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An analytical model describing the initiation of the exothermic decomposition reaction in the surface layer of the sample was developed.
To investigate the bulk properties of this novel material a tensile testing method, where the stress is evenly distributed over the whole cross-section of the sample, was developed and validated.
None of the models in the sample was developed on a cohort recruited prospectively for the express purpose of devising it.
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The 11 frameworks included in the sample were developed by varied sources including government agencies, youth advocacy organizations, professional development organizations, and youth policy research firms.
The characterization of the sample is developed in a second stage where a multilayer perceptron is adapted to work efficiently in experimental conditions where some experimental data can be lost.
In addition, a predictive model for determining the thickness swelling rate of the samples was developed by Shi and Gardner model.
In order to avoid emission of possibly radioactive contamination and to get stable conditioning a remote handling system including lock system for the samples was developed for the Jülich plasma generator (JULE-PSI).
The system for the irradiation of the samples was developed by Carvalho et al. [38] and consisted of a 400 W high-pressure mercury lamp (Silvania) as UV radiation source, a cooling system based on air and water circulation, a thermo-regulator for the temperature control, a holder for 12 quartz tubes, and an aluminum-based block.
After exposure, the samples were developed using various solvent developers for 90 s at room temperature or 50°C, followed by a 2-propanol rinse.
After laser irradiation (P = 30 mW, duration = 40 ns, and scan rate about 3 cm/s), the samples were developed by using basic solution (25% TMAH solution) for 630 s. Figure 6a showed the image of GST pattern after development, indicating a depth of about 27 nm and the width of about 370 nm of the nanolines on GST film.
Afterwards, the samples were developed using a solution composed of 2 3 methyl isobutyl ketone (MIBK /isopropanol, hard baked at 130°C for 30 min and then dry etched by reactive ion etching (RIE) using an inductively coupled plasma (ICP) in an ICP 180 from Oxford Instruments (Abingdon, UK).
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CEO of Professional Science Editing for Scientists @ prosciediting.com