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More by Raymond L. Carpenter
Low-temperature Heat Capacities and Entropies at 298.15° of Sulfides of Arsenic, Germanium and Nickel: 1963
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Recovery of Alumina from Anorthosite, San Gabriel Mountains, California, Using the Lime Soda Sinter Process: With a Section on Geology by Gordon B. Oakeshott, Issues 6241-6295
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Heats and Free Energies of Formation of Vanadates of Lead and Manganese
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Reconnaissance of Tellurium Resources in Arizona, Colorado, New Mexico and Utah: Including Selected Data from Other Western States and Mexico, Issues 6341-6360
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Energy Production and Consumption in the United States: An Analytical Study Based on 1954 Data, Issues 5810-5847
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Heats and Free Energies of Formation of Ferrites and Aluminates of Calcium, Magnesium, Sodium, and Lithium: Issues 5707-5713
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Methods for Producing Alumina from Clay: An Evaluation of the Sulfurous Acid-caustic Purification Process, Issues 5981-6000
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Well Productivity Related to Drilling Muds: Umiat Field, Naval Petroleum Reserve No. 4, Alaska, Issues 5701-5710
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High-temperature Heat Contents and Entropies of Akermanite, Cordierite, Gehlenite, and Merwinite
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Low-temperature Heat Capacities and Entropies at 298.150 K of Crystalline Silicates of Barium and Strontium
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Low-temperature Heat Capacities and Entropies at 298.15° K of Lead Molybdate and Lead Tungstate
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Low-temperature Heat Capacities of Copper Ferrites (with a Summary of Entropies at 298.15 K. of Spinel Minerals)
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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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Heats of Formation of Two Crystalline Hydrates of Ferrous Sulfate
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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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