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1              The method is demonstrated with deionized and tap water samples spiked with carbamate in
2        The effect of divalent ion binding to deionized bacteriorhodopsin (dI-bR) on the thermal trans
3              Adding Ca2+ or other cations to deionized bacteriorhodopsin causes a blue to purple colo
4 esults on the M intermediate are observed if deionized blue bR (deI bbR) is treated with these deterg
5  or without pH buffers present), even though deionized blue bR containing all the lipids has no photo
6 ration and photochemical properties of dried deionized blue membrane (dIbR600; lambdamax approximatel
7 ing mechanisms of the ions to the protein of deionized bR.
8 , e.g., dodecyltrimethylammonium bromide, in deionized (DI) water and high-salinity brine is 1.274% a
9       Deposited QDs were then contacted with deionized (DI) water and/or varying Na(+) concentrations
10 rboxyanhydrides (NCAs), have been studied in deionized (DI) water as well as various ionic media.
11       THC-COOH was rapidly removed from both deionized (DI) water at pH 5.6 +/- 0.2 and Suwannee Rive
12                 Results for 5 mM H(2)O(2) in deionized (DI) water included reduction to below the COD
13  Results showed that MON was persistent in a deionized (DI) water matrix when exposed to UV and sunli
14 ions generated by ultrasonic nebulization of deionized (DI) water stored in a variety of bottles.
15  Released by-product aerosols collected in a deionized (DI) water trap were analyzed, and the aerosol
16  0.05 ppb at 168 h and was 71% lower than in deionized (DI) water, in batch reactors spiked with 5 x
17 e solutions with high salt concentrations or deionized (DI) water.
18 trol group was administered double distilled deionized drinking water (ddw).
19 arious concentrations (1-100 ppm) of DEHP in deionized MilliQ water were tested using the functionali
20  NMR spectra of two kinds of blue membranes, deionized (pH 4) and acid blue at pH 1.2, were very simi
21 hod detection limits were 0.007 microg/L for deionized reagent water and 0.009 microg/L for synthesiz
22 ated by lysing attached cells with distilled/deionized water (DDI H2O).
23 either deionized water (DFMO-) or 1% DFMO in deionized water (DFMO+).
24 ient (Zn-, 4 ppm zinc) diet and given either deionized water (DFMO-) or 1% DFMO in deionized water (D
25 e side or symmetrically from both sides with deionized water (DIW) or 0.1 M solutions of CaCl(2), KCl
26 ent dissolution of AgNP exposed to ultrapure deionized water (pH approximately 7) and acetic acid (pH
27 nts were moistened with synthetic aquifer or deionized water according to the moisture regimes presen
28 ed of 1-pentanol and extraction solutions of deionized water and 100 mM NH4OH), more than 99.3% NaCl
29 r the detection of phenytoin in solutions of deionized water and 100% fetal bovine serum.
30 polished MCT wafers are cleaned and dried by deionized water and compressed air, respectively.
31 tion of various cationic surfactants in both deionized water and high-salinity brine (22% total disso
32 r activated carbon and biochar adsorption in deionized water and stormwater was independent of target
33 tion experiments were conducted at pH 7.5 in deionized water and synthetic water with composition of
34 situ halogenation reaction of gemfibrozil in deionized water and wastewater matrices, and to measure
35 surements of serum samples diluted 1:10 with deionized water are performed, a stable background signa
36  under real conditions (using 0.5 M NaCl and deionized water as the draw and feed solutions, respecti
37  brine (1.0 M NaCl) as the draw solution and deionized water as the feed.
38 rm ligand exchange column with distilled and deionized water as the mobile phase is used to separate
39 of the buffer at the point of use, utilizing deionized water as the only carrier stream.
40                    C0-independent removal in deionized water at low-target-adsorbate concentrations p
41 hese samples are able to form strong gels in deionized water at polymer concentrations as low as 0.25
42 ared by dilution of the reaction masses with deionized water before analysis by CE/indirect UV detect
43          Atmospheric ammonia is collected in deionized water by a porous membrane diffusion scrubber
44 n, a sensor regeneration can be reached with deionized water by adjustment of effective convection co
45                    Rinsing the cathodes with deionized water did not restore cathode performance.
46 titive effect of stormwater DOM and possibly deionized water DOM.
47 )/(3))O(3)-32PbTiO(3) (PMN-PT) cantilever in deionized water environment.
48                          The K(PE) values in deionized water for parent- and alkylated-PAHs show a go
49  such as citrates and phosphates, instead of deionized water greatly improves the efficiency of this
50  bound counterions, we used dialysis against deionized water in the presence of a strong (0.6 kV/cm)
51  counterions are removed by dialysis against deionized water in the presence of a strong electric fie
52 rations potentially suggests that DOM in the deionized water induce a competitive effect that causes
53 e air discharge and its downstream sample of deionized water is studied with a system-level computati
54 ly deplete erythrocytes from whole blood via deionized water lysis and to collect enriched leukocytes
55 abled the direct detection of crude oil in a deionized water matrix at the ppm level to ppb concentra
56 r increase the performance of QDSCs, the 30% deionized water of polysulfide electrolyte was replaced
57 ction, by impinging a high-speed microjet of deionized water on a dielectric solid surface.
58 and eco-friendly extraction solvents: either deionized water or aqueous solutions of cyclodextrins.
59  studies on DEP manipulation of DNA that use deionized water or diluted DNA buffer where living biomo
60 de cocrystallization on the MALDI plate with deionized water prior to analysis.
61 tential of the food-grade TiO2 suspension in deionized water ranged from -10 to -45 mV around pH 7, a
62       Etching of the gel-grown crystals with deionized water reveals an interpenetrating network of g
63               The protocol is completed by a deionized water rinse, which was also studied.
64 trend, residual particle concentrations from deionized water stored in Teflon bottles showed a net de
65 rations as high as 10 mg/mL were obtained in deionized water that are nearly 2 orders of magnitude hi
66                              In contact with deionized water the features of (001) surfaces barely mo
67 uced by NNK from 34% in the group given only deionized water to 12%.
68 lick chemistry, followed by self-assembly in deionized water to construct a versatile and functional
69 in dimethyl sulfoxide, and added dropwise to deionized water to form pellets of a porous PAN-chalcoge
70 reated with 10 mg/kg fluoxetine or distilled/deionized water vehicle for 9 consecutive days.
71                The loss of both compounds in deionized water was observed upon exposure to natural su
72  EDCL resulted in the highest stability when deionized water was used as the aqueous phase (original
73 d to mimic different brine compositions, and deionized water was used for comparison.
74                                              Deionized water was used to induce emulsion breaking wit
75  to as high as 24.3 W/m(2) when 1 M NaCl and deionized water were feeds.
76             Recoveries for most compounds in deionized water were greater than 80%.
77 al salts (NaCl, KCl, MgCl2, and CaCl2) using deionized water with a known stable isotope composition.
78 d washing experiments for fabric swatches in deionized water with or without detergent showed a range
79 Compared to well-known untreated bulk water (deionized water), the prepared AuNT water exhibits many
80 veral standard solutions (e.g. PBS, HEPES or deionized water).
81 he 10th day (acute treatment) with distilled/deionized water, 10 mg/kg fluoxetine or 20 mg/kg fluoxet
82 wn to 0.1mg/L is detected in PBS, tap water, deionized water, and bottled water.
83 air-drying, replacement of the seawater with deionized water, and substitution of the cell matrix wit
84  to crudely approximate cellular conditions: deionized water, aqueous methanol, and aqueous buffers a
85                                           In deionized water, chondrocytes swelled monotonically unti
86 etection limits of 0.2-0.5 nM perchlorate in deionized water, commercial bottled water, and tap water
87                                           In deionized water, concentration thresholds increase as ta
88 here the storage solution pH equaled that of deionized water, gave values of approximately 0.5 for [C
89 rom silica surface was observed after adding deionized water, indicating that GO deposition is revers
90                                       Within deionized water, nanoparticles form stable suspensions o
91  hormone classes, with application to spiked deionized water, pond water, and wastewater.
92 ynylestradiol in unspiked drinking water and deionized water, respectively, at levels higher than pub
93 pulsed wave (PW) ultrasound at 205 kHz using deionized water, wastewater effluent, and its isolated o
94                                           In deionized water, we observed that hydrophobicity is supe
95  the MCT wafers, and the lapping solution is deionized water.
96 ueous media was achieved by dialysis against deionized water.
97  via the electrolysis of saline solutions or deionized water.
98 ies of AuNT water are tunable by mixing with deionized water.
99 ddition of the required quantity of H2O2 and deionized water.
100  only Hg(0) and Hg2(2+) can be methylated in deionized water.
101 etely remove MC-LR in lake water compared to deionized water.
102  diluting the resulting oil body creams with deionized water.
103  DNA counterions by electro-dialysis against deionized water.
104 dosed with naphthalene over those dosed with deionized water.
105 n received 5 microL ciprofloxacin (0.08%) or deionized water.
106 e into crystalline colloidal arrays (CCA) in deionized water.
107 studied by measuring the flux of pH-adjusted deionized water.
108 ssemble into crystalline colloidal arrays in deionized water.
109       Recovery experiments were performed in deionized, well, and river water.

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