Heat Capacity and Entropy of NiSiF6·6H2O from 0.35° to 4.2°K with Magnetic Fields 0–90 kG Perpendicular to the c axis. The Use of 3He Gas Conduction in Calorimetry
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1840431
Reference4 articles.
1. Heat Capacity and Entropy of NiSiF6·6H2O in the Region 0.30°—4.25°K with Magnetic Fields 0–90 kG Parallel to the c Axis
2. Magnetic Moment, Magnetic Work, and Internal Energy of NiSiF6·6H2O in the Region 0.3°—4.2°K with Magnetic Fields 0–90 kG Parallel to the c Axis
3. Sample Chamber for Magnetothermodynamic Measurements
4. The 1962 He3 scale of temperatures. IV. Tables
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1. Use of the Bibliography;Thermophysical Properties Research Literature Retrieval Guide 1900–1980;1982
2. Magnetothermodynamics of Nd(C2H5SO4)3⋅9H2O. I. Heat capacity, entropy, magnetic moment from 0.5 to 4.2 °K with fields to 90 kG along the c crystal axis;The Journal of Chemical Physics;1976
3. Magnetothermodynamics of gadolinium gallium garnet. I. Heat capacity, entropy, magnetic moment from 0.5 to 4.2 °K, with fields to 90 kG along the [100] axis;The Journal of Chemical Physics;1973-11
4. Magnetothermodynamics of Ce2Mg3(NO3)12· 24H2O. II. The evaluation of absolute temperature and other thermodynamic properties of CMN to 0.6 m°K;The Journal of Chemical Physics;1973-06-15
5. Magnetothermodynamics of Ce2Mg3(NO3)12· 24H2O. I. Heat capacity, entropy, magnetic moment from 0.5 to 4.2°K with fields to 90 kG along the a crystal axis. Heat capacity of Pyrex 7740 glass in fields to 90 kG;The Journal of Chemical Physics;1973-03-15
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