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Chemical Thermodynamics of Tin - Volume 12 - OECD Nuclear ...

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508 Bibliography<br />

[1934BRO]<br />

Brown, A. S., A type <strong>of</strong> silver chloride electrode suitable for use in<br />

dilute solutions, J. Am. Chem. Soc., 56, (1934), 646-647. Cited on<br />

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[1934HUE/TAR] Huey, C. S., Tartar, H. V., The stannous-stannic<br />

oxidation-reduction potential, J. Am. Chem. Soc., 56, (1934),<br />

2585-2588. Cited on pages: 99, 103, 273, 274, 275, 276, 333.<br />

[1934PRY]<br />

[1935COH/LIE]<br />

[1935DEN/KIN]<br />

[1935GUG]<br />

[1935PAU/BRO]<br />

[1936KAP/ZIL]<br />

[1936KEE/LAE]<br />

[1936KRE/FEI]<br />

[1936NEG]<br />

[1936SCA]<br />

Prytz, M., Potentialmessungen in Zinnchloridlösungen, Z. Anorg.<br />

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German. Cited on page: 81.<br />

Denham, H. G., King, W. E., The ternary system: stannous<br />

oxide-sulphur trioxide-water, J. Chem. Soc., (1935), <strong>12</strong>51-<strong>12</strong>53.<br />

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Guggenheim, E. A., The specific thermodynamic properties <strong>of</strong><br />

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interpretation <strong>of</strong> electron-diffraction photographs <strong>of</strong> gas molecules,<br />

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equilibria in inorganic systems. IV. System: tin-carbon-oxygen, Tr.<br />

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Russian. Cited on pages: 131, 133, 393, 399, 422.<br />

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tin passing from the superconductive to the non-superconductive<br />

state, Physica, 3, (1936), 371-384. Cited on page: 86.<br />

Krestovnikov, A. N., Feigina, E. I., Heat capacity <strong>of</strong> tin in sulphide<br />

at high temperature, Zh. Fiz. Khim., 8, 1, (1936), 74-76, in<br />

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Negishi, G. R., The heat <strong>of</strong> fusion and vapor pressure <strong>of</strong> stannic<br />

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CHEMICAL THERMODYNAMICS OF TIN, ISBN 978-92-64-99206-1, © <strong>OECD</strong> 20<strong>12</strong>

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