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The design and operation of a gradient network is particularly critical when mixing solutions of different viscosities, which is common with real samples, especially in life science applications.
HA hydrogels were prepared by mixing solutions of HA precursors functionalized with acrylate groups (HA-AC) and reactive thiols (HA-SH) under physiological conditions.
Similarly, a buffer based on the pair NH4+ NH3 can be prepared by mixing solutions of ammonia and an ammonium salt, by partially neutralizing a solution of ammonia with a strong acid, or by adding less than one equivalent of sodium hydroxide to a solution of an ammonium salt.
A buffered solution containing various concentrations of acetic acid and acetate ion, for example, can be prepared by mixing solutions of acetic acid and sodium acetate, by partially neutralizing a solution of acetic acid with sodium hydroxide, or by adding less than one equivalent of a strong acid to a solution of sodium acetate.
Polymer compositions were prepared by mixing solutions of siloxane resin and metallosiloxane in predetermined proportions.
The adduct was prepared by mixing solutions of 0.03 mol (5.5 g) piperidine dithiocarbamate in 30 ml of ethanol and 0.01 mol (3.71 g) lanthanum chloride in 15 ml of ethanol.
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Cd2+ precursor solutions were prepared by mixing solution of CdCl2 and GSH (used as stabilizer), then adjusted to pH 8.0 with 1 M NaOH.
The DOTA modified heterostructures were then conjugated with Gd3+ by mixing solution of NPs with a large excess of aqueous solution of GdCl3.
Bjerhammar (1983) used this technique to mix solutions of the Fredholm integral equations of the first kind, but in the case of gradiometry, he used the spectral solutions of the GBVP.
These structures were autonomously fabricated simply by mixing equimolar solutions of oligonucleotides and performing hybridization.
In the first process, the hybrids were obtained by mixing stock solutions of polymers and nanoparticles.
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