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Acoustic and microwave resonances applied to measuring the gas constant and the thermodynamic temperature
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Michael R. Moldover, Acoustic and microwave resonances applied to measuring the gas constant and the thermodynamic temperature, IEEE Transactions on Instrumentation and Measurement 38, 217 (1989).
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Moldover, M.R.1
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0032686733
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Thermodynamic temperatures of the triple points of mercury and gallium and in the interval 217 K to 303 K
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M. R. Moldover, S. J. Boyes, C. W. Meyer, and A. R. H. Goodwin, Thermodynamic temperatures of the triple points of mercury and gallium and in the interval 217 K to 303 K, J. Res. Natl. Inst. Stand. Technol. 104, 11 (1999).
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Moldover, M.R.1
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70349344425
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Primary Acoustic Thermometry from 217 K to 303 K
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Delft, The Netherlands
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M. R. Moldover, S. J. Boyes , C. W. Meyer, and A. R. H. Goodwin, Primary Acoustic Thermometry from 217 K to 303 K, TEMPMEKO, Delft, The Netherlands, (1999).
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TEMPMEKO
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Moldover, M.R.1
Boyes, S.J.2
Meyer, C.W.3
Goodwin, A.R.H.4
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85113603509
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Techniques for primary acoustic thermometry to 800 K, in Temperature: Its Measurement and Control in Science and Technology
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Chicago, Il., vol 7, ed. By D. C. Ripple (AIP Conf Proc., Melville, New York)
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D. C. Ripple, D. R. Defibaugh, M. R. Moldover, and G. F. Strouse, Techniques for primary acoustic thermometry to 800 K, in Temperature: Its Measurement and Control in Science and Technology. Proceedings of the 8th International Temperature Symposium 21-24 October 2002, Chicago, Il., vol.7, ed. By D. C. Ripple (AIP Conf Proc., Melville, New York, 2003), pp. 25-30.
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Proceedings of the 8th International Temperature Symposium 21-24 October, 2002
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Ripple, D.C.1
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Moldover, M.R.3
Strouse, G.F.4
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85113590807
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Progress in primary acoustic thermometry at NIST: 273 K to 505 K, in Temperature: Its Measurement and Control in Science and Technology
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Chicago, Il., vol 7, ed. By D. C. Ripple (AIP Conf Proc., Melville, New York)
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G. F. Strouse, D. R. Defibaugh, M. R. Moldover, and D. C. Ripple, Progress in primary acoustic thermometry at NIST: 273 K to 505 K, in Temperature: Its Measurement and Control in Science and Technology. Proceedings of the 8th International Temperature Symposium 21-24 October 2002, Chicago, Il., vol.7, ed. By D. C. Ripple (AIP Conf Proc., Melville, New York, 2003), pp. 31-36.
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Proceedings of the 8th International Temperature Symposium 21-24 October, 2002
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Strouse, G.F.1
Defibaugh, D.R.2
Moldover, M.R.3
Ripple, D.C.4
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6
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36849023392
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Acoustic thermometry results from 271 K to 552 K
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D. C. Ripple, G. F. Strouse, and M. R. Moldover, Acoustic thermometry results from 271 K to 552 K, Int. J. Thermophys. 28, 1789-1799 (2007).
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Ripple, D.C.1
Strouse, G.F.2
Moldover, M.R.3
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7
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4043129499
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Designing quasispherical resonators for acoustic thermometry
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J. B. Mehl, M. R. Moldover, and L. Pitre, Designing quasispherical resonators for acoustic thermometry, Metrologia 41, 295-304 (2004).
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Metrologia
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Mehl, J.B.1
Moldover, M.R.2
Pitre, L.3
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1642603831
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Acoustic measurements of the thermodynamic temperature between the triple point of mercury and 380 K
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G. Benedetto, R. M. Gavioso, R. Spagnolo, P. Marcarino, and A. Merlone, Acoustic measurements of the thermodynamic temperature between the triple point of mercury and 380 K, Metrologia 41, 74-98 (2004).
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Benedetto, G.1
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Marcarino, P.4
Merlone, A.5
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9
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0040123690
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Accurate measurements in gases under difficult conditions
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K. A. Gillis, M. R. Moldover, and A. R. H. Goodwin, Accurate measurements in gases under difficult conditions, Rev. Sci.Instrum. 62, 2213-2217 (1991).
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Rev. Sci. Instrum
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Gillis, K.A.1
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Goodwin, A.R.H.3
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10
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70349366804
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private communication
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D. R. Ripple, private communication
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Ripple, D.R.1
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0343861378
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Note on the Acoustic Impedance of Narrow Tubes
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K. Rasmussen, Note on the Acoustic Impedance of Narrow Tubes, Acoustica 51, 72-73 (1982).
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Rasmussen, K.1
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A method to measure and interpret input impedance of small acoustic components
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D. Rodrigues, C. Guianvarc'h, J.-N. Durocher, M. Bruneau, A.-M. Bruneau, A method to measure and interpret input impedance of small acoustic components, J. Sound and Vib. 315, 890-910 (2008)
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0037490885
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Theory of the Greenspan Viscometer
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K. A. Gillis, J. B. Mehl, and M. R. Moldover, Theory of the Greenspan Viscometer, J. Acoust. Soc. Am. 114, 166 (2003).
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T. J. Quinn, A. R. Colclough, and T. R. D. Chandler, A new determination of the gas constant by an acoustical method, Philosophical Transactions of the Royal Society of London. Series A: Mathematical and Physical Sciences 283, 367-420 (1976).
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Simple flow meter and viscometer of high accuracy for gases
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R. F. Berg, Simple flow meter and viscometer of high accuracy for gases, Metrologia 42, 11-23 (2005).
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On the radiation of sound from an unflanged circular pipe
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Principles of Operation of Condenser Microphones
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