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Research paper : A new density standard replaced from water (K. Fujii)−196 Synthesiology - English edition Vol.1 No.3 (2009) [1][2][3][4][5][6][7][8][9][10][11]K. Fujii: Present state of the solid and liquid density standards, Metrologia, 41(2), S1-S15 (2004).NMIJ, AIST (trans. & ed.): The International System of Units, 8th Edition (2006), Japanese Version, Japan Standards Association (2007) (in Japanese).K. Fujii: Measurement technology of density and traceability - density standard based on silicon single-crystals, Netsu Bussei (Heat Property), 3, 201-210(1999) (in Japanese).K. Fujii: Recent trends of the density standard and units for mass, Keisoku-to Seigyo (Measurement and Control), 41(2), 155-162 (2002) (in Japanese).C. Guillaume: La Creation du B.I.P.M. et Son Oeuvre, Paris, Gauthier-Villars (1927).J. Patterson and E. C. Morris: Measurement of absolute water density, 1 °C to 40 °C, Metrologia, 31, 277-288 (1994).R. Masui, K. Fujii and M. Takenaka: Determination of the absolute density of water at 16 °C and 0.101 325 MPa, Metrologia, 32, 333-362 (1995/96).H. Craig: Isotopic variation in meteoric waters, Science, 133, 1833-1834 (1961).M. Tanaka, G. Girard, R. Davis, A. Peuto and N. Bignel: Recommended table for the density of water between 0 °C and 40 °C based of recent experimental reports, Metrologia, 38, 301-309 (2001).A. H. Cook and N. W. B Stone: Precise measurements of the density of mercury at 20 °C. I. Absolute displacement method, Philos. Trans. Roy. Soc. London, Ser. A, 250, 279-323 (1957).A. H. Cook: Precise measurements of the density of mercury at 20 °C. II. Content method, Philos. Trans. Roy. Soc. References(42)−standards and international guidelines to remove as much as possible the standards and certifications that may remain as trade barriers.Traceability: This is a general term for measurement management system where the chain of comparisons (calibrations) using international and national standards reaches the measuring instrument at user level. In ISO/IEC 17025 standard, primary standard realized according to the definition of the International System of Units (SI) must be used at the top of traceability.Japan Calibration Service System (JCSS): This originated as Japan Calibration Certification System for calibration service providers according to Measurement Law in November 1993. In July 2005, it became a system to register calibration service providers after screening them for compatibility with requirements for testing and calibration laboratories (ISO/IEC 17025) set by International Organization for Standardization (ISO) and International Electrotechnical Commission (IEC). ISO/IEC 17025 standard: International standard document on quality control for services provided by testing and calibration laboratories. Physical standards provided by NMIJ, AIST are subjected to quality control and third-party verification based on this standard.Term 3.Term 4.Term 5.London, Ser. A, 254, 125-154 (1961).K. D. Sommer and J. Poziemski: Density, thermal expansion and compressibility of mercury, Metrologia, 30, 665-668 (1993/94).J. B. Patterson and D. W. Prowse: Comparative measurement of the density of mercury, Metrologia, 21, 107-113 (1985).A. Ooiwa, M. Ueki and R. Kaneda: New mercury interferometric baromanometer as the primary pressure standard of Japan, Metrologia, 30, 565-570 (1993/94).M. R. Moldover, J. P. M. Trusler, T. J. Edwards, J. B. Mehl and R. S. Davis: Measurement of the universal gas constant R using a spherical acoustic resonator, J. Res. Natl. Bur. Stand., 93, 85-144 (1988).W. K. Clothier, G. J. Sloggett, H. Bairnsfather, M. F. Curry and D. J. Benjamin: A determination of the Volt, Metrologia, 26, 9-46 (1989).K. Fujii: New recommended values of fundamental physical constants - recent trends in the determination of the Avogadro and Planck constants, J. Phys. Soc. Japan, 57(4), 239-246 (2002) (in Japanese).P. Becker, D. Schiel, H. J. Pohl, A. K. Kaliteevski, O. N. Godisov, M. F. Churbanov, G. G. Devyatykh, A. V. Gusev, A. D. Bulanov, S. A. Adamchik, V. A. Gavva, I. D. Kovalev, N. V. Abrosimov, B. Hallmann-Seiffert, H. Riemann, S. Valkiers, P. Taylor, P. De Bièvre and E. M. Dianov: Large-scale production of highly enriched 28Si for the precise determination of the Avogadro constant, Meas. Sci. Technol., 17, 1854-1860 (2006).Alcohol Concentration Measurement [International Alcohol Table]: International Recommendation No.22 (1972) from the 4th Conference of the International Organization of Legal Metrology (in Japanese).P. J. Mohr and B. N. Taylor: CODATA recommended values of the fundamental physical constants: 2002, Rev. Mod. Phys., 77(1), 1-107 (2005).K. Fujii: Mass standard and fundamental physical constants – Recent trends on the definition of the unit for mass, Ouyou Butsuri (Applied Physics), 68, 656-662 (1999) (in Japanese).P. Becker, P. De Bièvre, K. Fujii, M. Glaeser, B. Inglis, H. Luebbig and G. Mana: Considerations on future redefinitions of the kilogram, the mole and of other units, Metrologia, 44, 1-14 (2007).K. Fujii, A. Waseda, N. Kuramoto, S. Mizushima, P. Becker, H. Bettin, A. Nicolaus, U. Kuetgens, S. Valkiers, P. Taylor, P. De Bievre, G. Mana, E. Massa, R. Matyi, E. Kessler and M. Hanke: Present state of the Avogadro constant determination from silicon crystals with natural isotopic compositions, IEEE Trans. Instrum. Meas., 54 (2), 854-859 (2005).H. A. Bowman, R. M. Schoonover and C. L. Carroll: A density scale based on solid objects, J. Res. Natl. Bur. Stand. Sect. A, 78, 13-40 (1974).A.J. Leistner and G. Zosi: Polishing a 1-kg silicon sphere for a density standard, Appl. Opt., 26, 600-601 (1987).A.J. Leistner and W. J. Giardini: Fabrication and sphericity measurements of single-crystal silicon spheres, Metrologia, 31, 231-243 (1994).K. Fujii, M. Tanaka, Y. Nezu, K. Nakayama, R. Masui and G. Zosi: Interferometric measurements of the diameters of a single-crystal silicon sphere, Rev. Sci. Instrum., 63, 5320-5325 (1992).K. Fujii, M. Tanaka, Y. Nezu, K. Nakayama and R. Masui: Accurate determination of the density of a crystal silicon sphere, IEEE Trans. Instrum. Meas., 42, 395-400 (1993).K. Fujii, M. Tanaka, Y. Nezu, A. Leistner and W. Giardini: Absolute measurement of the density of silicon crystals in [12][13][14][15][16][17][18][19][20][21][22][23][24][25][26][27][28][29]

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