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NIST standard-reference

Mallard W G and Linstrom P J (eds) 1988 NIST Standard Reference Database 69 http //webbook.nist.gov/ohemistry/... [Pg.826]

Lias S G 1998 ionization energy evaiuation NIST Chemistry WebBook, NIST Standard Reference Database Number 69 ed W G Maiiard and P J Linstrom (Gaithersburg, MD Nationai institute of Standards and Technoiogy)... [Pg.827]

Watson P R, Van Hove M A and Hermann K 1999 NIST Surface Structure Database Ver. 3.0 (Gaithersburg, MD NIST Standard Reference Data Program)... [Pg.1776]

Vitreous siUca aimealed at 1100°C has been designated NIST Standard Reference Material 739 (LI and L2). Its expansion coefficient, a, may be calculated for 300—700 K from the following expression (144), where Tis the absolute temperature in Kelvin. [Pg.505]

Stein, S. E., J. M. Rukkers, and R. L. Brown, 1991. NIST Standard Reference Database 25, The NIST Structures and Properties Database and Estimation Program, Version 1.2, September, NIST. [Pg.157]

H2S J.E. Bartmess, Negative Ion Energetics Data in NIST Chemistry WebBook, W. G. Mallard, P. J. Linstrom, Eds., NIST Standard Reference Database Number 69, November 1998, National Institute of Standards and Technology, Gaithersburg, MD, USA (http webbook.nist.gov/chemistry). H2S2 R. A.J. O Hair, C.H. DePuy, V. M. Bierbaum, /. Phys. Chem. 1993, 97, 7955... [Pg.125]

Teahey NM 1998) NIST Standard Reference Materials Catalog 1998-99. NIST Special Publication 260. National Institute of Standards and Technology, Gaithersburg. [Pg.18]

NIST Standard Reference Materials Program, National Institute of Standards... [Pg.258]

In the field of RM certification, NAA represents a major analytical technique. It possesses unique quality assurance and self-verification aspects. Not surprisingly, therefore, NAA has been used to certify NIST standard reference materials [470]. By analogy, NAA has also been instrumental in analysing the EC polymer reference materials within the framework of the PERM project [1]. NAA was also used to validate a TXRF procedure for the determination of additives containing Ti, Zn, Br, Cd, Sn, Sb and Pb [56],... [Pg.666]

Smith, R. M. Martell, A. E. Motekaitis, R. J, NIST Critically Selected Stability Constants of Metal Complexes Database, Version 5, NIST Standards Reference Database 46, U. S. Dept. Commerce, Gaithersburg, MD, 1998. [Pg.259]

R.D. Johnson III, NIST Computational Chemistry Comparison and Benchmark Database, NIST Standard Reference Database Number 101, Release 12,2005. Available at http //srdata.nist.gov/ cccbdb... [Pg.731]

Ho M.D., Evans G.J. Operational speciation of cadmium, copper, lead and zinc in the NIST standard reference materials 2710 and 2711 (Montana soil) by the BCR sequential extraction procedure and flame atomic absorption spectrometry. Anal Commun 1997 34 353-364. [Pg.339]

SG Lias, JF Liebman, RD Levin, SA Kafafi. NIST Standard Reference Database, 19A, NIST Positive Ion Energetics, Version 2.0. Gaithersburg NIST, 1993. [Pg.51]

Becker, D., Christensen, R., Currie, L., Diamondstone, B., Eberhardt, K. R., Gills, T., Hertz, H., Klouda, G., Moody, J., Parris, R., Schaffer, R., Steel, E., Taylor, J., Watters, R. and Zeisler, R., Use of NIST Standard Reference Materials for Decisions on Performance of Analytical Chemical Methods and Laboratories, NIST Special Publication 829, National Institute of Standards and Technology (NIST), Gaithersburg, MD, USA, 1992. [Pg.93]

National Institute of Standards and Technology. NIST Chemistry WebBook NIST Standard Reference Database Number 69. June 2005 Release, http //webbook.nist.gov/chemistry/. 2005. [Pg.731]


See other pages where NIST standard-reference is mentioned: [Pg.676]    [Pg.405]    [Pg.1126]    [Pg.773]    [Pg.139]    [Pg.199]   


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