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This discrepancy may be attributed to the following two reasons: (1) the prediction is based on the infinitely high-barrier approach, which may introduce some errors; (2) the prediction does not take into account the excitonic effect, which will dominate in the inter-band resonant transition of undoped QWs [19].
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In order to confirm the validity of the approach, finite element solutions for an axially symmetric thin film are compared to an analytical solution based on the membrane (infinitely thin) approximation.
This is however based on the assumption of infinitely backlogged buffers in the source (i.e., BS) and considering the queueing delay only at the relay buffer without taking into account the queue dynamics at the BS.
Based on the same assumptions of infinitely narrow band sensors and the blackbody model of the illuminant, Ratnasingam and Collins [11] proposed a simple method of obtaining two illuminant independent features from the responses of four sensors.
For this purpose, the two-parameter Weibull distribution, which is based on the weakest link model with infinitely many links, is usually adopted to model the strength distribution of dental ceramics.
This algorithm is also based on the blackbody illuminant model and infinitely narrow band sensor assumptions in deriving two illuminant invariant reflectance features from four sensor responses (referred to in this article as the model-based algorithm).
We determine the pore size distribution for five activated carbons (comprising carbide derived as well as commercial activated carbon samples) by the interpretation of experimental small angle neutron scattering (SANS) intensity profiles, based on the primary assumption of an infinitely dilute solution of hollow spherical particles.
A new method for the design of distillation units based on the behaviour of the mode of infinitely sharp split is presented.
The analytical formulae are based on the assumptions that the landscape is infinitely large, that the patches are circularly shaped, and that the patches are small compared to interpatch distances.
Both methods were based on the theory related to diffusion of instantaneously applied, infinitely thin radioactive sources in semi-infinite one-dimensional diffusion media.
The proof is based on the fact that if is too large, then the nodes will infinitely often enter the same firing configuration.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com