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Using a highly sensitive opposed-jets technique, we have now measured salt concentration effects on the extensional flow behaviour of xanthan in aqueous solution at a concentration of 0.01% w/w.
(d) The XANES spectrum of the UNCD film grown from the LPLT (30 Torr/460°C) plasma jet technique.
In this study, PCL/F127 composite scaffolds were fabricated through electrohydrodynamic jetting (E-jetting) technique.
Water jet technique is an effective solution to the problems faced in the conventional method.
Micro alcohol gas sensor was fabricated based on micro-heater by using CMOS compatible MEMS process and ink jetting technique.
The liquid jet technique has been shown to be an effective and accurate (±6% experimental error) technique for the study of liquid-liquid interfacial reactions.
Currently, gas phase chemistry experiments with heaviest elements are usually performed with the gas-jet technique with the disadvantage that all reaction products are collected in a gas-filled thermalisation chamber adjacent to the target.
A coal/arc-jet technique by directly and successively injecting coal fine particles into the arc plasma jet instead of arcing graphite or coal-based electrodes for producing carbon nanotubes (CNTs) from coal was developed.
Therefore, we describe here a unique plasma jet technique to successfully grow UNCD films at LPLT (30 Torr/460°C) that yields films with smooth surface, pure diamond nanograins (3 to 8 nm), and high optical transmittance in the visible light region using relatively low pressure, low power (700 W), and even with addition of H2 (Ar-1%CH4-10%H2) compared with the typical plasma processes [10 12].
The measurements of the rate of absorption of CO2 into aqueous solutions of KOH, NaOH and LiOH containing neutral electrolytes (carbonates, chlorides, bromides, nitrates and sulphates) have been performed using the laminar-jet technique.
This suggests that the single jet-wall configuration can be preferably used as an alternative technique for the determination of laminar flame speeds given that it has a number of advantages over the traditional opposed-jet technique in terms of experimental implementation.
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