30 results on '"Sator, Nicolas"'
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2. Fermions
3. Phase Transition – Spatial Variations of the Order Parameter
4. Microcanonical Statistical Ensemble
5. Simple Classical Fluids
6. The Link between the Physical and Chemical Properties of Carbon-Bearing Melts and Their Application for Geophysical Imaging of Earth’s Mantle
7. Solubility of CO2 in mafic melts up to 8.5 GPa, measured by Raman spectroscopy
8. Raman spectroscopy to determine CO2 solubility in mafic silicate melts at high pressure: Haplobasaltic, haploandesitic and approach of basaltic compositions
9. Non-Arrhenian Temperature-Dependent Viscosity of Alkali(ne) Carbonate Melts at Mantle Pressures
10. Noble Gases in Carbonate Melts: Constraints on the Solubility and the Surface Tension by Molecular Dynamics Simulation
11. Density of hydrous carbonate melts under pressure, compressibility of volatiles and implications for carbonate melt mobility in the upper mantle
12. A comprehensive molecular dynamics simulation study of hydrous magmatic liquids
13. The MgCO3–CaCO3–Li2CO3–Na2CO3–K2CO3 melts: Thermodynamics and transport properties by atomistic simulations
14. Atomistic simulations of molten carbonates: Thermodynamic and transport properties of the Li2CO3—Na2CO3—K2CO3 system
15. Properties of planetary silicate melts by molecular dynamics simulation
16. Structure and transport at grain boundaries in polycrystalline olivine: An atomic-scale perspective
17. Properties of magmatic liquids by molecular dynamics simulation: The example of a MORB melt
18. The molecular structure of melts along the carbonatite–kimberlite–basalt compositional joint: CO 2 and polymerisation
19. Carbon dioxide in silicate melts at upper mantle conditions: Insights from atomistic simulations
20. 2. L'eau sous toutes ses formes et ses transformations
21. Structure, equation of state and transport properties of molten calcium carbonate (CaCO3) by atomistic simulations
22. Vesicularity, bubble formation and noble gas fractionation during MORB degassing
23. Erratum: “Comment on ‘Exactly solvable models to illustrate supersymmetry and test approximation methods in quantum mechanics,’ Am. J. Phys. 79, 755–761 (2011)” [Am. J. Phys. 80, 734–737 (2012)]
24. Comment on “Exactly solvable models to illustrate supersymmetry and test approximation methods in quantum mechanics,” Am. J. Phys. 79, 755–761 (2011)
25. Noble gases in high-pressure silicate liquids: A computer simulation study
26. Neutral buoyancy of titanium-rich melts in the deep lunar interior
27. Carbon dioxide in silicate melts: A molecular dynamics simulation study
28. Computer modeling of natural silicate melts: What can we learn from ab initio simulations
29. A computer simulation study of natural silicate melts. Part II: High pressure properties
30. A computer simulation study of natural silicate melts. Part I: Low pressure properties
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