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The newly-proposed Virtual B.C. method improved the measurement precision of velocities as compared with those by the previous methods.
Subsequently, we exhibit an asymmetric encoder-decoder network for reducing the model size even more, unlike the conventional symmetric approach used by the previous methods, e.g., SegNet [8].
An issue not addressed by the previous methods, quite similar to the Sleeping foreground problem in video analysis (see below in Section 5.1), is when the foreground is gradual and longer lasting, like a plan passing overhead.
The coarse sediment (lower φ value) in the river mouth results in a lower sorting value due to the inevitable correlation between mean grain size and sorting value, and therefore, sorting values cannot represent the actual degree of sediment sorting, as supposed by the previous methods.
Also, valuable information are obtained from calculation of molecular parameters for all compounds carried out by the previous methods of calculation (electronegativity of the coordination sites, net dipole moment of the metal complexes, values of heat of formation and binding energy) which approved that the complexes are more stable than ligand.
Both of these approaches generate paired end reads from longer clones, allowing them to link contigs generated by the previous methods.
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However, when (a,b>0), we cannot get similar results by using the previous methods.
LetG S andG T be 2-powers of paths with n vertices constructed by the previous method.
However, Corollary 3 cannot be derived from Theorem 1 by the previous method since the pair ((X,D)) is not a metric space whenever (a>1).
The simulation results show that the optimal FVD coefficients obtained by using the presented method are more exact than those by the previous method.
Let G S be the 2-power of path P S =u1,…,u n, and let G T be the 2-power of path P T =w1,…,w n constructed by the previous method.
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by the standard methods
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com