Journal of Research of the National Bureau of Standards, Volume 85U.S. Department of Commerce, National Bureau of Standards, 1980 |
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Page 19
... equation for the exposure rate [ 1 ] . ' x = A 422 ( W / e ) ΣΡΕ ( μ . / Q ) : ( 1 ) ' Figures in brackets indicate literature references at the end of this paper . TABLE 7. Summary of re - entrant chamber calibration data 19.
... equation for the exposure rate [ 1 ] . ' x = A 422 ( W / e ) ΣΡΕ ( μ . / Q ) : ( 1 ) ' Figures in brackets indicate literature references at the end of this paper . TABLE 7. Summary of re - entrant chamber calibration data 19.
Page 34
... Equation The use of an equation to determine the density of air entails errors apart from the instrumental inaccuracies outlined above. In a meticulous examination of the equatinn used in this study [2], Jones cites relative ...
... Equation The use of an equation to determine the density of air entails errors apart from the instrumental inaccuracies outlined above. In a meticulous examination of the equatinn used in this study [2], Jones cites relative ...
Page 27
... Equation in Standards Laboratories at Differing Altitude R. M. Schoonover , R. S. Davis , R. G. Driver and V. E. Bower National Measurement Laboratory , National Bureau of Standards , Washington , D.C. 20234 October 1 , 1979 A number of ...
... Equation in Standards Laboratories at Differing Altitude R. M. Schoonover , R. S. Davis , R. G. Driver and V. E. Bower National Measurement Laboratory , National Bureau of Standards , Washington , D.C. 20234 October 1 , 1979 A number of ...
Page 28
... equation that is constant during the comparison . The mass of the unknown is calculated from the relation M1 = M + Q ( VV ) — m ( 2 ) which requires a knowledge of the density of air and of the difference in volume of the artifacts . By ...
... equation that is constant during the comparison . The mass of the unknown is calculated from the relation M1 = M + Q ( VV ) — m ( 2 ) which requires a knowledge of the density of air and of the difference in volume of the artifacts . By ...
Page 29
... Equation 2.3.1 . Temperature The temperature of air inside the balance case was meas- ured in two different ways . First , 13 thermocouples in series were disposed about the weighing chamber . Type E [ 4 ] thermocouples were chosen in ...
... Equation 2.3.1 . Temperature The temperature of air inside the balance case was meas- ured in two different ways . First , 13 thermocouples in series were disposed about the weighing chamber . Type E [ 4 ] thermocouples were chosen in ...
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acid aerosol alloy aluminum analysis analytical anode atomic atomic weight building Bureau of Standards calculated calibration calorimeter cell Chem chemical chromospheric Conf constant coulometer croconate cryogenic crystal density detector determined developed discussed dosimetry effects electrical electron energy enthalpy of solution equation error evaluation experimental factors Faraday constant figure fire incident frequency function heat hydrogen ionization isotopic J. L. Bryan Key words laboratory laser linear magnetic malononitrile mass materials measurements ment method molal molecular National Bureau NBSIR neutron observed obtained optical Order from NTIS paper parameters particle percent performance Phys physical polymer potentiostat pressure Proc procedure Publ radiation range ratio reaction sample scattering silicon smoke detectors solar Spec spectra spectroscopy structure superconducting surface suspended coil techniques Technology temperature thallium thermal tion uncertainty values voltage weight x-ray
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