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1 rong MB peak and matched with that of the MB stock solution.
2 s when c-di-GMP is diluted from concentrated stock solution.
3  time of the nanoparticles in their original stock solution.
4 ge stability was demonstrated for methanolic stock solutions.
5  ethanol used as a solvent for dexamethasone stock solutions.
6 spitals and by sterility testing of unopened stock solutions.
7  reducing ClO(3)(-) concentrations in ClO(2) stock solutions.
8 orescence response in ACN/H(2)O (v/v: 50/50) stock solution (10 mM, pH = 7.0) with a detection limit
9 ude more facile preparation of trace element stock solutions, a reduction in total chemical use, a mo
10 llowing reactions initiated with guanidinium stock solutions and lowest when micellar stocks were use
11 problems encountered in neutralizing cyanide stock solutions are discussed.
12 enhanced selectivity for Co using this mixed stock solution as observed by ICP-OES.
13 sed to assign a concentration value to a DNA stock solution, based on the stoichiometry of phosphorus
14 ons of T, prepared by serial dilution of the stock solution, but at a constant concentration of L, wh
15 y and concentration in their respective DMSO stock solutions by chemiluminescent nitrogen detection (
16 agent cost is achieved because the remaining stock solution can be reused without contamination.
17  degrees C when dissolved in aliquots from a stock solution containing benzene 85 wt%, ethanol 14 wt%
18 ed into arrays of stock solutions, with each stock solution containing largely one compound.
19                                      Aqueous stock solutions containing 45 individual hydrocarbons we
20 ifferent sizes and shapes have resulted from stock solutions containing exactly the same concentratio
21           The average concentration of these stock solutions derived from a single synthesis bead was
22 ufacturing, NISEs are added by dilution of a stock solution directly into a protein formulation, and
23 at Talpha-1 peptides prepared from different stock solutions have equivalent biological activity.
24 s by drying 2.0 muL drops of 1.0 mug muL(-1) stock solutions in 100 mM sodium phosphate buffers (pH 1
25            This intermediate may be used as "stock solution" in the reaction with aqueous HCHO, to yi
26 dispensing system to dispense, directly from stock solutions into a 384-well plate, the 2-fold serial
27 ay based on the dilution of acidic urea/DAGK stock solutions into detergent/lipid mixed micelles.
28 tly reacted with cobalt chloride hexahydrate stock solution, leading to the formation of CoO NPs via
29 0 and 21.5 +/- 0.8 per thousand for a NO3(-) stock solution of 19.7 +/- 0.9 per thousand.
30 er treatment systems, the need to maintain a stock solution of concentrated H2O2 increases the operat
31         To avoid the need for replenishing a stock solution of H2O2, a gas diffusion electrode was us
32                                 Afterward, a stock solution of live (5 x 10(11) colony-forming units)
33 e; all that is required as the catalyst is a stock solution of palladium.
34                  For example, when an acidic stock solution of protonated V(10) is placed in a revers
35                                The remaining stock solution of sequencing reaction reagent can be reu
36    The reaction exhibits a broad scope, uses stock solution of simple SO(2) as sulfur source, and can
37 ntegrated method was the utilization of DMSO stock solutions of compounds registered in the corporate
38 we describe a method where concentrations of stock solutions of organic diphosphates and bisphosphona
39 split--pool synthesis leading to an array of stock solutions of single 1,3-dioxanes.
40  genetic modifier screen was performed using stock solutions of the resultant products.
41 n-coating method was used to deposit CdSe QD stock solution onto the surface of NiO/ITO electrodes, t
42 ed by either centrifugation of the inhibitor stock solution or by addition of Tween-80 detergent.
43 r is added to the ligand solution during the stock solution preparation at room temperature becomes d
44 h LPC dissolved in ethanol, but not with LPC stock solutions prepared in water or in BSA-containing a
45 ) to quantify simulated PS20, PS80, and P188 stock solutions representative of those used during the
46 crom) polystyrene beads using a one bead-one stock solution strategy that enabled phenotypic screens
47 zed during the development of a one bead/one stock solution technology platform, converted into array
48 g gradient is achieved by continuous flow of stock solutions through side channels flanking the gradi
49  activity distributions while using a single stock solution, thus simplifying the filling process and
50 wer working concentration, more concentrated stock solutions (up to 200x), and lower current per unit
51 mated method of diluting complex samples and stock solutions using an Arduino-based control unit.
52 .2 and 2.7 +/- 0.3 per thousand for a NO3(-) stock solution value of 2.7 +/- 0.4 per thousand, and de
53 solvents, but was abolished when the peptide stock solution was stored frozen.
54                       Aliquots of these DAGK stock solutions were diluted 200-fold into lipid vesicle
55                                        These stock solutions were used in numerous phenotypic and pro
56 st in reactions initiated with micellar DAGK stock solutions (where DAGK maintains a nativelike fold
57 existent hydrogen peroxide (H(2)O(2)) in PAA stock solution with free chlorine and, to our surprise,
58  lead at nanomole-scale amounts as DMSO-d(6) stock solutions with a known structure and concentration
59 echnology platform, converted into arrays of stock solutions, with each stock solution containing lar
60 analysis showed that Hg(I) was stable in its stock solution), yet completely disproportionated when i