192 results on '"O'Hare, P.A.G."'
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52. Cesium nitrate. Standard enthalpies of solution and formation and the standard entropy at 298.15 K
53. Inorganic chalcogenides: high-tech materials, low-tech thermodynamics
54. The standard molar enthalpy of formation at 298.15 K of crystalline germanium diselenide (GeSe2). Thermochemical GeSe bond-dissociation enthalpies. Revised values for the standard molar enthalpies of formation of GeF4(g) and SeF6(g)
55. The standard enthalpy of formation of LaNi5 The enthalpies of hydriding of LaNi5−xAlx
56. Thermochemistry of uranium compounds VII. Solution calorimetry of α- and β-Na2UO4, standard enthalpy of formation of β-Na2UO4, and the enthalpy of the α to β transition at 298.15 K
57. Cesium diuranate (Cs2U2O7): heat capacity (5 to 350 K) and thermodynamic functions to 350 K. A re-evaluation of the standard enthalpy of formation and the thermodynamics of (cesium + uranium + oxygen)
58. Thermochemistry of uranium compounds XVII. Standard molar enthalpy of formation at 298.15 K of dehydrated schoepite UO3 · 0.9H2O. Thermodynamics of (schoepite + dehydrated schoepite + water)
59. Enthalpy increments for α- and β-Na2UO4 and Cs2UO4 by drop calorimetry The enthalpy of the α to β transition in Na2UO4
60. Thermochemistry of uranium compounds III. Standard enthalpy of formation of cesium uranate (Cs2UO4)
61. Heat capacity from 5 to 350 K and thermodynamic properties of cesium nitrate to 725 K
62. Thermochemistry of molybdates III. Standard enthalpy of formation of barium molybdate, and the standard entropy and standard Gibbs energy of formation of the aqueous molybdate ion
63. A fluorine-combustion calorimetric study of two molybdenum selenides: MoSe2 and Mo6Se6
64. Standard enthalpies of solution and formation at 298.15 K of anhydrous magnesium and calcium nitrates
65. Calorimetric measurements of the low-temperature heat capacity, standard molar enthalpy of formation at 298.15 K, and high-temperature molar enthalpy increments relative to 298.15 K of tungsten disulfide (WS2), and the thermodynamic properties to 1500 K
66. Thermochemistry of uranium compounds VIII. Standard enthalpies of formation at 298.15 K of the uranates of calcium (CaUO4) and barium (BaUO4). Thermodynamics of the behavior of barium in nuclear fuels
67. The standard molar enthalpy of formation at 298.15 K of S2N+AsF6− by fluorine combustion calorimetry
68. The energy difference between the crystalline and vitreous forms of germanium diselenide as determined by combustion calorimetry in fluorine. The Ge-Se bond energy
69. Standard enthalpy of solution and formation of cesium chromate. Derived thermodynamic properties of the aqueous chromate, bichromate, and dichromate ions, alkali metal and alkaline earth chromates, and lead chromate
70. The low-temperature (5 to 310 K) heat capacity and thermodynamic functions of cesium fluoroxysulfate (CsSO4F) and the standard potential at 298.15 K for the half-reaction: SO4F−(aq) + 2H+(aq) + 2e− = HSO4−(aq) + HF(aq)
71. Lithium nitride (Li3N): standard enthalpy of formation by solution calorimetry
72. Standard molar enthalpy of formation by fluorine-combustion calorimetry of tungsten diselenide (WSe2). Thermodynamics of the high-temperature vaporization of WSe2. Revised value of the standard molar enthalpy of formation of molybdenite (MoS2)
73. Thermochemistry of inorganic sulfur compounds III. The standard molar enthalpy of formation at 298.15 K of US1.992 (β-uranium disulfide) by fluorine bomb calorimetry
74. Thermochemistry of uranium compounds IX. Standard enthalpy of formation and high-temperature thermodynamic functions of magnesium uranate (MgUO4) A comment on the non-existence of beryllium uranate
75. The enthalpies of formation of iodine pentafluoride and iodine heptafluoride
76. The thermodynamic properties of Na2UO4, Na2U2O7, and NaUO3
77. Thermochemistry of molybdates V. Standard enthalpy of formation of cesium dimolybdate (Cs2Mo2O7)
78. Thermochemistry of inorganic sulfur compounds VIII. Na2SO3 and K2SO3: standard molar enthalpies of solution and formation at 298.15 K, high-temperature enthalpy increments and heat capacities, and temperatures and enthalpies of transition. A new value for the standard molar enthalpy of formation of SO32−(aq)
79. The standard molar enthalpy of formation at 298.15 K of VS1.043 by combustion calorimetry in fluorine
80. Thermochemistry of inorganic sulfur compounds IV. Standard molar enthalpy of formation of sulfur hexafluoride
81. Thermodynamic stability of orthorhombic black phosphorus
82. Thermodynamic investigation of trisodium uranium(V) oxide (Na3UO4) I. Preparation and enthalpy of formation
83. Thermochemistry of uranium compounds II. standard enthalpy of formation of α-sodium uranate (α-Na2UO4)
84. The enthalpy of formation of thiazyl monofluoride (NSF). Bond dissociation enthalpies of thiazyl tri- and monofluorides and related nitrogen—sulfur—fluorine compounds
85. Thermochemistry of molybdates. II. Standard enthalpies of formation of rubidium molybdate and the aqueous molybdate ion
86. The thermochemistry of sulphur-containing molecules and radicals—III
87. Thermochemistry of molybdates I. Standard enthalpy of formation of cesium molybdate (Cs2MoO4)
88. The thermochemistry of sulphur-containing molecules and radicals—I
89. Obituary
90. Standard molar enthalpies of formation of alloys in the pseudobinary system Zr(Al xCo 1 − x) 2 at the temperature 298.15 K
91. Heat capacity (5 to 350 K) and recommended thermodynamic properties of barium uranate (BaUO 4) to 1100 K
92. Cesium chromate, Cs 2CrO 4: high-temperature enthalpy increments and other thermodynamic properties
93. Thermochemical study of cesium dichromate
94. Enthalpy increments for α- and β-Na 2UO 4 and Cs 2UO 4 by drop calorimetry The enthalpy of the α to β transition in Na 2UO 4
95. The standard molar enthalpy of formation at 298.15 K of VS 1.043 by combustion calorimetry in fluorine
96. Standard molar enthalpy of formation by fluorine-combustion calorimetry of tungsten diselenide (WSe 2). Thermodynamics of the high-temperature vaporization of WSe 2. Revised value of the standard molar enthalpy of formation of molybdenite (MoS 2)
97. Lithium nitride (Li 3N): standard enthalpy of formation by solution calorimetry
98. Thermochemistry of uranium compounds XII. Standard enthalpies of formation of the α and β modifications of uranium pentafluoride The enthalpy of the β-to-α transition at 298.15 K
99. Thermochemistry of uranium compounds XIII. Standard enthalpies of formation at 298.15 K of α-uranium oxide tetrafluoride (UOF 4) and uranyl fluoride (UO 2F 2) Thermodynamics of (uranium + oxygen + fluorine)
100. The thermodynamic properties of Na 2UO 4, Na 2U 2O 7, and NaUO 3
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