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1 their respective binding sites dilutes their effective charge.
2 6C than for L361C and V363C mutant channels (effective charge 2.19, 1.41 and 1.45, respectively).
3 ight packing of nanoscale components enables effective charge and exciton transport in supraparticles
4 retical scaling form, extract values for the effective charge and the interaction parameter of the qu
5  O-solvated Zn(2+) possesses largely reduced effective charge and thus reduced electrostatic interact
6 lations are reported between oligonucleotide effective charges and current blockages, and between the
7                                    We report effective charges and diffusion constants of several dif
8  is found to have a substantial influence on effective charges and diffusion constants.
9 nthetic vesicles of known surface potential, effective charges and intrinsic partition coefficients w
10                                    Anomalous effective charges are reported, including the first repo
11                       We found that measured effective charges at low salts are approximately 1/5th o
12 evealed that these microspheres exhibited an effective charge buildup in the presence of such species
13 apparent KD of 1 mM) Sr2+ and Ba2+ were less effective charge carriers and Na+ was not conducted to a
14 ced polarization, high drift mobilities, and effective charge collection, which are excellent for thi
15 ons served as conducting band states for the effective charge delocalization between particle-bound f
16 electric field at a rate that depends on the effective charge density of the molecule.
17 membrane interface when bound and alters the effective charge density on the membrane interface by ap
18 ic screening that ascribes to the polymer an effective charge density that is independent of force an
19 coefficient of each ion species, the average effective charge distribution on the wall of the pore, a
20  charge-pair states is observed, followed by effective charge extraction.
21  including the first report of negative Born effective charges for nominal +2 cations.
22 ostatic interaction term based on the use of effective charges, (ii) a term describing the electrosta
23               The role of dynamical (or Born effective) charges in classification of octet AB-type bi
24              Through experimentally measured effective charge measurements, under low ion normality w
25             Our experiments suggest that the effective charge near the presumed intracellular mouth o
26 ) greater virus-floc binding affinity due to effective charge neutralization and hydrophobic interact
27 study the relationship between diffusion and effective charge of a fluorescently labeled 40-base poly
28        Monovalent cation binding reduces the effective charge of an A-tract-containing oligomer, decr
29                                    Since the effective charge of labeled DNA molecules was equal to t
30 acellular pH is below 6, suggesting that the effective charge of membrane components might be a cruci
31 isfy a Nernst-Einstein relation in which the effective charge of RNA is reduced by the charge of tran
32 n coefficient, electrophoretic mobility, and effective charge of ssDNA in a solid-state nanopore.
33 he first demonstration of the measurement of effective charge of ssDNA in relation to Mg2+ concentrat
34                 Taking into account that the effective charge of the carboxylic acid residues is a ke
35                                 However, the effective charge of the counterions is lowered by their
36 bulk-phase diffusion coefficients and of the effective charge of the nucleotides in 1.0 M NaCl sugges
37 sting that there is a slight decrease in the effective charge of the selenium.
38                                          The effective charge of the ssDNA could then be determined u
39 usion of the ssDNA also increased, while the effective charge of the ssDNA decreased.
40             In addition it is found that the effective charges of the TS do not follow the previously
41 eractions with the phosphate and/or that the effective charge on the 5'-phosphate may be substantiall
42 es revealed that chemical shifts concur with effective charges on sp-carbon atoms in para-tolanes, wh
43 c character of the heterostructure, creating effective charge redistribution within the system.
44 indicate that these differences reflect more effective charge reorganization upon deprotonation of Mo
45 icate that protein reorganization leading to effective charge screening may be a necessary structural
46 ctor in electrostatic equilibrium is zero by effective charge screening; free carriers within a metal
47     Its interconnected structure facilitated effective charge separation and transport, leading to be
48 trons and holes at the same time, leading to effective charge separation was directly proved by ultra
49 n mechanism and to design nanostructures for effective charge separation.
50 induce nanowire growth depends strongly upon effective charge transfer between the organic molecules
51  developed by Stoddart and colleagues, forms effective charge transfer complexes with a variety of el

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