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Figure 9 presents the EQE response of samples B and C.
The magnetic properties were determined in a superconductive quantum interference device (SQUID) before RBS measurements in order to not alter the magnetic response of samples.
The experiments measured the unconstrained recovery response of samples stored at 20 °C (Tg − 36 °C) for zero to 180 days and evaluated the effects of storage on the strain fixity, activation temperature, and initial recovery rate.
Figure 7 presents the EQE response of samples A and B. We observed a peak EQE enhancement (∆EQE) of 50% at a wavelength of 1,150 nm and ∆EQE bandwidth from 1,050 to 1,190 nm, compared with the results obtained from a bare solar cell.
Figure 11 presents the EQE response of samples B and D. A large EQE enhancement (∆EQE >70%) was observed at wavelengths of between 350 and 400 nm, and a considerable increase in EQE compared with sample B was observed at shorter wavelengths due mainly to the scattering effects of In NPs.
Further, we evaluate the antibodies against these antigens in samples from patients in acute phase of DF or DHF and compare it with the response of samples from healthy individuals from the same endemic areas and samples from healthy individuals from a non-endemic area (EA and NEA, respectively).
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Figure7 shows the response of sample 4, which was obtained by CVD.
Figure 7 Response of sample 4 (CVD, monolayer GR) to THz radiation.
While the weak response of Sample III to humidity should be ascribed to the hydrophobicity of ZIF-8 [33].
The temperature of the chamber is then suddenly changed, and the temperature response of sample and reference is recorded.
H2S response of sample S3 is higher (S = 872) at 250°C as compared to those of S1, S2, and S4.
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