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m is the index of samples.
The refractive index of samples n are computed from the obtained reflection and transmission spectrum.
One reason for the variation of the refractive index of samples creates bonds is polarized.
The flexural toughness index of samples with 12 mm PVA fiber is higher than that of the control sample by over 1300%.
Open image in new window Fig. 2 The real part of refractive index Open image in new window Fig. 3 The imaginary part of refractive index of samples.
Open image in new window Fig. 5 Refractive index of samples Open image in new window Fig. 6 Extinction coefficient of samples.
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Open image in new window Figure 5 Refractive index of sample 5 calculated by Swanepoel method.
The geometrical dimensions of sensor, the polarization and the wavelength of incident light and the refractive index of sample surface characterize the performance of sensor.
Habitat suitability of O. alta during the Last Glacial Maximum (~21,000BP), compared with the distribution of genetic clusters and Shannon diversity index of sampled populations.
Habitat suitability of O. glumaepatula during the Last Glacial Maximum (~21,000BP), compared with the distribution of genetic clusters and Shannon diversity index of sampled populations.
Habitat suitability of O. grandiglumis during the Last Glacial Maximum (~21,000BP), compared with the distribution of genetic clusters and Shannon diversity index of sampled populations.
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