Russian Journal of Inorganic Chemistry, Tập 31,Trang 1265-1860Chemical Society., 1986 |
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... LIQUID AIR . The critical constants for liquid air are a temperature of -140 ° C. and a pressure of 40 atmospheres . The maximum temperature at which air can exist in the liquid state is -140 ° C. , and at this tem- perature it has a ...
... LIQUID AIR . The critical constants for liquid air are a temperature of -140 ° C. and a pressure of 40 atmospheres . The maximum temperature at which air can exist in the liquid state is -140 ° C. , and at this tem- perature it has a ...
Trang 1
... liquid contaminants move downward through the vadose zone toward the water table . Migrating as a liquid phase separate from the air and water already present in the vadose zone , some of the organic liquid is immobilized within the ...
... liquid contaminants move downward through the vadose zone toward the water table . Migrating as a liquid phase separate from the air and water already present in the vadose zone , some of the organic liquid is immobilized within the ...
Trang 94
... liquid crystals. J. Chem. Phys. 2010, 132, 184901. [CrossRef] Saielli, G.; Bagno, A.; Wang, Y. Insights on the isotropic-to-Smectic a transition in ionic liquid crystals from coarse-grained molecular dynamics simulations: The role of ...
... liquid crystals. J. Chem. Phys. 2010, 132, 184901. [CrossRef] Saielli, G.; Bagno, A.; Wang, Y. Insights on the isotropic-to-Smectic a transition in ionic liquid crystals from coarse-grained molecular dynamics simulations: The role of ...
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MAY 19 | 1265 |
The structure and stability of beryllium and magnesium | 1271 |
Journal | 1415 |
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absorption acid Akad ammonium analysis anion atoms bands binary bond borate calculated cation Chem chemical Chemistry chloride cm-¹ cm¹ cobalt(II complex formation components composition compounds concentration constant containing coordination copper(II corresponding crystallisation crystals curves decomposition decrease determined electron endothermic enthalpy EPR spectra erbium europium eutectic experimental extraction formed H₂O heating hydrated hydrogen increase indium infrared infrared spectra Inorg interaction ions iron(III isothermal Khim Khimiya lanthanide lanthanum ligand liquid mass melting metal method mixture molar mole molecules Moscow Nauk SSSR neodymium Neorg nitrate obtained oxide oxygen parameters potassium present range ratio reaction reagents rhodium rhodium(II Russ Russ.J salt shows sodium solid phase solid solutions solubility sorbent specimens spectra spectrum structure studied sulphate sulphur synthesis temperature ternary thermal tion Translated from Zhurnal values vibrations wavenumbers X-ray diffraction X-ray diffraction patterns ytterbium Zhur Zhur.Neorg Zhurnal Neorganicheskoi Khimii