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Parameters processing, PROC

Olsson, G. Hansson, 0. "Modeling and identification of an activated sludge process" Proc. IFAC Symp. on Identification and System Parameter Estimation, Tbilisi, USSR, Sep. 1976, 134-146. [Pg.375]

Analysis of such a correlation may reveal the significant variables and interactions, and may suggest some model, say of the L-H type, that could be analyzed in more detail by a regression process. The variables Xi could be various parameters of heterogeneous processes as well as concentrations. An application of this method to isomerization of /i-pentane is given by Kittrel and Erjavec (Ind. Eng. Chem. Proc. Des. Dev., 7,321 [1968]). [Pg.707]

Napier, D. H. and Russell, D. A. (1974) Proc. First Int. Sym. on Loss Prevention (Elsevier). Hazard assessment and critical parameters relating to static electrification in the process industries. [Pg.397]

Jang, S. S., Josepth, B and Mukai, H. (1986). Comparison of two approaches to on-line parameter and state estimation problem of non-linear systems. Ind. Eng. Chem. Process Des. Dev. 25, 809-814. Jazwinski, A. H. (1970). Stochastic Processes and Filtering Theory. Academic Press, New York. Liebman, M. J., Edgar, T. F., and Lasdon, L. S. (1992). Efficient data reconciliation and estimation for dynamic process using non-linear programming techniques. Comput. Chem. Eng. 16, 963-986. McBrayer, K. F., and Edgar, T. F. (1995). Bias detection and estimation on dynamic data reconciliation. J Proc. Control 15, 285-289. [Pg.176]

C.A. Mack, A. Stephanakis, and R. Herschel, Lumped parameter model of the photolithographic process, in Kodak Microelectronics Seminar Proc., pp. 228 238 (1986), R. Herschel and C.A. Mack, Lumped parameter model for optical lithography, in Lithography for VLSI, VLSI Electronics Microstructure Science, R.K. Watts and N.G. Einspruch, Eds., pp. 19 55, Academic Press, New York (1987) C.A. Mack, Enhanced lumped parameter model for photolithography, Proc. SPIE 2197, 501 510 (1994). [Pg.590]

C. Gallais, A. Denquin, A. Pic, A. Simar, T. Pardoen, and Y. Brechet, Modelling the Relationship between Process Parameters, Microstructural Evolutions and Mechanical Behavior in a Friction Stir Welded 6xxx Aluminum Alloy, Proc. Fifth Int. Symp. on Friction Stir Welding, Sept 2004 (Metz, France), TWI... [Pg.217]

Ozbek S, Isaac DH, Carbon fibres Effect of processing parameters on mechanical properties, PED 49 /MD27, Proc Manuf Composite Mater, ASMS, 307-320, 1991. [Pg.849]

Tiegs, T. N., et al.. Effects of Processing Parameters on Densification and Mechanical Properties of Gas-Pressure Sintered Silicon Nitride, in Ceramic Engineering and Science Proc., Am. Ceram. Soc. Publishers, pp. 677-685 (1994)... [Pg.274]

Kaplan, W., and Zhang, S., Determination of Kinetic Parameters of LPCVD Processes from Batch Depositions, Stoichiometric Silicon Nitride Films, Proc. 11th. Int. Conf on CVD (K. Spear and G. Cullen, Eds.), pp. 381-387, Electrochem. Soc., Pennington, NJ (1990)... [Pg.306]

Ibe, E., Karasawa, H., Nagase, M., Tagawa, H., Endo, M. Parameter identiflcation of water radiolysis in BWR primary systems. Proc. 5. BNES Conf. Water Chemistry of Nuclear Reactor Systems, Bournemouth 1989, Vol. 1, p. 105-109 Kausz, I. A. Safety and operating systems and process equipment for light-water reactors, in Ullmann s Encyclopedia of Industrial Chemistry, Volume A17 Nuclear Technology, p. 650-657 (1991)... [Pg.57]

Musicus, B.R. and Lim, J.S., Maximum likelihood parameter estimation of noisy data, Proc. IEEE Int. Conf. on Acoust, Speech, Signal Processing, pp. 224-227,1979. [Pg.2097]

K.E. (1984). Effects of area of growth and processing parameters on the microbiology of cotton dust. In Proc. Eighth Cotton Dust Res. Conf.. pp. 45-49 (P.J. Wakelyn and R.R. Jacobs, eds.). National Cotton Council, Men his, TN. [Pg.42]


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