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1 fective multidrug combinations using a small number of experiments.
2 esign analysis was carried out to reduce the number of experiments.
3 a when the number of TFs is greater than the number of experiments.
4 compatible with high levels in a significant number of experiments.
5 refine the inferred relations with a limited number of experiments.
6 dels for any organism from relatively modest numbers of experiments.
7 8) was greatly reduced from the actual total number of experiments (1722), which minimized the worklo
8 ered site potentials have been explored in a number of experiments, a more general, dynamical control
10 neck or inbreeding is supported by a growing number of experiments and is explained theoretically by
11 ll help to interpret and analyze the growing number of experiments and simulations dealing with cryst
12 ansfer in DNA over a distance >4 nm, a large number of experiments and theories have been advanced in
14 rks depends on the size of the dataset (i.e. number of experiments), but this dependence is different
15 ne when applied topically but because of the number of experiments carried out a comparison between t
16 of the predictions, which require a minimal number of experiments compared to the traditional one-at
17 etwork that could explain the data, when the number of experiments does not allow identification of u
20 the method to handle the case when a certain number of experiments, from several species close to the
21 ng all combinations is difficult because the number of experiments grows exponentially with the numbe
24 remain to be clearly defined, an increasing number of experiments have implicated the generation of
25 ology of natural variation, as a substantial number of experiments have resulted in a valuable amount
27 ocesses are not fully understood; however, a number of experiments have suggested that peripheral tol
28 ombined with results from a relatively small number of experiments, have provided limited mechanistic
34 uired experimental sampling and estimate the number of experiments needed to "complete" a particular
35 active learning has been shown to reduce the number of experiments needed to obtain high-confidence p
37 he past decade, there has been an increasing number of experiments on spontaneous Bose coherence of e
38 ere investigated using FFD which reduced the number of experiments performed by identifying 720 key e
40 e signal components was limited to the total number of experiments rather than the total number of bi
42 alytic rate laws from only a fraction of the number of experiments required in classical kinetic meas
44 set of experiments, and, what is the minimum number of experiments required to characterize the syste
45 ta and results in substantial savings in the number of experiments required to make accurate drug-tar
47 confidence limits, which, for a fixed total number of experiments, returns the optimal number of rep
49 e shown to enhance fiber excitability, and a number of experiments show that this is a direct effect
50 elf-consistent framework for understanding a number of experiments, shows that the energy landscape o
52 covering useful cocrystals and decreases the number of experiments that are needed by selecting API:g
53 oratory techniques has greatly increased the number of experiments that can be carried out in the che
54 els can provide a compact summary of a large number of experiments that led to mechanism formulation
55 inhibitor concentrations, reducing the total number of experiments that would normally be needed.
57 e data acquired, thus requiring an increased number of experiments to obtain sufficient kinetic infor
60 analysis is thus roughly proportional to the number of experiments, underscoring the need for minimiz
61 curve approximately 0.71), the dependency on number of experiments used is nearly identical to that p
63 acy, linearity, sensitivity, selectivity), a number of experiments were performed to specifically dem
64 should make it possible to undertake a large number of experiments with MSCs in transgenic mice that
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