All Stories

  1. Determination of the specific surface of a granular porous material by the USAXS–SAXS intensity of a loosely packed powder sample
  2. Characterization of the CaCO3 calcination process by the Porod invariant behaviour
  3. Algebraic approximations of a polyhedron correlation function stemming from its chord-length distribution
  4. The chord-length distribution of a polyhedron
  5. When a function can be considered a physical scattering density fluctuation?
  6. Scattering intensity limit value at very small angles
  7. Small-angle scattering behavior of thread-like and film-like systems
  8. When a physical system thermodynamically behaves as another physical system?
  9. Generalization of the Fedorova–Schmidt method for determining particle size distributions
  10. The correlation functions of the regular tetrahedron and octahedron
  11. The chord-length probability density of the regular octahedron
  12. Small-Angle Neutron Scattering Study of Deuterated Propane Adsorption in Silica Aerogel
  13. Correction to “Phase Behavior of Carbon Dioxide Confined in Silica Aerogel in the Vicinity of the Bulk Critical Point”
  14. Carbon Dioxide Confined in Silica Aerogel in the Vicinity of the Bulk Critical Point
  15. Supercritical carbon dioxide behaviour in porous silica aerogel. Erratum
  16. Supercritical carbon dioxide behavior in porous silica aerogel
  17. Asymptotic analysis of small-angle scattering intensities of plane columnar layers
  18. The isotropic correlation function of plane figures: the triangle case
  19. The correlation functions of plane polygons
  20. On the crystalline states of the dilute jellium model
  21. Small-angle scattering from three-phase samples: application to coal undergoing an extraction process
  22. Generalization of a theorem of Carathéodory
  23. Small-angle scattering from three phase systems: application to a coal undergoing an extraction process
  24. The determinants of some multilevel Vandermonde and Toeplitz matrices
  25. Removal of the phase problem by the atomicity assumption
  26. The algebraic approach to the phase problem
  27. The intersect distribution of the regular tetrahedron
  28. The positive-entropy constraint for the classical ideal gas
  29. The Lerch function and the thermodynamical functions of the ideal quantum gases
  30. On the autocorrelation functions of right cylindrical particles
  31. Small-angle scattering characterization of n-aliphatic alcohol films adsorbed on hydroxyled porous silicas
  32. Reconstruction of the form of a particle from its three-dimensional asymptotic form factor
  33. The best two-phase idealization of a sample in small-angle scattering
  34. Particle shape reconstruction from the asymptotic small-angle scattering intensity
  35. Illustration of the anisotropic Porod law
  36. The asymptotic leading term of anisotropic small-angle scattering intensities. II. Non-convex particles
  37. Background subtraction and moments of the microscopic density fluctuation
  38. Zero-temperature perturbative calculation of the magnetic susceptibility of the free fermion system
  39. Harry Brumberger
  40. APPLICATION OF THE ANISOTROPIC POROD LAW TO SOME TYPICAL PARTICLE SHAPES
  41. Harry Brumberger (1926–2000)
  42. Complete subsets of a diffraction pattern
  43. Generalization of Porod's law of small-angle scattering to anisotropic samples
  44. Small-angle scattering intensity behaviours of cylindrical, spherical and planar lamellae
  45. Direct analysis of small-angle smeared intensity tails. II. Applications
  46. Direct analysis of small-angle smeared intensity tails. I. General results
  47. X-Ray study of metallic particle sintering in Pt-NaY zeolite catalysts
  48. Solving one-dimensional structures by the algebraic approach
  49. Diffuse Interfaces and Small-Angle Scattering Intensity Behaviour
  50. Coal Rank and Shape of the small-Angle X-Ray Intensity
  51. In SituSmall-Angle X-ray Scattering Observations of Pt/NaY Catalysts During Processing: Sintering of Pt
  52. The algebraic approach to solving the phase problem for crystals with point-like atoms
  53. Planar Facet Interface: Overlapping Volume and Scherrer Constant Expressions
  54. On the Harker–Kasper inequalities
  55. Integral expressions of the derivatives of the small‐angle scattering correlation function
  56. The vertex contribution to the Kirste–Porod term
  57. Entropy determination by scattering data
  58. Coated silicas and small-angle X-ray intensity behaviour
  59. SAXS study of coated porous silicas
  60. Integral expressions of the small-angle scattering correlation-function derivatives
  61. Edge contributions to the Kirste–Porod formula: the spherical segment case
  62. Edge contributions to the Kirste–Porod formula: the truncated circular right cone case
  63. The leading asymptotic term of the small-angle intensities scattered by some idealized systems
  64. Leading asymptotic term of the small-angle scattered intensity
  65. Polydisperse analysis of absolute small‐angle intensities scattered by activated carbons
  66. Polydisperse analysis of small‐angle intensities scattered by natural coals
  67. Particle size distribution and X-ray diffraction peak profiles in supersaturated solid solutions
  68. Small-angle techniques for the asymptotic analysis of X-ray diffraction peaks
  69. Particle shapes and oscillatory deviations from the Porod law: the hyperbolic contact point case
  70. Generalized mean spherical approximations
  71. On the Porod law
  72. Polydisperse Distributions of Composite Particles and the SAXS Behaviour of Low-Rank Coals
  73. Generalized mean spherical approximations of the dense hard-sphere fluid
  74. Oscillatory deviations from Porod's law in the intensities scattered by some glasses
  75. Generalized mean spherical approximations of the hard-sphere system
  76. Deviations from the Porod law due to parallel equidistant interfaces
  77. Parameterizations of scattering intensities and values of the angularities and of the interphase surfaces for three-component amorphous samples
  78. On the mechanical instability of hard-sphere systems
  79. A reasonable candidate for the McMillan–Mayer ion–ion potential of strong 1–1 electrolytes
  80. Some parametrizations useful for determining the specific surfaces and the angularities of amorphous samples
  81. Equivalent formulations and implications of Debye randomness for amorphous systems
  82. Thermodynamical behaviour and radial distribution functions of dilute systems of charged rigid spheres
  83. Singularities of phase boundaries and values of the second-order derivative of the correlation function at the origin
  84. A new form of the correction to the coulombic contribution in the McMillan-Mayer ion-ion potential
  85. "Effective" dipolar forces in electrolytic solutions of structure-breaking salts
  86. A nearly algebraic approximation for hard sphere systems
  87. First order corrections to the correlation functions of charged hard spheres
  88. Integral expressions of the correlation functions of amorphous samples as well as their derivatives.
  89. Variational optimization of truncated approximations
  90. Dipolar effects in electrolytes
  91. Dipolar effects in electrolytes
  92. Dilute systems of dipoles and dipolar charged particles
  93. Charged particles with a dipole moment at equilibrium
  94. Covariance properties of fields under inversion and finite conformal transformations
  95. Chiral invariance and Thirring models
  96. Equal time commutators from broken conformal invariance and implications for asymptotic sum rules
  97. Broken scale invariance and asymptotic sum rules
  98. Schwinger terms and covariant bjorken expansions for two- and three-point functions
  99. Compositeness conditions for vector particles
  100. Electromagnetic mass differences and composite particles
  101. On the connection between vacuum-like and light-like solutions of the Bethe-Salpeter equation
  102. Zero-mass bosons and singularities in a relativistic model with a spontaneously broken symmetry
  103. An explicit solution of the bargman-michel-telegdi equation for the polarization in a magnetic field
  104. Lightlike solutions of the Bethe-Salpeter equation