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

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V.1 <strong>Tin</strong> crystal 85<br />

Table V-4: Comparison <strong>of</strong> experimental enthalpy differences <strong>of</strong> white tin with selected<br />

reference data [1991GUR/VEY2].<br />

T/K<br />

H m (Sn, β, T ) − H m (Sn, β, 471 K)/J·mol –1<br />

[1960GEN/HAG]<br />

[1991GUR/VEY2]<br />

481 289 303<br />

491 573 609<br />

T fus 1004 1044<br />

T/K<br />

H m (Sn, β, T ) − H m (Sn, β, 291 K)/J·mol –1<br />

[1926AWB/GRI]<br />

[1991GUR/VEY2]<br />

366 2210 2075<br />

421 3623 3664<br />

453 4594 4614<br />

T fus 6094 6201<br />

Table V-5 lists compilations/evaluations which present data as a function <strong>of</strong><br />

temperature. The compilations [1952ROS/WAG], [1968WAG/EVA] and<br />

[1982WAG/EVA] include data only at 298.15 K. Some references in Table V-5 contain<br />

fitting equations, the parameters <strong>of</strong> which are found in Table V-6. The equation <strong>of</strong><br />

Jaeger and Bottema [1932JAE/BOT] is a fitting equation for the authors’ own<br />

experimental measurements only, and is given here for comparison.<br />

Table V-5: Survey <strong>of</strong> compilations/evaluations <strong>of</strong> the heat capacity <strong>of</strong> white tin<br />

ο<br />

(Sn, β, T ).<br />

C p,m<br />

Reference T/K Discussion Data source given<br />

[1956STU/SIN] 298 − 505 N Y<br />

[1960KEL] 350 − 505 N Y<br />

[1963HUL/ORR], [1973HUL/DES] 298 − 505 Y Y<br />

[1973BAR/KNA]<br />

[1973HUL/DES2], [1982PAN], [1993BAR], [1991DIN] 298 − 505 Y Y<br />

[1978ROB/HEM] 298 − 505 N Y<br />

[1991GUR/VEY], [1993MCB/GOR], [1995ROB/HEM] 100 − 505 Y Y<br />

[1999BIN/MIL] 298 − 505 N N<br />

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

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