Wärmeleitung in Kristallen, theoretische Grundlagen und fortgeschrittene experimentelle Methoden pp 158-181 | Cite as
Thermometrische Eigenschaften
3. Experimentelle Methoden 3.2. Thermometer
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Literatur
- 1.H.S.Carslaw and J.C. Jaeger: Conduction of Heat in Solids (Oxford Clarendon Press, Oxford, 1959), 2nd ed.Google Scholar
- 2.H.H.Plumb and G.Cataland: An Absolute Temperature Scale From 4°K to 20°K Determined From Measurements With An Acoustical Thermometer, J. Research N.B.S. 649A, 375 (1965).Google Scholar
- 3.F. Kohlrausch: Praktische Physik, Band 1, 22. Auflage (Teubner, Stuttgart, 1968), S. 227.Google Scholar
- 4.V.Arp and R.H. Kropschot: Helium, Applied Cryogenic Engineering (John Wiley & Sons, New York, 1962).Google Scholar
- 5.K. Mendelssohn: Cryophysics (Interscience, New York, 1960).MATHGoogle Scholar
- 6.T.R. Roberts and S.G. Sydoriak: Thermomolecular Pressure Ratios for 3He and 4He, Phys. Rev. 102, 304 (1956).CrossRefADSGoogle Scholar
- 7.R.P. Hudson: The Thermodynamic Scale of Temperatures Below 1°K, Temperature, Its Measurement and Control in Science and Industry (Reinhold Publishing Corp., New York, 1962), Vol.3, Part I, p. 51.Google Scholar
- 8.J. A. Hall: The International Temperature Scale, Temperature, Its Measurement and Control in Science and Industry (Reinhold Publishing Corp., New York, 1955), Vol-II, p. 115.Google Scholar
- 9.J.C. Erdmann and J.A. Jahoda: The Inert Thermometer, J.Appl. Phys. 38, 459 (1967).CrossRefADSGoogle Scholar
- 10.W. Nowacki: Thermoelasticity (Pergamon Press, Oxford, 1962).Google Scholar
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© Springer-Verlag 1969