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Introducing SPECTRAL-SAR

FIGURE 3.1 Generic mapping of data space containing the vectorial sets X), 0) into orthogonal basis D(X) , n(0)) (Putz Lacrama, 2007). [Pg.198]

Since QSAR models aims correlations between concerned molecular structures and measured (or otherwise evaluated) activity, appears naturally that the structure part of the problem to be accommodated within the quantum theory and of its formalisms. In fact, there are few quantum characters that we are using within the present approach (Chicu Putz, 2009 Putz, 2012a, b)  [Pg.198]

The (quantum) superposition principle that assures that sum combinations of molecular states map on other resulting molecular state, here interpreted as bio-, eco- ortoxico- logical activity, e.g. [Pg.199]

In what follows the Spectral-SAR correlation method is resumed by the analytical procedure unfolded in three fundamental steps (I, II, and III) (Putz Lacr na, 2007). [Pg.200]

Given a set of TV molecules being studies against biological activity they produce by means of their TVf- structural indicators, all input information (the states) may be vectorial expressed by the columns of the Table 3.1 and correlated upon equation [Pg.200]


See other pages where Introducing SPECTRAL-SAR is mentioned: [Pg.193]    [Pg.197]   


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