. Ross |
211-223 | Structure and Electrical Resistivity of Liquid Alkali Alloys | B. P. Singh; V. N. Choudhary; R. N. Singh |
225-237 | Thermochemical Investigations of Associated Solutions: Comparison of PAH-chlorobutane Versus PAH-dichlorobutane Equilibrium Constants calculated from Solubility Data | William E. Acree Jr.; Anita I. Zvaigzne |
239-250 | Simplified RPA Bhatia—Young Calculations of the Phase Diagram for a Model Binary Mixture. I. Equal Size Molecules | S. M. Osman; M. Silbert |
251-257 | Dawson—March Model for the Pair Function af a Two-dimensional Electron Liquid | Andreas Schinner; Helga M. Böhm |
259-263 | On the Ionic Equilibrium between Complexes in Molten Fluoroaluminates | Z. Akdeniz; K. Tankeshwar; M. P. Tosi |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 23, Number 3 | |
123-149 | Transport Coefficients Of Ar—Kr Mixtures by Molecular Dynamics Computer Simulation | D. M. Heyes; S. R. Preston |
151-161 | Thermodynamic Properties of Liquid Water up to 8000 Bar and Between 25 and 150°C | Bongkee Cho; Kyu-Yong Choi; Soon-Don Choi |
163-173 | Sound Propagation in Thyxotropic Structures | F. Aliotta; M. E. Fontanella; S. Magazu; F. Wanderlingh |
175-180 | Temperature Dependence of the Surface Tension of Alkali Metals: A Unified Correlation | R. Patnaik; S. Dey; R. P. Singh; R. P. Chhabra |
181-188 | Viscometric and Density Study of Binary Mixtures of 2,2,2-Trifluoroethanol with Anilines | Ramamurthy Palepu; Joseph H. Macneil; Paul Wiseman |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 23, Number 1 | |
1-14 | Solution of the Percus-Yevick Equation for Linear Molecules Interacting through Either a Kihara or a Soft Repulsive Potential | P. Sevilla; S. Lago; C. Vega; P. Padilla |
15-26 | Excess Molar Volumes and Viscosities for 1,1,1-Trichloroethane with Alcohols at 298.15 K | Susana B. De Katz; Graciela C. Pedrosa; Miguel Katz |
27-35 | Mathematical Representation of Thermodynamic Properties. Carbazole Solubilities in Binary Alkane Dibutyl Ether and Alkane Tetrahydropyran Solvent Mixtures | William E. Acree Jr.; James W. McCargar; Anita I. Zvaigzne; I. Lih Teng |
37-48 | Electrical Resistivity of Expanded Fluid Rubidium | J. A. Ascough; N. H. March |
49-56 | Excess Thermodynamic Functions of n-Hexane Toluene: Application of Flory's Theory | K. Malakondaiah; K. Subbarangaiah; S. V. Subrahmanyam |
57-59 | Can the Aqueous Solution Inside a Cell Membrane Characterize Normal and Cancerous Forms? | H. T. Hammel; N. H. March; B. W. Watson |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 22, Number 4 | |
195-203 | Inversion of Structural Data for Effective Potentials in Dense Liquids and Colloids | Asok K. Sen; Raj Rajagopalan |
205-211 | Ultrasonic Study of Binary Solutions of Methanol, Ethanol and Phenol in Sulpholane | Pankaj; Chhemendra Sharma |
213-216 | Anomalies in Hg-Tl Amalgam Viscosity | M. Bosco Masera; I. Maio |
217-233 | Solution of the Percus-Yevick Equation for Hard Spherocylinders: II. Dependence of the Pair Correlation Function on the Elongation | P. Sevilla; S. Lago; P. Padilla |
235-243 | Pseudopotential Method for the Thermodynamic Properties of Liquid Alkali Metals | R. N. Singh; V. N. Singh |
245-253 | Densities and Viscosities of the Binary Mixtures Decanol Some n-Alkanes at 298.15 K | R. Bravo; M. Pintos; A. Amigo; M. Garcia |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 21, Number 1 | |
1-7 | Diagonal Disorder Effects in the Mean Free Path of Liquid Metals | A. Ferraz; H. Nazareno |
9-22 | Effect of Soft Forces and Computation of Thermal Properties of Liquid Metals | A. Bari; T. Nammalvar; R. N. Joarder |
23-27 | Volumetric Behaviour of an Isomeric and Branched Alcohols with 1,2-Dichloroethane | K. Ram Babu; J. Govindappa; P. Venkateswarlu; G. K. Raman |
29-34 | A Study on Partial Molar Volume and Expansion Of oagnesium Butyrate | Anil Kumar |
35-44 | Acoustic Behaviour of Cetylpyridinium Bromide (CPB) in Methanol | Anil Kumar |
45-49 | Polycyclic Aromatic Sulfur Heterocycles. Solubility of Thianthrene in Binary Solvent Mixtures Containing Cyclohexane | William E. Acree Jr.; Sheryl A. Tucker; Anita I. Zvaigzne |
51-58 | Excess Thermodynamic Properties for Hard Sphere Fluids in Several Dimensionalities | J. Amoros; E. Villar |
59-71 | Conductometric Investigations on Aqueous Solutions of Calcium Butyrate in Presence of Additives | Anil Kumar |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 20, Number 1 | |
1-15 | Structure of Expanded Fluid Metals | R. Winter; F. Hensel |
17-29 | Absorption Spectra Of Nd(NO3)36H2O Alcoholic Complexes | S. Buddhudu; V. Ramesh Babu; A. Suresh Kumar |
31-38 | Solubility of Anthracene in Binary p-xylene Alkane and Benzene Alkane Solvent Mixtures | William E. Acree Jr.; Sheryl A. Tucker |
39-43 | Density Functional Mean Field Theory of Crystal-Melt Interfaces | Xiao Cheng Zeng |
45-60 | Gas-Gas Equilibrium of Mixtures of Noble Gases at High Pressures from a Perturbation Theory | S. Lago; P. Padilla; M. Reguero |
61-64 | Wave-Number Dependent Viscosity of Liquid Metals | J. Ascough; N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids”, Volume 19, Number 4 | |
193-239 | Atomic Transport in Liquids | T. Gaskell; U. Balucani; R. Vallauri |
241-251 | Dielectric Relaxation Study from Polarisability Data | J. P. Shukla; Rajni Misra; Amar Singh; Manisha Gupta; M. C. Saxena |
253-258 | Ultrasonic Study on 2-Aminopyridine in Solution in Benzene at 309 K | G. K. Johri; R. C. Misra |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 17, Number 3 | |
173-180 | Spatial Ordering of Conduction Electrons in Metals from Liquid Phase Diffraction | N. H. March |
181-194 | A Model for Sub-critical Liquid-Vapour Coexistence in Sodium | S. M. Osman; W. H. Young |
195-200 | Excess Volumes of Methylcyclohexane with Ketones and Esters at 303.15 K | P. Rajasekhar; K. S. Reddy |
201-207 | Monte-Carlo Simulations of the Structure of Molten CsCI Using Screened Coulomb Potentials | P. R. Gartrell-mills; R. L. McGreevy |
209-214 | Surface Energy of Liquid Transition Metals Related to Bulk Compressibility and Thickness | J. A. Alonso; M. Silbert |
215-246 | Long-range Behaviour of the Pair-correlation Function of a Dense Electron Liquid | A. Holas; N. H. March |
247-255 | Limited Solubility and Critical Exponents for Some Indole Hydrocarbon Systems | L. T. Chu; J. Kurtzman; V. Fried |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 17, Number 1 | |
1-10 | Vacancy Formation Energy, Liquid Structure and Criteria for Liquid-Solid Phase Transitions | N. H. March |
11-19 | Microdynamics, Diffusion and Structural Relaxation in Liquids | T. Gaskell |
21-28 | Interatomic Forces in Solid and Liquid Metals; the Question of Pseudopotential Transferability | S. M. M. Rahman; M. Hasegawa; K. Hoshino; W. H. Young |
29-44 | Interatomic Pair Potentials for Metallic Alloy Glasses | Ji-Chen Li; N. Cowlam |
45-53 | Density, Compressibility, Heat Capacity and Surface Tension of Liquid Li/Ba Alloys | J. Saar; H. Ruppersberg |
55-71 | Mean Free Path Effects in the Dielectric Function of a Liquid Metal | N. H. March; B. V. Paranjape |
73-89 | Neutron Diffraction Investigation of Liquid Li/Ba Alloys | H. Ruppersberg |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 16, Number 1 | |
1-7 | Some Tests of a Thermodynamically Consistent Decomposition of Fluid Direct Correlation Functions | R. I. M. A. Rashid; G. Senatore; N. H. March |
9-12 | Dimers and Tetramers in High Temperature Sodium Vapour | C. H. Leung; W. H. Young |
13-37 | Liquid A As Solution of Polymers: Internal Tensions and Other Thermodynamic Properties | H. T. Hammel |
39-46 | Vacancy Formation Energy of Close-packed Metals Related to Liquid Structure at the Melting Point | J. M. Bernasconi; N. H. March; M. P. Tosi |
47-54 | A Less Arbitrary Determination of Coordination Numbers in Disordered Systems | R. L. McGreevy; A. Baranyai; I. Ruff |
55-64 | Low Angle Structure Factor of Liquid Alkali Metals Using One Component Plasma System | K. N. Khanna; J. L. Bretonnet |
65-76 | Hg2TI is an Intermetallic Compound | M. Bosco Masera |
77-81 | Empirical Relations Between the Critical Constants of Fluid Alkali Metals | R. G. Chapman; N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 15, Number 3 | |
155-168 | Osmotic Pressure Related to Concentration Fluctuations, With Application to Liquid Metal Alloys | R. I. M. A. Rashid; N. H. March |
169-183 | Direct Correlation Function Properties of Liquid Metals Near Freezing | J. M. Bernasconi; N. H. March |
185-202 | Solubility and Enhanced Tension of Solute in Solution | H. T. Hammel |
203-215 | Volumetric and Ultrasonic Behaviour of 1,2-Dibromoethane With a Ketone | P. Venkateswarlu; N. V. Choudary; A. Krishnaiah; G. K. Raman |
217-228 | The Magnetic Properties of Liquid Ge-Te Alloys | P. Terzieff; K. L. Komarek; E. Wachtel |
229-233 | Entropy and Pressure of a Liquid with a Charged-Hard-Sphere Reference System | K. Hoshino; W. H. Young |
235-241 | Physical Properties of Microemulsions | D. H. Kurlat; D. Zadunaisky; M. S. Bidner; H. Kostiria |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 15, Number 2 | |
75-111 | Isotope Effects in Liquid Metals | M. Ginoza; N. H. March |
113-122 | Relativistic Correction to the Electronic Charge Density of an Atom Embedded in Jellium | Kozo Hoshino; Akira Hasegawa |
123-127 | Effect of Microscopic Structure of Metal Electrode on Capacitance of Metal-Molten Salt Interface | E. Roman; M. P. Tosi; P. J. Grout; N. H. March |
129-136 | Structure Factors of Molten CaCI2 and MgCI2 at Low Q | S. E. Day; R. L. McGreevy |
137-146 | Sound Speeds and Isentropic Compressibility's of Tetrachloroethylene With N-Alcohols Comparison With Theories | Hossen Houkhani; M. V. Prabhakara Rao |
147-154 | Excess Volumes and Excess Isentropic Compressibility of Binary Mixtures of N, N-Dimethyl for mamide with n-Alcohols at 303.15 K | K. Purnachandra Rao; K. S. Reddy |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 14, Number 2 | |
83-94 | Effective Interatomic Pair-Potentials in Liquid Alkali Metals via the RPA and MC Simulation Methods | I. Yokoyama; S. Ono |
95-106 | Viscosity of Hg5Tl2 at 14.5°C | M. Bosco Masera |
107-113 | Excess Volumes and Isentropic Compressibilities of 1,2-Dichloroethane with Ketones | P. Venkateswarlu; N. V. Choudary; G. K. Raman |
115-130 | An Interacting Hard Sphere Model for Liquid Sodium-Caesium Alloys | F. E. Neale; N. E. Cusack |
131-134 | Pair Function and Structure Factor of an Interacting Electron Liquid | K. A. Dawson; N. H. March |
135-154 | Effect of Gravity on Contact Angle Hysteresis | M. A. Fortes |
155-158 | Sound Velocity in Liquid Titanium, Vanadium and Chromium | J. Casas; N. M. Kéita; S. G. Steinemann |
159-161 | Are Long-range Dynamical Interactions Between Screened Ions in Liquid Metals Observable in Atomic Transport and Neutron Scattering? | N. H. March; H. Suhl |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 13, Number 4 | |
241-253 | On the Zero Wavenumber Structure Factors of Binary Associating Mixtures | A. B. Bhatia |
255-267 | Solution Solvent Couples Solute Molecules and Enhances Their Internal Tension | H. T. Hammel |
269-277 | Dependence of Capacitance of Metal-Molten Salt Interface on Local Density Profiles Near Electrode | P. Ballone; G. Pastore; M. P. Tosi; K. R. Painter; P. J. Grout; N. H. March |
279-283 | Anion Formation in Molecular Liquids: Is it Correlated With Molecular Shape? | N. H. March; G. R. Freeman |
285-292 | Thermodynamically Consistent Theory of Classical Liquid Structure and Inverse Problem of Extracting Pair Potential | N. H. March; G. Senatore |
293-311 | Interatomic Core Forces Deduced From Observed Liquid Structure Factors | A. Meyer; M. Silbert; W. H. Young |
313-316 | Relation between Principal Peak Height, Position and Width of Structure Factor in Dense Monatomic Liquids | A. B. Bhatia; N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 13, Number 3 | |
163-168 | Small Angle Scattering from Liquids | N. H. March |
169-176 | On the Determination of Equilibrium Constant and Thermodynamic Parameters for the Association Process of Hydrogen Bond Complexes Using Relaxation Parameters | Rajni Misra; Amar Singh; D. D. Shukla; J. P. Shukla; M. C. Saxena |
177-190 | A Quasi-lattice Theory for Compound Forming Molten Alloys | A. B. Bhatia; R. N. Singh |
191-202 | On the Structure of Liquid Metals | Kandadai N. Swamy; M. Rami Reddy |
203-230 | On the Structure of Liquid Water and the Refractive Indices in Visible Light Region | Hidesuke Yadaka |
231-240 | Brillouin Scattering in Molten Antimony Trichloride | G. Maisano; P. Migliardo; F. Aliotta; C. Vasi; R. Triolo |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 13, Number 2 | |
81-90 | On the Constant Pressure Specific Heat CP of a Simple Fluid | John Stephenson; Ken McGreer; Gordon Macleod |
91-100 | On the Joule-Kelvin Coefficient of a Simple Fluid | John Stephenson; Gordon Macleod |
101-112 | Mass-charge Coupling and Ionic Dynamics in Molten Salts | M. S. Woolfson; T. Gaskell |
113-122 | Freezing of Ionic Melts into Normal and Superionic Phases | B. D'aduanno; M. Rovere; M. P. Tosi; N. H. March |
123-150 | X-ray Structure Study and Electrical Properties of Some Liquid Cadmium–Zinc Alloys | P. Andonov; A. Bath |
151-154 | Specific Heat of Liquid Metals | K. N. Khanna |
155-157 | Is there a Linear Term in the X-ray or Neutron Scattering in a Liquid Metal at Small Wave Number? | N. H. March; M. Silbert |
159-162 | Entropy and Pressure of a Liquid with an Inverse Power Potential Reference System | P. Gray; W. H. Young |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 13, Number 1 | |
1-24 | Coordination Chemistry and Ionic Solvation in Divalent Metal Halide Aqueous Solutions | P. V. Giaquinta; M. P. Tosi; N. H. March |
25-36 | Hulett's Enhanced Solvent Tension. An Alternative to Lewis' Diminished Solvent Activity | H. T. Hammel |
37-46 | Temperature Dependence of Self Diffusion in Liquid Metals | R. P. Chhabra; T. Sridhar |
47-54 | Dielectric Relaxation Behaviour of Some Complexed Species—A Modified Equation for Relaxation Times | Mradula Chauhan; Mridula Gupta; J. P. Shukla |
55-64 | Critical Behaviour of Monatomic and Symmetric Charged Liquids in Approximate Theories of Structure | G. Senatore; M. P. Tosi; N. H. March |
65-73 | Structure and Forces in Simple Liquid Metals | I. Ebbsjö; G. G. Robinson; N. H. March |
75-79 | Small k-behaviour of the Structure Factor of Simple Liquid Metals and Electron Correlations | M. Silbert |
273-327 | Review aerticle: some transport phenomena in classical liquids and neutron scattering | Karl-Erik Larsson |
329-335 | Dielectric relaxation in OH—O bond complexes | Amar Singh; S. K. Saxena; M. C. Saxena |
337-343 | Letter: entropy of mixing of liquid lipb alloy | K. N. Khanna; P. Slngh |
183-189 | Generalized boublick equation: an accurate expression for the equation of state of hard fused spheres | S. Lago; J. L. F. Abascal; A. Ramos |
191-209 | Electrical, magnetic, optical, thermodynamic, and structural properties of liquid in-te alloys | W. Hoyer; H. -U. Tschirner |
211-223 | Liquid atomic motions from line width studies of scattering functions s(k,ω) and ss (k,ω) | Karl-Erik Larsson |
225-235 | Raman scattering studies of ionic → molecular transitions in AICI3, near the melting point | F. Aliotta; G. Maisano; P. Migliardo; C. Vasi; F. Wanderlingh; R. Triolo; G. P. Smith |
237-254 | On the placzek correction for simple liquids and gases | U. Dahlborg; B. Kunsch |
255-263 | Temperature dependent interchange energy of the liquid alloy na0.85cs0.15 | B. P. Alblas; J. Dijkstra; W. Van Der Lugt; A. B. Bhatia |
265-268 | On the free energy of mixing of a binary liquid alloy | L. J. Gallego; J. A. Alonso; J. M. López |
269 | Editorial announcement | N. H. March |
83-107 | Review article: ion pair potentials for alkali halides and some applications to liquids and defect studies | M. Dixon; C. S. N. Murthy |
109-134 | Optimized cluster theory, optimized random phase approximation and mean spherical model for the square-well fluid with variable range | G. Kahl; J. Hafner |
135-140 | Indicators of strong solute adsorption at container walls | M. J. Stott; E. H. Voice; E. H. Voice |
141-150 | Sound velocity of liquid se-te mixture | K. Takimoto; H. Endo |
151-155 | Behaviour of the coefficients of viscosity and selfdiffusion of a hard spheres dense fluid using the significant structures theory | J. Amorós; J. R. Solana; E. Villar |
157-175 | Thermal pressure coefficients of simple liquid metals based on the perc us - yevick phonon description | I. Yokoyama; I. Ohkoshi; T. Satoh |
177-180 | Letter: freezing theory of rbcl | M. Rovere; M. P. Tosi; N. H. March |
181 | Editorial announcement | N. H. March |
1-16 | Review article:electronic transport in short mean-free path liquid metals | J. S. McCaskill; N. H. March |
17-30 | Dielectric relaxation study of AgTISe2 in the solid and liquid states | A. H. Abou; Ela N. Abdelmohsen |
31-35 | Short-range lonic correlations in gold-cesium melts | R. V. Sharma; G. Senatore; M. P. Tosi |
37-44 | Co-ordination of heterovalent cation lmpurities in molten salts | W. Andreoni; M. Rovere; M. P. Tosi |
45-51 | Investigation of liquid eutectic near its crystallization point in a centrifuge | V. Steinberg; D. Linsky |
53-68 | Neutron scattering measurements from liquid na-k alloys and associated lnterionic potentials | |
69-80 | Dynamical properties of cubr2 aqueous solutions by inelastic light scattering | F. Aliotta; G. Maisano; P. Migliardo; C. Vasi |
81 | Editorial announcement | N. H. March |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 11, Number 4 | |
285-313 | Short Range Order and Concentration Fluctuations in Regular and Compound Forming Molten Alloys | A. B. Bhatia; R. N. Singh |
315-325 | A Test of Computer Simulation of Low Density Gases | J. Ram; R. Barker; P. T. Cummings; P. A. Egelstaff |
327-342 | Pressure Effect on the Concentration Fluctuations for Liquid Na-Ga and Na-Cd Mixtures with S-Shape Liquidus Curves | H. Hoshino; H. Endo |
343-351 | Thermodynamic Properties of Compound Forming Molten Alloys in a Weak Interaction Approximation | A. B. Bhatia; R. N. Singh |
353-364 | The Intermolecular Electron Density Distribution in Liquid Nitrogen | P. A. Egelstaff |
365-369 | Optimized Random Phase Approximation for the Structure of Liquid Alkali Metals as Electron-Ion Plasmas | G. Senatore; M. P. Tosi |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 11, Number 1 | |
1-24 | Structural Parameters of Inert Liquids Part II. Liquid Argon | S. N. Bagchi; J. P. Supple |
25-46 | Thermodynamic Behaviour of a Simple Liquid—MFA with non-additive Lateral Interactions | A. Milchev; I. Gutzow |
47-58 | Structure of Water in Microemulsions Investigated by Raman Scattering | F. Mallamace; P. Migliardo; C. Vasi; F. Wanderlingh |
59-64 | Discussion of Some Thermoacoustical Relations for Simple Liquids | J. Amoros; J. R. Solana; E. Villar |
65-78 | Monte Carlo Simulation of Fluid Krypton | T. K. Bose; Witold Brostow; Jerzy S. Sochanski |
79-88 | Theory of Freezing of Alkali Halides and Binary Alloys | N. H. March; M. P. Tosi |
89-94 | Freezing of Ionic Melts into a Superionic Phase | N. H. March; M. P. Tosi |
95-100 | The Width of the Liquid-Vapour Interface in a Van der Waals Fluid | M. J. Stott; W. H. Young |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 10, Number 4 | |
283-301 | The Kinetics of the Transport of Matter at the Liquid Surface | R. E. Ballard |
303-314 | Fluid-Fluid Phase Separation by Molecular Dynamics | A. Bañón; R. M. Benito; J. Santamaría |
315-325 | Surface Tension of the Liquid Hg-In Alloys | Yukio Oguchi; Toshio Itami; Mitsuo Shimoji |
327-334 | Properties of Mixtures of Alkane Chains Predicted without Combining Rules | Witold Brostow |
335-346 | Dielectric Relaxation of Some Rigid Molecules in Viscous Media | M. Chauhan Miss; M. Gupta Miss; S. K. Saxena; J. P. Shukla |
347-361 | Comportement Electromécanique de Divers Liquides Soumis à un Flux de Charges | A. T. Ahmed El-Haddad; J. Fornazéro; G. Mesnard |
363-374 | Phénomènes Transitoires et Influence de la Nature du Substrat dans la Déformation de la Surface Libre d'un Liquide Isolant Chargé | A. T. Ahmed El-Haddad; J. Fornazéro; G. Mesnard |
a | Editorial board page for “Physics and Chemistry of Liquids an International Journal”, Volume 10, Number 3 | |
189-227 | The Electronic Properties of Metal Solutions | Peter P. Edwards |
229-242 | Hard and Soft-Core Equations of State for Simple Fluids. X. Characteristic Curves and Loci of Cp Extrema for the Lennard–Jones 6–12 Equation of State | John Stephenson |
243-272 | Surface Tension Calculations for Liquid Metals | J. -P. Badiali; A. Lepape; J. Goodisman |
273-277 | Specific Heats of Liquid Metals Based on the Percus-Yevick Phonon Description | I. Yokoyama; I. Ohkoshi; W. H. Young |
279-282 | Soft Sphere Characterisation from Liquid Structure Factors; Application to Lead | A. Meyer; M. Silbert; W. H. Young |
265-284 | Molecular Dynamics of Binary Fluids in the Region of the Critical Mixing Point: II. The Static and Dynamic Behaviour | Claus Hoheisel |
285-305 | General Equations for the Equilibrium Shape of a Fluid Interface and for Its Angle of Contact with a Solid | M. A. Fortes |
307-321 | Thermodynamic Properties of Liquid Na-TI | P. Gray; N. E. Cusack; S. Tamaki; Y. Tsuchiya |
323-329 | On the Thermodynamics of Liquid Mixtures of Two n - Alkanes | Ernst Liebermann |
191-199 | Electrical Conductivity and Magnetic Susceptibility of Liquid Tl2 (TexSe1-x) Mixtures | M. Misonou; H. Endo; H. Hoshino |
201-217 | Etude Expérimentale de la Déformation de la Surface Libre d'un Liquide Isolant Chargé | A. T. Ahmed El-Haddad; J. Fornazéro; G. Mesnard |
219-228 | Viscosity of Hg-Tl Amalgam | M. Bosco Masera |
229-244 | Theory of Surface Tension in Liquid Mixtures | A. B. Bhatia; N. H. March; M. P. Tosi |
245-264 | Molecular Dynamics of Binary Fluids in the Region of the Critical Mixing Point: I. Experimental Fundamentals and the Adjustment of the Lennard-Jones Potential Parameters | Claus Hoheisel |
99-116 | Dynamics of Colloidal Dispersions | Robin C. Ball; Peter Richmond |
117-141 | Density Fluctuations in Liquid and Polycrystalline Aluminium: A New Analysis of Old Neutron Scattering Data | Karl-Erik Larsson |
143-151 | Viscosity of Hg-In Amalgam Near the Melting Point | M. Bosco Masera; R. Malvano |
153-167 | Mécanismes de Base de la Déformation Cellulaire d'une Couche Mince Isolante Liquide Soumise à un Flux de Charges | A. T. Ahmed El-Hadad; J. Fornazéro; G. Mesnard |
169-174 | The Reference Interaction Site Model and the Structure of Liquid Germanium Tetrabromide | K. N. Swamy; L. B. Bhuiyan |
175-189 | Hard and Soft-Core Equations of State for Simple Fluids VII. Termination Temperatures for the Kihara Potential | John Stephenson; H. K. Leung |
1-9 | Statistical Mechanical Theory of Liquid Surface Tension | A. B. Bhatia; N. H. March |
11-22 | Gas-liquid Transition in Charged Fluids | M. Rovere; R. Miniero; M. Parrinello; M. P. Tosi |
23-35 | Hard and Soft-Core Equations of State for Simple Fluids: IV. Elementary Theory of Termination Temperatures | John Stephenson |
37-50 | Hard and Soft - Core Equations of State for Simple Fluids: V. Termination Temperatures for the Lennard - Jones m, n Potential | John Stephenson |
51-58 | Hard and Soft - Core Equations of State for Simple Fluids: VI. General Theory of Termination Temperatures, and a Validity Criterion for the Second Virial Coefficient | John Stephenson |
59-65 | Approximate Melting curve of Wigner Electron Crystal | A. Ferraz; N. H. March; M. Suzuki |
67-80 | Chemical Equilibrium Laws in a Lattice Model of Dilute Associated Solutions | Jacek Dudowicz |
81-98 | Association Constants of Methanol in Lattice Models | Jacek Dudowicz; Jan Stecki; Andrzej Poniewierski |
209-221 | Procesus Electroniques dans le Sélénium Liquide | H. Labib; J. Fornazero; G. Mesnard |
223-233 | Structural Parameters of Inert Liquids: Part I. Liquid Helium, Neon and Xenon | S. N. Bagchi; J. P. Supple |
235-248 | Hard and Soft-Core Equations of State for Simple Fluids: I Hard-core Equations of State and Loci of Cp, Extrema | John Stephenson |
249-263 | Hard and Soft-Core Equations of State for Simple Fluids: II Characteristic Curves for Argon | John Stephenson; H. K. Leungs |
265-270 | Hard and Soft-Core Equations of State for Simple Fluids : III Characteristic Curves and Hard-core Equations of State | John Stephenson |
271-278 | Electrical Resistivity of Liquid Metals in Regime of Short Mean Free Path | A. Ferraz; N. H. March |
279-281 | Comment on the Asymptotic Form of the Radial Distribution Function in a Quasi - Crystalline Model of Liquids | S. Baer |
283-288 | Application of Soft-Sphere Equation of State to Liquid Mercury | T. Grlndley |
289-297 | Liquid Phase Metal-Non Metal Transition In Carbon | A. Ferraz; N. H. March |
119 | Editorial Note | |
121-141 | Theories of the Thermodynamic Properties of Pure Molten Salts | |
143-151 | Ion Migration and Frequency-Dependent Dielectric Loss | M. P. Tosi; N. H. March |
153-156 | Melting Curve of Wigner Electron Crystal | A. Ferraz; N. H. March; M. Suzuki |
157-166 | The Magnetic Susceptibility of Liquid Thallium Chalcogenides | Osamu Uemura; Tsuneo Satow; Akio Abe; Taro Ito |
167-187 | Description of the Radial Distribution Function of Liquid Argon in the Quasi-Crystalline Model of Liquids | N. N. Medvedev; Yu. I. Naberukhin |
189-208 | Dynamics of the Double Layer at the Polorizable Mercury-Electrolyte Interface | S. S. Bamji; S. P. Bowen; R. F. Tipsword |
55 | Editorial Note | |
57-98 | Graph Theoretic Techniques in the Theory of Classical Fluids | I. R. McDonald; S. P. O'gorman |
99-105 | Asymmetry in the Homogeneous Phase Specific Heats at Constant Volume on the Coexistence Curve Near the Critical Point of Simple Fluids | Jan Thoen |
107-117 | The Magnetic Susceptibilities of Liquid Na-TI, Na-Cd, Cu-Ga and Cu-Ge Systems | Osamu Uemura; Tsuneo Satow; Tetsuo Yagihashi |
1-13 | Dynamic Density Fluctuations in Molten Salts: Diagonalized-Relaxation Theory for Liquid RbBr | M. C. Abramo; M. Parrinello; M. P. Tosi |
15-21 | On the Temperature Dependence of Magnetic Susceptiblility of Liquid Tellurium | Toshio Nasu; Kenzo Kai; Kenji Suzuki |
23-35 | Nuclera Quadrupolar Relaxation in Liquid Metals | T. Gaskell |
37-44 | Application of Two Hard Sphere Equations of State to Some Binary Non-Electrolyte Luquid Mixtures | D. Guillen; C. Polo; C. Gutierrez Losa |
45-54 | Partial Structure Factors in NiCl2 Aqueous Solutions in the Long-Wavelength Limit | G. Cubiotti; G. Maisano; P. Migliardo; F. Wanderlingh |
181-199 | Structure at Colloid Interface | P. L. De Bruyn |
201-237 | Water and Electrode-Solution Interfaces | A. K. N. Reddy; S. Sathyanarayana |
239-242 | Tafel Slopes in Relation to the Replacement of Adsorbed Water by Organic Molecules | E. Gileadi |
243-348 | Water at Biological Interfaces - Structural and Functional Aspects | W. Drost-Hansen |
349-373 | Water on the Surfaces of Clay Minerals: Orientation, Diffusion and Proton Exchange | J. J. Fripiat; W. E. E. Stone |
375-386 | Hydrophobic Interaction | A. Ben-Naim |
1-3 | Water Opening Address in the Presence of His Majesty the King of Belgium | A. R. Ubbelohde |
5-61 | Quelques Considerations Concernant La Structure de l'Eau | Michel Magat; Lydia Reinisch |
63-106 | Ionic Solute Hydration | J. E. Desnoyers |
107-179 | Structure at the Free Surface of Water and Aqueous Electrolyte Solutions | J. E. B. Randles |
225-241 | Structure and forces in liquid metals: especially hydrogen | U. De Angelis; N. H. March |
243-260 | Neutron scattering and atomic dynamics in liquid nickel | |
261-269 | Structure of classical fluid of charged hard spheres and point lons in the perturbation of a small non-responsive, uniform background density | L. B. Bhuiyan; N. H. March |
271-279 | Densities of liquid metals: calcium, strontium, barium | S. Hiemstra; D. Prins; G. Gabrielse; J. B. Van Zytveld |
281-289 | On the hydrodynamics of a superfluid with a three-particle “condensate” | Z. M. Galasiewicz |
291-300 | Structural differences between lonic and molecular fluid models of liquid UO2 | L. B. Bhuiyan; P. J. Grout; N. H. March |
301-306 | Partial structure factors of molten hgcl2 in a molecular fluid model | L. B. Bhuiyan |
149-166 | The structure factor for liquid lead | U. Dahlborg; M. Davidovic; K. E. Larsson |
167-188 | Thermodynamics and structure of charged hard-sphere fluids in the mean spherical model | M. C. Abramo; C. Caccamo; G. Pizzimenti |
189-199 | Excess number and charge functions in liquids | M. Dixon; R. M. Atwood |
201-213 | Number-Concentration structure factors and their long wavelength limit in multicomponent fluid mixtures | A. B. Bhatia; V. K. Ratti |
215-224 | Characteristic features of the evaporation of liquids | G. Bertrand; M. Lallemant; A. Mokhlisse; G. Watelle |
71-98 | H-Theorem for the enskog kinetic equation | D. Bubert |
99-104 | Propriétés thermoélectriques du sélénium liquide pur et dopé à i'lode | H. Labib; J. Fornasero; G. Mesnard |
105-112 | Conductibilité electrique du sélénium liquide pur et dopé á l'lode | H. Labib; J. Fornazdero; G. Mesnard |
113-125 | Velocity of ultrasound in molten au-co alloys for the determination of compressibility and partial structure factors | Richard Bek; Siegfried Steeb |
127-136 | Self-diffusion of tin in a liquid tin-lead alloy at the eutectic composition | D. H. Kurlat; M. Rosen; G. Quintana |
137-148 | Asymptotic behaviour of the radial distribution function in a quasi-crystalline model of liquids | N. N. Medvedev; Yu. I. Naberukhin |
1-19 | Structure of molten bismuth-copper alloys by means of thermal neutron diffraction in the momentum range of k < 1 å-1 | Werner Zaiss; Siegfried Steeb |
21-41 | Structure of molten bi-cu alloys by means of cold neutron scattering in the region of small momentum transfer | Werner Zaiss; Siegfried Steeb; Günter S. Bauer |
43-54 | Quantitative evaluation of the structure of bi-cu-melts and some of their properties | Werner Zaiss; Siegfried Steeb |
55-69 | On the continuity of isochore slopes, and the divergence of the curvature of the vaporization curve at the critical point of a simple fluidf | John Stephenson |
237-249 | On the internal energy of a simple fluid | John Stephenson |
251-265 | A unified theory of adsorption and wetting using the percus yevick equation for hard spheres with surface adhesion | Peter Richmond |
267-281 | Modification de la surface libre d'une couche mince liquide isolante soumise à un flux de charges | G. Sabra; J. Fornazero; G. Mesnard |
283-292 | Profil de la surface libre d'une couche mince liquide isolante chargée | Michel Le Helley; Guy Mesnard |
293-304 | Déformations electrodynamique-capillaire de la surface libre d'un liquide diélectrique | G. Sabra; J. Fornazero; G. Mesnard |
305-324 | Hydrodynamic correlation functions for molten salts | P. V. Giaquinta; M. Parrinello; M. P. Tosi |
165 | Editorial note | C. J. Pings; N. H. March |
167-195 | Chemical potentials, concentration fluctuations, etc., in binary metal alloys | J. C. Thompson; K. Ichikawa; S. M. Granstaff Jr. |
197-206 | Frequency spectra of transport properties in lonic liquids: contribution of charge fluctuation modes | P. V. Giaquinta; M. Parrinello; M. P. Tosi; N. H. March |
207-219 | Molecular size distribution in random polyfunctional condensation: the combinatiorial factors | Michael Falk; George C. Marcotte |
221-236 | Density and ion size effects in polarisable models of molten KI | M. Dixon; M. J. L. Sangster |
93-102 | Pair potentials and properties of simple liquids from the pair corrlation fuction | Y. Waseda; K. Suzuki |
103-108 | Superfluidity, ground-state wave function and bose condensation in liquid helium four | N. H. March; Z. M. Galasiewicz |
109-112 | Possible errors in thermoelectric power measurements in liquid alloys due to thermal diffusion | N. E. Cusack; S. A. Cusack |
113-124 | Experimental measuremnet of the diffusion coefficient of ag110m, cd109, in114m, sn113 and sb125 in liquid tin | M.-O. Du Fou; M. Gerl |
125-135 | Déformation de la surface libre d'une couche mince d'un liquide isolant sous l'action de forces electrostatiques: mise en evidence d'une déformation cellulaire | Ghâzi Sabra; Jean Fornazero; Guy Mesnard |
137-149 | Meaning of the concentration independent partial interference functions of liquid bianry systems | V. I. Korsunsky; Yu. I. Naberukhin |
151-161 | Viscosity of hg-in amalgam | M. Bosco Masera; R. Malvano |
1-7 | Predictions of the “relaxation mechanism” for self diffusion as a function of d-bandfilling in solid and liquid transition metals | Edward Siegel |
9-27 | Optical reflectivity of liquid metals at their melting temperatures | Edward Siegel |
29-37 | Liquid transition metal surface tension and viscosity maxima at the half filled d-band; a manifestation of solid transition metal cohesive energy and melting temperature maxima | Edward Siegel |
39-43 | Structure factors of liquids containing chemical complexes | N. H. March; M. Parrinello; M. P. Tosi |
45-60 | Phase diagrams of ascending and minimum type in terms of concentration fluctuations in binary liquid and solid solutions | A. B. Bhatia; N. H. March |
61-70 | Physical adsorption of some hydrocarbons - the two dimensional liquid state | Un Sik Kim; Yong Kiel Sung; Mu Shik Jhon; Henry Eyring |
71-91 | Structure of molten silver chloride | J. Y. Derrien; J. Dupuy |
205-209 | Furthur Justification for the Concept of a Percus-Yevick Temperature in Liquid Metals | Edward Siegel |
211-215 | Sound Velocity in Liquid Binary Alloys as Calculated via the Percus-Yevick Liquid Phonon Dispersion Relation | Edward Siegel |
217-231 | Virtual Crystal Model of Melting and the Structure Factor of Liquid Alloys | Edward Siegel |
233-240 | Calculation of Sound Velocities of Liquid Metals at their Melting Point via the Percus-Yevick Theory of Melting | Edward Slegel |
241-253 | Equivalence of the Percus-Yevick Collective Coordinate Theoru of liquids with the Self Consistent Field Theory of Melting | Edward Siegel |
255-265 | Statistical Spectral Analysis of liquid X-ray Diffraction Data | A. J. Starshak; R. D. Larsen |
267-278 | Structure of Liquid Pb-Bi Alloys by X-ray Diffraction | Y. Waseda; K. Yokoyama; K. Suzuki |
279-283 | Eutectic Type Liquidus Curves in Compound Forming Systems | A. B. Bhatia; N. H. March |
1-13 | Electrotransport of Sodium in Liquid Potassium Metal | C. Roxbergh; T. Persson; A. Lodding |
15-25 | A Theory of the Diffusion Coefficient in a Liquid Metal: I | T. Gaskell |
27-38 | Partial Interference and Pair Correlation Functions, Thermoelectric Power, and Electrical Resistivity of Molten Cu-Sb Alloys | Walter Knoll; Siegfried Steeb |
39-60 | Structure of Molten Copper-Antimony Alloys by Combination of Neutron and X-ray Diffraction | Walter Knoll; Siegfried Steeb |
175-180 | The landau-placzek ratio for multicomponent fluids | H. N. W. Lekkerkerker; W. G. Laidlaw |
181-190 | The significant structure theory applied to halobenzenes | S. W. L. Wu; A. K. Macknight; W. J. Stearns Jr.; M. E. Zandler; H. Eyring |
191-204 | Hall voltage in electrolyte solutions | Ronald L. Frank; Joseph G. Hoffman |
205-223 | Self-motion response and incoherent scattering function in classical liquids | A. A. Kugler |
225-230 | The effect of a chemical reaction on the damping of the hydrodynamic modes and the spectrum of scattered light | H. N. W. Lekkerkerker; W. G. Laidlaw |
127-135 | The hall effect in molten salts | Mitty C. Plummer; Joe S. Ham |
137-146 | Self-Diffusion in liquid alkali metals | S. J. Larsson; C. Roxbergh; A. Lodding |
147-155 | Experimental investigation of heat conductivity of pbte and pbse in solid and liquid states | A. A. Aivazov; A. S. Okhotin; A. S. Pushkarsky |
157-173 | Spectral analysis of a fluid under thermal constraint | Jean-Pierre Boon |
79-90 | Extended pressure—consistent equation for simple fluids | F. Lado; Shu-Hsia Chen |
91-113 | Equilibrium properties in the liquid state from interactions of walks | Witold Brostow |
115-125 | Temperature dependence of the electrical resistivity of liquid lead between its freezing point and 800°c | M. Pokorny; H. U. Åström |
1-11 | Dielectric properties of isomeric phenyl propanols | Gyan P. Johari; Walter Dannhauser |
13-28 | Étude thermodynamique des alliages liquides or-étain | C. Petot; G. Petot-ervas; M. Rigaud |
29-40 | Refractive indices of binary solutions of nitroparaffins in carbon tetrachloride | Jareld L. Picantine; Gordon L. Hug; Boris Musulin |
41-53 | Liquid metal transport properties | Alan D. Pasternak |
55-58 | The velocity of sound in liquid cesium from its melting point to 655°k | J. P. Chan |
59-78 | Contribution du modèle cellulaire à la détermination de la chaleur de vaporisation et de la pression de vapeur des hydrocarbures saturés | Henry Brusset; Dominique Depeyre |
193-196 | Effect of Temperature on Henry's Constant in Simple Mixtures | G. T. Preston; E. W. Funk; J. M. Prausnitz |
197-212 | Relations Between Atomic Transport Coefficients in Simple Liquids and Moments of Neutron Scattering Functions | B. L. Gyorffy; N. H. March |
213-235 | Hydrodynamic Correlation Functions for Binary Mixtures | Claude Cohen; J. W. H. Sutherland; J. M. Deutch |
237-248 | A Moment Method Approach to the Viscosities of Simple Liquids | T. Gaskell |
249-262 | The Temperature Dependence of the Resistivity and Thermopower in Some Polyvalent Liquid Metals | R. Evans |
119-134 | Determination of the Thermal Conductivities of Several Molten Alkali Halides by Means of a Sheathed Hot-Wire Technique | John McDonald; H. Ted Davis |
135-145 | Saturated Liquid Densities of Cryogenic Fluids | G. M. Agrawal; George Thodos |
147-163 | A Comparative Analysis of the Rice-Allnatt and Square-Well Liquid Transport Theories | I. B. Schrodt; J. S. Ku; K. D. Luks |
165-179 | The Energy Distribution of Electronic States in a Liquid Metal | T. Chan; L. E. Ballentine |
181-191 | Étude des Interactions du Zinc et de l'Or dans l'Étain Liquide | C. Petot; G. Petot-ervas; M. Rigaud |
67-75 | Electrodeposition of silver from dense gaseous solutions of silver nitrate in ammonia | R. A. Williams; S. Naiditch |
77-85 | The viscosities of some lead-antimony and lead-antimony-tin alloys | A. F. Crawley |
87-113 | Atomic distributions in liquid copper-tin alloys | D. M. North; C. N. J. Wagner |
115-118 | The absolute thermoelectric power of some liquid bismuth-based solutions | Kazuhiko Ichikawa; Mitsuo Shimoji |
1-12 | The electrical resistivity of liquid indium, tin and lead | H. A. Davies; J. S. Llewelyn Leach |
13-18 | The absolute thermoelectric powers of liquid alloys in fifteen binary systems | R. Tougas |
19-24 | On the epstein-paskin criterion for electrotransport in alloys | R. G. R. Sellors; J. N. Pratt |
25-28 | The determination of the dielectric constant of liquid ammonia | J. Baldwin; J. B. Gill |
29-35 | The conductivity of AgNO3 in liquid and dense gaseous NH3 as a function of temperature | R. A. Williams; S. Naiditch |
37-44 | Liquid structure and dielectric relaxation of some isomeric methylheptanols | Walter Dannhauser; Arthur F. Flueckinger |
45-51 | A fast fourier transform algorithm for the radial distribution function | A. J. Starshak; R. D. Larsen |
53-66 | Specific heats of liquids and phonon theory | P. Bratby; T. Gaskell; N. H. March |
221-234 | Temperature- and Concentration-dependency of the Electrical Resistivity of Molten Ag-Mg-, Cu-Sb-, and Zn-Sn-alloys | S. Steeb; U. Maier; D. Godel |
235-251 | Röntgenographische Strukturuntersuchung geschmolzener Magnesium-Blei Legierungen | S. Steeb; H. Dilger; J. Höhler |
253-263 | Intermediate Scattering Function and Atomic Transport in Liquid Metals | B. L. Gyorffy; N. H. March |
265-273 | Note on One-Dimensional Lattice Gas in External Fields | W. Kunkin; H. L. Frisch |
191-207 | The Absolute Thermoelectric Power of Some Dilute Liquid Sodium Alloys | H. A. Davies |
209-219 | The Hard Rod Fluid in a Uniform Gravitational Field | W. Kunkin |
109-119 | Electromigration and Diffusion of Cadmium and Indium in Liquid Sodium | Seymour G. Epstein |
121-128 | Structure of Liquids. VIII. An X-Ray Diffraction Study of Liquid Mercury-Gallium Systems | R. W. Caput; S. E. Rodriguez; C. J. Pings |
129-139 | Critical Properties of Argon | Anthony F. Grigor; William A. Steele |
141-158 | Atomic Transport and Isotopic Mass Effects in Classical Liquids | R. C. Brown; N. H. March |
159-170 | The Absolute Viscosity of Some Lead-Tin Alloys | F. A. Kanda; R. P. Colburn |
171-179 | Volume Change on Formation and Thermal Expansion Coefficient of Liquid Hg-In Alloys | H. A. Davies; P. H. Draper; J. S. Li. Leach |
181-190 | Small Angle X-Ray Scattering from Tertiary-Butyl Alcohol-Water Mixtures | Harold D. Bale; Robert E. Shepler; Daniel K. Sorgen |
1-11 | Percus-Yevick Structure Factors for Liquid Alloys | J. E. Enderby; D. M. North |
13-32 | Discussion of the Quasi Elastic Scattering of Neutrons in Incoherent Liquids | S. N. Purohit |
33-48 | The Absolute Thermoelectric Powers of the Liquid Alkali Metals | P. W. Kendall |
49-60 | The Use of Liquid Densities as a New Technique for Determining Liquid Immiscibility Phase Boundaries | Frank A. Kanda; Robert C. Faxon; Roger Grant |
61-72 | The Determination of the Liquid Immiscibility Boundaries of the Lithium-Sodium and Thallium-Selenium Systems by the Liquid Density Method | Frank A. Kanda; Robert C. Faxon; Douglas V. Keller |
73-91 | Optimization of Results Obtained from Integrals over Poisson Distributed Data I. Optimal Correlation Functions from Elastic Neutron Scattering Data in Simple Liquids | Werner A. Schlup |
93-108 | The Use of the Coordination Number in the Interpretation of Fluid Structure | P. G. Mikolaj; C. J. Pings |