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Meier

Baumert T, Engel V, Meier Ch and Gerber G 1992 High laser field effects in multiphoton ionization of Na2 -experiment and quantum calculations Chem. Rhys. Lett. 200 488... [Pg.279]

Meier C and Engel V 1995 Pump-probe ionization spectroscopy of a diatomic molecule sodium molecule as a prototype example Femtosecond Chemistry Proc. Berlin Conf Femtosecond Chemistry (Berlin, March 1993) (Weinheim Verlag Chemie)... [Pg.1090]

Jeener J, Meier B H, Bachmann P and Ernst R R 1979 Investigation of exchange processes by two-dimensional NMR spectroscopy J. Chem. Rhys. 71 4546-53... [Pg.1517]

Meier W M, Olson D FI and Baerlocher Ch 1996 Atias ofZeoiite Structure Types 4th revised edn (London Elsevier)... [Pg.2791]

Meier W M 1968 Zeolite structures Moiecuiar Sieves (London Society of Chemical Industry) pp 10-27... [Pg.2791]

Kokotailo G T and Meier W M 1980 Pentasil family of high silica crystalline materials The Properties and Appiications ofZeoiites (Speciai Pubiication No. 33) ed R P Townsend (London The Chemical Society)pp 133-9... [Pg.2791]

The second aspect, predicting reaction dynamics, including the quantum behaviour of protons, still has some way to go There are really two separate problems the simulation of a slow activated event, and the quantum-dynamical aspects of a reactive transition. Only fast reactions, occurring on the pico- to nanosecond time scale, can be probed by direct simulation an interesting example is the simulation by ab initio MD of metallocene-catalysed ethylene polymerisation by Meier et al. [93]. [Pg.15]

Meier, R.J., Van Doremaele, H.J., larlori, S., Buda, F. Ab-initio molecular dynamics study of metallocene-catalysed ethylene polymerization. J. Amer. Chem. Soc. 116 (1994) 7274-7281. [Pg.33]

Forsythe, G. E. and Meier, C. B., 1967. Computer Solution of Linear Algebraic Systems, Prentice Hall, Englewood Cliffs, NJ. [Pg.68]

Linnig, F. J., and J. Mandel, Which Measure of Precision AnaZ. Chem., 36 25A (1964). Mark, H., and J. Workman, Statistics in Spectroscopy, Academic Press, San Diego, CA, 1991. Meier, P. C., and R. E. Zund, Statistical Methods in Analytical Chemistry, Wiley, New York, 1993. [Pg.212]

Figure 3.16 Some experimental dynamic components, (a) Storage and loss compliance of crystalline polytetrafluoroethylene measured at different frequencies. [Data from E. R. Fitzgerald, J. Chem. Phys. 27 1 180 (1957).] (b) Storage modulus and loss tangent of poly(methyl acrylate) and poly(methyl methacrylate) measured at different temperatures. (Reprinted with permission from J. Heijboer in D. J. Meier (Ed.), Molecular Basis of Transitions and Relaxations, Gordon and Breach, New York, 1978.)... Figure 3.16 Some experimental dynamic components, (a) Storage and loss compliance of crystalline polytetrafluoroethylene measured at different frequencies. [Data from E. R. Fitzgerald, J. Chem. Phys. 27 1 180 (1957).] (b) Storage modulus and loss tangent of poly(methyl acrylate) and poly(methyl methacrylate) measured at different temperatures. (Reprinted with permission from J. Heijboer in D. J. Meier (Ed.), Molecular Basis of Transitions and Relaxations, Gordon and Breach, New York, 1978.)...
W. M. Meier and D. H. Olson, Mtlas of Zeolite Structure Types, Juris Dmck and Vedag AG, Zurich, 1978. [Pg.268]


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Kaplan-Meier

Kaplan-Meier analysis

Kaplan-Meier curves

Kaplan-Meier curves survival data

Kaplan-Meier estimates

Kaplan-Meier estimation of the survival function

Kaplan-Meier estimator

Kaplan-Meier method

Kaplan-Meier procedure

Kaplan-Meier survival curves

Kaplan-Meier survival estimate plots

Kaplan-Meier survival estimate tables

Maier-Meier equations

Maier-Meier theory

Meier theory

Meier, Wolfgang

Meier-Kolthoff

Meier-Saupe theory

Meier’s rule

Survival distributions, Kaplan-Meier estimation

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