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The star copolymers were soluble in acidic water at pH 4 giving transparent or slightly opaque solutions, with the exception of the very hydrophobic DMAEMA10-b-MMA30-star DMAEMA10-b-MMA30-star DMAEMA10-b-MMA30-star DMAEMA10-b-MMA30-star
Na2S4.4 and K2S5.9 give opaque solutions in KSCN which are initially dark blue-green, and which slowly lose sulphur vapour and change colour to blue and finally to pale yellow.
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Only the random copolymer star was completely dispersed in neutral water, giving a very opaque solution.
The formation of an oil-in-water microemulsion resulted in an opaque solution.
After the dissolution of cadmium salt in ethanol, an aqueous solution of ammonium hydroxide (25%) was added and, as a consequence, the starting opaque solution became clear.
The pHs of precipitation of the star copolymer solutions/dispersions were found to be between 8.8 10.1, except for the most hydrophobic DMAEMA10-b-MMA30-star DMAEMA10-b-MMA30-star DMAEMA10-b-MMA30-star DMAEMA10-b-MMA30-star
Soon after adding H2TPyP chloroform solution, an opaque solution was obtained; a transparent yellowish solution was obtained after vigorous stirring was maintained for 15 min, as shown in Figure 1.
Because this system allows the measurement of sonochemical reactions in an opaque cell or an opaque solution such as blood and industrial wastewater, it is a very useful measurement system for achieving the applying of sonochemistry to the medical engineering field.
The robustness and effectiveness of the proposed technology were established by comparing its performance with the conventional optical technology (laser intensity response, LIR), while, the MDR technology had the advantage of detecting the nucleation in optically opaque solution compared to LIR.
An isotonic radio-opaque solution was instilled into the pleural cavity via chest tube to generate a PLEF (10 mL/kg); this solution was prepared as follows: 100 mL of iopromide at a concentration of 300 mg iodine per milliliter (mgI/mL) (Ultravist™ Injection 300 mgI/mL, Bayer HealthCare, Germany) + 800 mL of 0.9% saline + 100 mL of deionized water.
A radio-opaque solution was injected to visualise cavities generated.
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