16 results on '"Hope, G.A."'
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2. Thermodynamic properties of vanadium silicides. I. Standard molar enthalpy of formationΔfHmoof vanadium disilicide (VSi2) at the temperature 298.15 K
3. A fluorine bomb calorimetric determination of the standard molar enthalpy of formation of silicon disulfide SiS2(cr) at the temperature 298.15 K. Enthalpies of dissociation of Si–S bonds
4. Thermodynamic properties of silicides. VI. Pentamolybdenum trisilicide (Mo5Si3). Fluorine combustion calorimetric determination of the standard molar enthalpy of formation at the temperature 298.15 K
5. Thermodynamic properties of silicides V. Fluorine-combustion calorimetric determination of the standard molar enthalpy of formation at the temperature 298.15 K of trimolybdenum monosilicide Mo3Si, and a critical assessment of its thermodynamic properties
6. Thermochemistry of (germanium + tellurium)
7. A new value for the standard molar enthalpy of formation ΔfHom of silicon sesquitelluride Si2Te3 at the temperature 298.15 K by combustion calorimetry in fluorine, and an assessment of the results of previous studies that lead to ΔfHom(Si2Te3)
8. Thermodynamic properties of tungsten ditelluride (WTe2) II. Standard molar enthalpy of formation at the temperature 298.15 K
9. Thermodynamic properties of tungsten ditelluride (WTe2) I. The preparation and lowtemperature heat capacity at temperatures from 6 K to 326 K
10. A new value for the standard molar enthalpy of formation ΔfHomof silicon sesquitelluride Si2Te3at the temperature 298.15 K by combustion calorimetry in fluorine, and an assessment of the results of previous studies that lead to ΔfHom(Si2Te3)
11. Standard molar enthalpy of formation at 298.15 K of the β-modification of molybdenum ditelluride
12. Thermodynamic properties of tungsten ditelluride (WTe 2) II. Standard molar enthalpy of formation at the temperature 298.15 K
13. Thermodynamic properties of tungsten ditelluride (WTe 2) I. The preparation and lowtemperature heat capacity at temperatures from 6 K to 326 K
14. Thermodynamic properties of silicides: IV. Determination of the standard molar enthalpies of formation at the temperature 298.15 K of pentatungsten trisilicides of composition W 5Si 3and W 5Si 3.115by fluorine-combustion calorimetry
15. Thermodynamic properties of silicides V. Fluorine-combustion calorimetric determination of the standard molar enthalpy of formation at the temperature 298.15 K of trimolybdenum monosilicide Mo 3Si, and a critical assessment of its thermodynamic properties
16. Thermodynamic properties of silicides. VI. Pentamolybdenum trisilicide (Mo 5Si 3). Fluorine combustion calorimetric determination of the standard molar enthalpy of formation at the temperature 298.15 K
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