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The stresses in the device substrate were obtained with the aid of Michelson interferometry, while scanning electron microscopy was used to investigate device failure.
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PU foam is also used as a cancellous core material in whole bone models, with an outer coating to feature cortical bone; these models have been used to investigate devices such as intramedullary nails [ 4].
Following our data, we cannot recommend a clinical use of the investigated device.
The structure of the investigated device, shown in Figure 1a, contains 11 layers of 6 nm-thick Ga0.35In0.65N0.02As0.08 quantum wells separated by 10 nm GaAs barriers.
The investigated device belongs to the passive energy dissipation systems, as it doesn't require external power to generate system control forces.
Figures 5 and 6 show I V curves of the investigated device at the several front gate voltages (VFG = − 1 V, − 5 V) measured in an aqueous solution with pH = 6.2, 7, and 8.3.
The peak output power represents the maximum peak output of the investigated device classes.
It is possible to account for these features by characterizing the response of the investigated device to the moments of the PF.
The authors also investigated device performance by changing the temperature of gas within the ventilators and under two different minute ventilation levels (Ve) (low V ˙ e of 10 L/min and high V ˙ e of 21 L/min).
All the investigated devices displayed good rectifying properties, ranging from 102 to 104.
Among investigated devices with GO interlayer the best value of power conversion efficiency (PCE = 0.47%) was found for the device ITO\PEDOT PSS\P3HT PCBM\GO\Al.
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