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More by William W. Weller
Low-temperature Heat Capacities and Entropies at 298.15° K of Lead Molybdate and Lead Tungstate
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Low-temperature Heat Capacities and Entropies at 298.150 K. of Sodium Dimolybdate and Sodium Ditungstate
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Low-temperature Heat Capacity and Entropy at 298.150 K. of Scandium
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Low-temperature Heat Capacities and Entropies at 298.150 K of Akermanite, Cordierite, Gehlenite, and Merwinite
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Low-temperature Heat Capacities and Entropies at 298.150 K of Lead Molybdate and Lead Tungstate
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Low-temperature Heat Capacities and Entropies at 298.150 of Sulfides of Arsenic, Germanium and Nickel
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Thermodynamic Data for Columbium (niobium) Carbide
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Low-temperature Heat Capacity and High-temperature Heat Content of Mullite
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Thermodynamic Properties of Sodium-aluminum and Potassium-aluminum Silicates
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Energies and Equilibria in the Decomposition of Nitrates of Manganese, Magnesium, Calcium, Barium, and Aluminum and Reactions of Nitrogen Peroxide: Issues 3776-3779
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Contributions to the Data on Theoretical Metallurgy: High-temperature specific-heat equations for inorganic substances. II
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Contributions to the Data on Theoretical Metallurgy: A revision of the entropies of inorganic substances - 1935. VI
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Contributions to the Data on Theoretical Metallurgy: XV. A Reprint of Bulletins 383, 384, 393, and 406
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High-temperature Heat Content and Entropies of Crystalline and Glassy Germanium Dioxide
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Thermodynamic Properties of Carbides of Chromium
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Contributions to the Data on Theoretical Metallurgy: Entropies of inorganic substances. I
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Heats of Fusion of Inorganic Substances
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Contributions to the Data on Theoretical Metallurgy: The thermodynamic properties of sulphur and its inorganic compounds. VII, Part 7
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Contributions to the Data on Theoretical Metallurgy: The free energies of vaporization and vapor pressures of inorganic substances. III
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Contributions to the Data on Theoretical Metallurgy: The thermodynamic properties of metal carbides and nitrides. VIII
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