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In this way, we add a new step to the ETA process, coupling relevant and non-trivial edge detection with global function propagation.
For example, to improve the accuracy of function propagation by sequence similarity, many methods take into account the phylogenetic relations of genes.
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Furthermore, the run-time of both propagators is compared as a function of propagation arc, output step size and gravity field order to assess its performance for a full range of relevant use cases.
Figure 2c shows the RGB intensities as a function of propagation distance.
Further, the pulse broadening ratio as a function of propagation distance, for different input pulses is depicted in Fig. 4.
In [26], the threshold is set as a function of propagation delay and simulation results show that considerable performance improvement can be achieved over conventional methods.
The internuclear distances of OH, HCl and ClO (labeled as R_OH, R_HCl, and R_ClO, respectively) as a function of propagation time are shown in Figure 9(a), which gives a proof of the direct reaction.
Since the RMSDS is a function of propagation time and optical power of each ray component, more precise results must be obtained considering multiple wavelength of the illumination LEDs, wavelength-dependent responsivity of receiver, and wavelength-dependent reflectance coefficients.
It is assumed that far field conditions exist, and that the displacement within a region can be described as the sum of a set of plane waves the amplitude of which is a function of propagation direction.
However, because such a dipping interface produces reflected S waves with various amplitudes (reflection coefficients depending on the incident angle to the dipping interface) as a function of propagation direction for an incident angle, these waves unevenly contribute to construct an S reflection around the stationary point, resulting in a slightly distorted waveform of the reflection.
Under conditions of the experiment, the acoustic Green's function for propagation between the instruments is composed of multiple surface- and bottom-reflected ray arrivals, and, in the 20 50 Hz frequency band that we consider, neither ray nor mode arrivals can be resolved in the time domain [17].
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