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1 ults reveal that the seemingly irregular and nonideal 2D structures can be exploited and engineered f
2  demonstrating that IN worked properly under nonideal active substrate conditions.
3 lyvinylpyrrolidone (PVP) surface ligands and nonideal Ag-PVP-Ag contact at NW-NW junctions.
4  has suggested that diffusion may in fact be nonideal and mediated by an as-yet-unidentified mechanis
5                          Overall, we observe nonideal aspects of phospholipid probe mobility and part
6 riented pyrolytic graphite (HOPG) causes the nonideal asymmetry of paired nanogap voltammograms of (f
7                                              Nonideal behavior (precipitation/aggregation), typically
8 icle interference) were observed, indicating nonideal behavior at high concentrations.
9                  The molecular origin of the nonideal behavior for concentrated binary solutions of b
10                                              Nonideal behavior found in many experiments has classica
11 process depends on calcium, which can induce nonideal behavior in membranes through domain formation.
12                      The two main sources of nonideal behavior in Rayleigh-Taylor (RT) mixing are reg
13 tes that a quantitative description of their nonideal behavior is possible and straightforward.
14                   These results suggest that nonideal behavior of particle-phase compounds influences
15                                          The nonideal behavior of the sodium alkyl sulfates at concen
16  the mixed component membrane should exhibit nonideal behavior that will lead to PS clustering.
17 ic compound (NaNO(3)) further influences the nonideal behavior, again in a compound-specific manner.
18 es, though in practice devices often exhibit nonideal behavior.
19  metal-donor atom bond distance that induces nonideal bond angles due to the rigidity of the ligands.
20                                The excess or nonideal chemical potential of the native state and of e
21 f the radionuclide imaging process including nonideal collimation and object-specific attenuation.
22 their highly complex molecular compositions, nonideal combustion conditions, and sample preparation s
23 ssion of the robustness of the method toward nonideal conditions is included based on experimental an
24 tions with eight alkyl hydroxybenzoates with nonideal conditions.
25 entrifuge to describe self-association under nonideal conditions.
26  Here, we extend the phase diagram method to nonideal conditions.
27 s through cross-correlation, it suffers from nonideal confocal volume overlap and spectral cross-talk
28                   By separation of ideal and nonideal contributions to the chemical potential, the eq
29                          A method that takes nonideal detector effects such as dead-time and afterpul
30  other hand, is quite robust with respect to nonideal detector effects.
31 though their performance has been limited by nonideal electrical characteristics and an inability to
32 ght-line plot is a diagnostic indicator of a nonideal electrode geometry.
33 static screening in very high concentration (nonideal) electrolytes.
34 offers advantages in procedures conducted in nonideal environments, such as offsite or austere scenar
35 inding and catalysis, however, often demands nonideal features, including large and irregular loops a
36 eral, and can be implemented to design other nonideal folds, generating stable, specific, and precise
37                    Most passive samplers are nonideal for sampling such systems because they sample i
38 ilayer core-shell NPs and deal with complex, nonideal geometrical properties.
39             Moreover, a narrowly distributed nonideal helical structure coexists with a broadly distr
40 r equation, scale invariant formulation, and nonideal (i.e., experimental) initial conditions.
41 ic repulsion at other contacts, resulting in nonideal interatomic distances.
42 ith preexisting POPS-rich clusters formed by nonideal lipid mixing, binding peripherally to the lipid
43 alysis revealed that CsA behaves in a highly nonideal manner over the temperature range tested.
44                          However, there is a nonideal mass bias residual correlation between (182)W/(
45 try was designed to give high selectivity in nonideal matrices.
46 he clicked oligocholate was sensitive to the nonideal mixing of ionic/nonionic micelles and to the un
47  and sigmoidal kinetics are more a result of nonideal mixing of substrate in DMPM vesicles than of ac
48 rescent substrate analog are consistent with nonideal mixing of substrate in DMPM vesicles, but not i
49                        Critical behavior and nonideal mixing of the lipids have been proposed to expl
50 ifferential donor quenching is not caused by nonideal mixing or spectroscopic differences.
51 60BM, but also faster recombination due to a nonideal morphology in which, in contrast to P3HT:PC60BM
52 ulations are able to reproduce the different nonideal nucleation behavior observed experimentally for
53 ld conditions including fuel variability and nonideal operation.
54 ar cells; however, they are limited by large nonideal photovoltage loss (V oc,loss ) in small- and la
55 few dilute systems, similar measurements for nonideal plasmas at densities approaching or exceeding t
56                                              Nonideal polymer mixtures of PEGs of different molecular
57 sion isotope ratios from amino acids despite nonideal positional fidelity in fragments and that natur
58 sotope ratios from all positions despite the nonideal positional fidelity of CH4.
59                       However, despite these nonideal properties of the Fe(3+)FbpA-X protein-folding/
60 ence for dependence of the RT mixing rate on nonideal regularizations; in other words, indeterminacy
61                                          For nonideal samples displaying concentration-dependent solu
62 d G8(uridine) folded properly, but exhibited nonideal scissile bond geometries (tau ranging from 118
63 or GB, predicted to be general for excluded, nonideal solutes such as GB, as a modest (8%) attenuatio
64   Here, we show the structural origin of the nonideal solution behavior.
65 pecies of point-scattering solutes in highly nonideal solutions at arbitrary concentration are obtain
66 the solvation region in the helix phase, but nonideal solvent mixing was found in the melted coil pha
67  and crowded environment presents a complex, nonideal system.
68 reating the adsorbate as a thermodynamically nonideal two-dimensional fluid.
69                  The significantly minimized nonideal V oc,loss is better than state-of-the-art silic

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