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Domains hall effect

O. Stem, D. Dini, N. Freytag, W. Dietsche, K. von Klitzing and W. Weg-scheider, A Study of the Domain Structure at the Spin Transition of the Fractional Quantum Hall Effect , Phys. Status Solidi, B, 2008, 245, 428. [Pg.54]

Spatial variations in seal effectiveness can be represented by a chance factor map (Duff and Hall, 1996). Each domain can be associated with a chance factor score representing the estimated chance of encountering a successful seal. The magnitude of the scores combines a process-based interpretation of the factors controlling seal effectiveness together with an assessment of the quality of the data on which the interpretation is based. The chance domain map shown in Fig. 15 represents the top-seal effectiveness for the two pre-Cretaceous play styles that have been the subject of this paper footwall fault blocks and inversions. A grading from higher chance of seal to lower chance of seal is shown rather than numerical chance factor values for simplicity. [Pg.240]

The main experimental effects are accounted for with this model. Some approximations have been made a higher-level calculation is needed which takes into account the fact that the charge distribution of the trapped electron may extend outside the cavity into the liquid. A significant unknown is the value of the quasi-free mobility in low mobility liquids. In principle, Hall mobility measurements (see Sec. 6.3) could provide an answer but so far have not. Berlin et al. [144] estimated a value of fiqf = 27 cm /Vs for hexane. Recently, terahertz (THz) time-domain spectroscopy has been utilized which is sensitive to the transport of quasi-free electrons [161]. For hexane, this technique gave a value of fiqf = 470 cm /Vs. Mozumder [162] introduced the modification that motion of the electron in the quasi-free state may be in part ballistic that is, there is very little scattering of the electron while in the quasi-free state. [Pg.204]

Ljung R (1999) System identification theory for the user, 2nd edn. Prentice Hall, Upper Saddle River Poulimenos AG, Fassois SD (2006) Parametric time-domain methods for non-stationary random vibration modelling and analysis a critical survey and comparison. Mech Syst Signal Process 20 763-816 Sohn H (2007) Effects of envrrraunental and operational variability on structural health monitoring. Philos Trans R Soc A 365 539-560... [Pg.3509]


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See also in sourсe #XX -- [ Pg.482 ]




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