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The study also shows that TMP is the most significant factor, followed by the temperature, ultrasonic power and irradiation mode.
The optimum conditions were found to be at ultrasonic power of 120 W, continuous ultrasonic irradiation mode, TMP of 0.60 bar and temperature of 20 °C.
It is shown that the irradiation mode is one of the critical parameters defining the coating microstructure and thus its wear properties.
The effects and mutual interaction of several parameters, namely ultrasonic power, ultrasonic irradiation mode, trans-membrane pressure (TMP) and temperature, on fouling degree (Y1) and process duration (Y2) were investigated simultaneously.
The electron irradiation in the ECR plasma was identified by using Langmuir single probe equipped with a designed simulated substrate and the irradiation mode was found to be controlled directly by altering the substrate bias voltage.
On the contrary, the spatially fractionated, non-interlaced irradiation mode did not induce such cellular responses in the left, contralateral hemisphere (Fig. 5C D, O P).
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In this study, effect of various microwave irradiation modes on surface tension of water was investigated.
The evaluation of neutron energy spectra at the normal irradiation position was also performed for three representative irradiation modes, in which the neutron intensities are largest of all the irradiation modes.
Thermal neutron flux, cadmium ratio, gamma-ray dose rate, etc., at the normal irradiation position for various irradiation modes were determined, mainly on the basis of the measurement using gold activation foils and thermo-luminescent dosimeters (TLDs).
To produce Au condensates, Au (99.99% pure, 0.3 mm in thickness) foil was subjected to energetic Nd-YAG-laser (Lotis, 1,064 nm in wavelength, beam mode: TEM00) pulse irradiation inside an ablation chamber in vacuum (3.5 × 10−5 torr).
To produce Au nanocondensates, Au (99.99% pure, 0.3 mm in thickness) foil immersed in de-ionized (DI) water within a glass beaker was subjected to energetic Nd-YAG-laser (Lotis, 1,064 nm in wavelength, beam mode: TEM00) pulse irradiation for up to 3,000 pulses inside an ablation chamber under the laser parameters compiled in Table 1.
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