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The lattice indexing technique, described in [66], first converts the word lattices of all the utterances from individual weighted finite state transducers (WFST) to a single generalized factor transducer structure that stores the start-time, end-time, and the lattice posterior probability of each word token as a 3-dimensional cost.
These lattices are processed using the lattice indexing technique described in [103] so that the lattices of all the utterances in the search collection are converted from the individual WFSTs to a single generalized factor transducer structure in which the start-time, the end-time, and the lattice posterior probability of each word token are stored as three-dimensional costs.
While simple models, advantageous for quick pre-assessments, account for openings by a generalized factor distributing the openings over the total facade evenly (LTSM), more extensive models allow for individual sizes and locations of openings in 2D finite element simulation explicitly.
The lattice indexing technique, described in [124], first converts the word lattices of all the utterances in the speech data from individual WFSTs to a single generalized factor transducer structure that stores the start-time, end-time, and the lattice posterior probability of each word token as a three-dimensional cost.
A second, hierarchical CFA was fit which imposed the original structure, but also assumes that the subscales themselves form a generalized factor, [ 12] presumably, the latent construct of HRQOL in IBS.
Riso works on a variation of the generalized suffix tree (called generalized factor tree) [ 34], built only up to the box length level, with some extra information used for fast update of the tree.
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Factors associated with DDE can be categorized as localized or generalized, and generalized factors can be further divided into environmental and hereditary, both of which influence enamel during prenatal, neonatal and postnatal development [ 20].
In our simplified model, all public goods are included in a generalized secreted factor F. This factor is in equilibrium with the environment and stimulates the cells' metabolism and movement.
A generalized friction factor is also developed from the definition of the friction factor for flow in a conduit and is related to the porosity-dependent drag coefficient for individual spheres.
A simple relationship results for the generalized effectiveness factor when a certain condition is met, which can be determined a priori from the kinetics and activity function.
Here, φ, is the generalized shape factor of nanostructure, A is the area of the nanostructure, and p is the perimeter of the nanostructure.
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