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The use of Eq. (23) is demonstrated in "Appendix 1".
It is demonstrated in Appendix 2 that the MC of A is equal to mu left(mathbf{A}right)=mu left({boldsymbol{Theta}}^Tright) mu left(boldsymbol{B}right) (41).
Similar(58)
The cantilever with the mirror and the target units as a vibrating system can be treated by means of the Euler-Bernoulli beam theory, e.g. [25], which is demonstrated in this Appendix.
The relationships among members of the different STs and CCs are demonstrated in the Appendix Figure.
These connections are demonstrated in the Appendices.
A significant reduction in DLCO (see Appendix) has been demonstrated in patients with lung cancer following carboplatin/gemcitabine (Maas et al, 2003) or carboplatin/paclitaxel (Dimopoulou et al, 2002).
In a broad sense, the obtained curves confirm what is mathematically demonstrated in Appendix, that an MMSE will provide a very high equalization weight when is exposed to a null, and that will do the opposite thing for a peak.
At high SNR, it is also demonstrated in Appendix Appendix 2: BER of a MISO system using EGT that lim ρ → + ∞ BER ¯ EGT = 1 16 σ 4 1 ρ 2 = 1 4 1 ρ 2 (25).
The effectiveness of the algorithm, which was implemented in MATLAB and is available in Appendix A, is demonstrated using three simulated and experimental data sets.
In this case, as demonstrated in appendix the noise level is increased (or decreased) by dB.
Moreover, a statistically significant, positive relation between a property's location and the proceeds ratio can be demonstrated (see Table 13 in the Appendix).
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