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Such procedure yields the Debye temperature of about 95 K. Deduced value of the Debye temperature is consistent with specific heat data [18], inelastic neutron scattering results [5], isotope effect studies [22], and thermoelectric power data [10, 12].
Furthermore, the lower critical field Hc1 at T = 0 K is related to the coherence length ξ0, and the London penetration depth λ L0 by the relation Hc1 (0) = Φ0 [4πλ2L 0−1lnλL 0/ξ0, where Φ0 is the magnetic flux quantum. Deduced value of Hc1 (0) is 25.8 mT that is comparable with the experimental value of 12 mT [34, 35], 19 mT [69] and 26 mT [68].
Deduced value of θ D is listed in Table 5.
Deduced value of θ D at 300 K is listed in Table 4.
Deduced value of θ D at zero pressure is listed in Table 3.
Deduced value of ξ ≈ 0.709 is documented in Table 5 for 3C SiC at zero temperature and pressure.
Similar(45)
As shown in Figure 2, the pairs of sampled and deduced values of θ distribute diagonally, indicating that the deduced θ could be used as an estimate of the real annotation completeness ratio.
It is shown that these values do not always agree well with theoretically deduced values.
First the experimentally deduced values of the factor in the formulae which depends on the modal spatial functions are considered.
The Integral Data Assimilation (IDA) was designed to deduce values of infinite dilute neutron cross-sections from specific integral measurements.
Comparison with our experimental data allowed us to deduce values of the conduction and valence band offsets.
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