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X.3 Arsenic compounds and complexes 245<br />

Table X-7 (continued)<br />

T/K<br />

ο<br />

p,m<br />

C /J·K –1·mol –1 HT ( ) − H(0K)/<br />

J·mol –1<br />

ο<br />

S m /J·K –1·mol –1 −[( GT ( ) − G(0 K)) T −1<br />

] /<br />

–1<br />

J·K<br />

–1·mol<br />

140.00 158.4 (158.603) 14000 (14046.506) 195 (193.153) 95.000 (92.821)<br />

150.00 160.9 (161.057) 15600 (15645.090) 206 (204.181) 102.000 (99.880)<br />

160.00 163.4 (163.169) 17300 (17266.436) 216 (214.644) 107.875 (106.729)<br />

170.00 165.4 (165.013) 18900 (18907.509) 226 (224.593) 114.824 (113.372)<br />

180.00 166.9 (166.647) 20600 (20565.933) 236 (234.071) <strong>12</strong>1.556 (119.816)<br />

190.00 168.7 (168.116) 22300 (22239.840) 245 (243.<strong>12</strong>1) <strong>12</strong>7.632 (<strong>12</strong>6.069)<br />

200.00 170.2 (169.455) 23900 (23927.759) 253 (251.779) 133.500 (132.140)<br />

220.00 171.6 (171.847) 27400 (27341.256) 270 (268.044) 145.455 (143.766)<br />

240.00 173.7 (173.987) 30800 (30799.864) 285 (283.090) 156.667 (154.757)<br />

260.00 175.7 (175.977) 34300 (34299.634) 299 (297.095) 167.077 (165.173)<br />

273.15 177.2 (177.239) 36600 (36622.027) 308 (305.809) 174.008 (171.736)<br />

290.00 178.7 (178.827) 39600 (39621.873) 318 (316.465) 181.448 (179.838)<br />

298.15 179.6 (179.590) 41100 (41082.403) 323 (321.432) 185.150 (183.641)<br />

310.00 180.7 (180.697) 43200 (43217.072) 330 (328.453) 190.645 (189.043)<br />

Table X-8: Thermodynamic properties <strong>of</strong> Sn 3 As 4 . Smoothed and numerically integrated<br />

data on Sn 4 As 3 with 59% Sn. Values in parentheses have been recalculated by modified<br />

fir functions, see Appendix a entry for [1980KOS/PAS].<br />

T/K<br />

ο<br />

p,m<br />

C /J·K –1·mol –1 HT ( ) − H(0K)<br />

/<br />

J·mol –1<br />

ο<br />

S m /J·K –1·mol –1 −[( GT ( ) − G(0 K)) T −1<br />

] /<br />

–1<br />

J·K<br />

–1·mol<br />

5 0.439 (0.710) 1.10 (0.888) 0.146 (0.237) − 0.074 (0.060)<br />

10 5.30 (5.509) 15.4 (11.606) 2.35 (1.519) 0.81 (0.358)<br />

15 19.2 (17.053) 72.7 (66.576) 6.94 (5.818) 2.09 (1.380)<br />

20 30.2 (30.003) 192 (184.289) 13.8 (<strong>12</strong>.502) 4.16 (3.288)<br />

25 40.7 (42.109) 370 (365.1<strong>12</strong>) 21.7 (20.521) 6.86 (5.917)<br />

30 51.1 (52.785) 599 (602.964) 30.0 (29.165) 10.0 (9.066)<br />

35 61.4 (62.032) 881 (890.571) 38.7 (38.014) 13.5 (<strong>12</strong>.569)<br />

40 71.3 (71.134) <strong>12</strong><strong>12</strong> (<strong>12</strong>21.171) 47.5 (46.831) 17.2 (16.302)<br />

45 80.9 (80.408) 1593 (1602.031) 56.4 (55.793) 21.0 (20.192)<br />

50 90.0 (89.111) 2020 (2025.879) 65.4 (64.716) 25.0 (24.198)<br />

60 104.6 (105.063) 3000 (2999.014) 83.3 (82.414) 32.5 (32.430)<br />

70 118.3 (118.073) 4<strong>12</strong>0 (4117.157) 100.6 (99.624) 41.743 (40.807)<br />

80 <strong>12</strong>8.4 (<strong>12</strong>8.370) 5350 (5351.404) 117 (116.090) 50.<strong>12</strong>5 (49.197<br />

90 136.5 (136.505) 6680 (6677.354) 133 (131.698) 58.778 (57.505)<br />

100 143.1 (142.984) 8080 (8075.999) 147 (146.428) 66.200 (65.668)<br />

(Continued on next page)<br />

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

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