Dortmund Data Bank
Molar Heat Capacity (cP) of Naphthalene
The experimental data shown in these pages are freely available and have been published already in the DDB Explorer Edition. The data represent a small sub list of all available data in the Dortmund Data Bank. For more data or any further information please search the DDB or contact DDBST.
Component
Formula |
Molar Mass |
CAS Registry Number |
Name |
C10H8 |
128.174 |
91-20-3 |
Naphthalene |
Search the DDB for all data of Naphthalene
Diagrams
Data Table
T [K] |
Molar Heat Capacity (cP) [J/(mol*K)] |
State |
Reference |
15.14 |
5.904 |
Solid |
3 |
17.73 |
8.514 |
Solid |
3 |
21.45 |
12.401 |
Solid |
3 |
22.25 |
13.736 |
Solid |
3 |
25.54 |
16.98 |
Solid |
3 |
26.66 |
18.146 |
Solid |
3 |
29.79 |
21.23 |
Solid |
3 |
31.74 |
23.04 |
Solid |
3 |
34.35 |
25.39 |
Solid |
3 |
36.47 |
27.25 |
Solid |
3 |
39.34 |
29.447 |
Solid |
3 |
41.32 |
30.94 |
Solid |
3 |
44.64 |
33.12 |
Solid |
3 |
46.53 |
34.40 |
Solid |
3 |
50.23 |
36.526 |
Solid |
3 |
51.95 |
37.95 |
Solid |
3 |
56.22 |
40.62 |
Solid |
3 |
57.37 |
41.33 |
Solid |
3 |
62.32 |
44.02 |
Solid |
3 |
62.52 |
44.10 |
Solid |
3 |
67.86 |
46.44 |
Solid |
3 |
73.36 |
48.91 |
Solid |
3 |
78.58 |
51.30 |
Solid |
3 |
83.57 |
54.06 |
Solid |
3 |
88.38 |
55.61 |
Solid |
3 |
89.86 |
56.23 |
Solid |
3 |
93.06 |
57.40 |
Solid |
3 |
95.39 |
57.99 |
Solid |
3 |
100.77 |
60.50 |
Solid |
3 |
106.04 |
62.17 |
Solid |
3 |
111.18 |
64.35 |
Solid |
3 |
116.21 |
66.32 |
Solid |
3 |
121.11 |
68.41 |
Solid |
3 |
125.94 |
70.84 |
Solid |
3 |
130.68 |
72.93 |
Solid |
3 |
135.35 |
75.02 |
Solid |
3 |
140.33 |
77.24 |
Solid |
3 |
145.61 |
79.66 |
Solid |
3 |
150.80 |
82.30 |
Solid |
3 |
151.99 |
82.72 |
Solid |
3 |
155.93 |
84.52 |
Solid |
3 |
161.02 |
86.99 |
Solid |
3 |
166.00 |
89.29 |
Solid |
3 |
168.48 |
87.99 |
Solid |
3 |
168.52 |
90.12 |
Solid |
3 |
173.49 |
92.72 |
Solid |
3 |
178.39 |
95.14 |
Solid |
3 |
183.23 |
97.74 |
Solid |
3 |
187.99 |
100.17 |
Solid |
3 |
192.69 |
103.14 |
Solid |
3 |
197.62 |
105.31 |
Solid |
3 |
202.85 |
108.12 |
Solid |
3 |
208.00 |
110.96 |
Solid |
3 |
213.10 |
113.76 |
Solid |
3 |
218.13 |
116.57 |
Solid |
3 |
223.10 |
119.33 |
Solid |
3 |
226.90 |
121.71 |
Solid |
3 |
228.01 |
122.38 |
Solid |
3 |
232.92 |
124.98 |
Solid |
3 |
232.95 |
124.85 |
Solid |
3 |
237.78 |
127.40 |
Solid |
3 |
238.94 |
128.28 |
Solid |
3 |
242.54 |
130.88 |
Solid |
3 |
244.83 |
132.09 |
Solid |
3 |
250.68 |
135.52 |
Solid |
3 |
256.42 |
139.03 |
Solid |
3 |
262.09 |
142.72 |
Solid |
3 |
267.70 |
146.36 |
Solid |
3 |
273.21 |
150.04 |
Solid |
3 |
278.69 |
153.80 |
Solid |
3 |
284.09 |
157.53 |
Solid |
3 |
289.42 |
161.25 |
Solid |
3 |
294.68 |
165.48 |
Solid |
3 |
317.15 |
188.41 |
Solid |
2 |
357.91 |
219.34 |
Liquid |
5 |
359.15 |
239.68 |
Liquid |
2 |
360.00 |
219.83 |
Liquid |
1 |
361.99 |
220.90 |
Liquid |
5 |
366.04 |
222.51 |
Liquid |
5 |
370.00 |
223.68 |
Liquid |
1 |
374.25 |
225.72 |
Liquid |
5 |
376.21 |
226.50 |
Liquid |
5 |
381.95 |
264.91 |
Liquid |
4 |
386.95 |
268.13 |
Liquid |
4 |
389.15 |
231.56 |
Liquid |
5 |
392.05 |
271.35 |
Liquid |
4 |
397.15 |
275.10 |
Liquid |
4 |
401.38 |
236.36 |
Liquid |
5 |
402.35 |
278.32 |
Liquid |
4 |
404.57 |
237.58 |
Liquid |
5 |
407.55 |
282.07 |
Liquid |
4 |
412.75 |
285.29 |
Liquid |
4 |
415.61 |
241.89 |
Liquid |
5 |
417.95 |
289.05 |
Liquid |
4 |
419.94 |
243.53 |
Liquid |
5 |
423.15 |
292.26 |
Liquid |
4 |
428.45 |
296.02 |
Liquid |
4 |
429.20 |
247.11 |
Liquid |
5 |
433.55 |
299.24 |
Liquid |
4 |
435.25 |
249.44 |
Liquid |
5 |
438.75 |
302.45 |
Liquid |
4 |
440.31 |
251.41 |
Liquid |
5 |
444.05 |
306.74 |
Liquid |
4 |
449.25 |
309.96 |
Liquid |
4 |
454.75 |
313.71 |
Liquid |
4 |
460.25 |
317.47 |
Liquid |
4 |
465.85 |
320.69 |
Liquid |
4 |
List of References
Number |
Source |
1 |
Durupt N.; Aoulmi A.; Bouroukba M.; Rogalski M.: Heat Capacities of Liquid Polycyclic Aromatic Hydrocarbons. Thermochim.Acta 260 (1995) 87-94 |
2 |
Rastogi R.P.; Bassi P.S.: Mechanism of eutectic crystallization. J.Phys.Chem. 68 (1964) 2398-2406 |
3 |
Southard J.C.; Brickwedde F.G.: Low Temperature Specific Heats. I. An Improved Calorimeter for Use from 14 to 300 °K. The Heat Capacity and Entropy of Naphthalene. J.Am.Chem.Soc. 55 (1933) 4378-4384 |
4 |
Blacet F.E.; Leighton P.A.; Bartlett E.P.: The Specific Heats of Five Pure Organic Liquids and of Ethyl Alcohol-Water Mixtures. J.Phys.Chem. 35 (1931) 1935-1943 |
5 |
Chirico R.D.; Knipmeyer S.E.; Nguyen A.; Steele W.V.: The thermodynamic properties to the temperature 700 K of naphthalene and of 2,7-dimethylnaphthalene. J.Chem.Thermodyn. 25 (1993) 1461-1494 |
Pure Component Data Overview
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