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In vitro release studies of IBU from IBU-BB (10, 50, 100 mg/mL), IBU solution (PEDEA®) and IBU powder were compared using the T apparatus and the beaker method.
A beaker method was utilized to check if the Cry1Ab/1Ac proteins expressed in the transgenic J. curcas plants had insecticidal activity towards A. micaceanus larvae.
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Coating method for glass beaker and PET bottle was dip-coating, and for tissue paper and bacterial cellulose was also drop-coating.
HA, hydrochloric acid (HCl); NA, nitric acid (HNO3); SA, sulfuric acid (H2SO4); TweenTween 20; TweenTween 80. Figure 1 A schematic of the quiescent interfacial growth method in a beaker.
In this method, about 50 ml capacity beaker containing the NE sample to be analyzed and a platinum ring that is fixed to a sensitive force are measuring device.
In the second method of dyeing named 'open bath' (without beaker), for the study of nodal/anti-nodal point of energy, 2 g of fabric was dyed with 2 g of dye at 60, 70, and 80 °C in 2 L of dyeing solution, pH of the bath was 4 and no beaker was used.
Magnetite (Fe3O4) nanoparticles have been readily prepared via a one-step solution combustion synthesis (SCS) method by designing a simple airless device: a beaker with perforated rubber plug could not only separate the outside air but also release the gases generated during the combustion reaction, which could ensure an air free condition in the SCS process.
In this method, the impure biodiesel is placed in a beaker initially.
According to Standardization and Industrial Research Institute Malaysia (SIRIM) method, 1.0 g of sample weighed in a tarred weighing beaker to the nearest 10 mg and placed in a drying oven for 2 h at 110 °C.
The as-synthesized Pt Fe alloy nanoparticles were prepared by ultrasonically dispersing 500 mg samples of the Pt/C precursor powder (prepared with methods discussed above) in water (120 mL) in a 250 mL beaker for 1.5 h.
The CuO nanoblocks were synthesized by hydrothermal method as follows: a copper precursor solution (0.2 M) was prepared in a beaker by addition of Cu(NO3 2∙3H2O in distilled water.
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