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1  anionic lipid fraction and is a function of electrolyte composition.
2 pends on the incubation period as well as on electrolyte composition.
3 centration, up to a factor 250 due to tested electrolyte compositions alone, (ii) was higher in NaCl
4                    We probe the influence of electrolyte composition and concentration on the adsorpt
5 udied along with surface charge at different electrolyte composition and effective pore size to eluci
6 SnO(4) was found to be strongly dependent on electrolyte composition and more positive than TiO(2) vs
7 mineral water brands utilizing their various electrolyte compositions and their Ca(2+), Mg(2+), and Z
8 of GR (from minutes to days depending on pH, electrolyte composition, and aging conditions).
9 weak base was strongly affected by different electrolyte compositions, and (vi) the protonated base w
10 effects, and perturbations of the supporting electrolyte composition are minimized.
11 esonance spectroscopies, we investigated the electrolyte composition at different discharge potential
12 nomechanical resistance as a function of the electrolyte composition by means of a reliable molecular
13                     The effect of background electrolyte composition (Cl(-), HCO3(-), and NH4(+)) on
14 eutral base was hardly affected by different electrolyte compositions, comparable to a neutral refere
15 such as detector location, ITP duration, and electrolyte composition in ITP preconcentration and sepa
16 e formation (DeltaR/R) and to changes in the electrolyte composition in region neighboring the electr
17               A Li-O(2) cell containing this electrolyte composition is shown to cycle for more than
18                  Here, the impact of mineral electrolyte composition of aqueous solutions on thiol ox
19 tes across epithelia, and control the pH and electrolyte composition of intracellular organelles.
20 acinar and duct cells to determine the final electrolyte composition of salivary fluid.
21       The increase was not due to changes in electrolyte composition of the cerebrospinal fluid (CSF)
22 tion to clays was strongly influenced by the electrolyte composition of the eluent but with a consist
23 he relationships between process conditions, electrolyte composition, the material properties of the
24 s including voltage, flow rate, and solution electrolyte composition to affect the extent of oxidatio
25 ied monovalent (NaCl) and divalent (CaCl(2)) electrolyte composition was used as background solution
26               Current density and background electrolyte composition were examined in a controlled an
27                          In a device with an electrolyte composition yielding optimum photovoltaic de

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