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The computations presented in this paper show that the sliding flow method (SFM) is expected to perform significantly better than existing methods and will result in substantial reduction in exergy destruction.
For the test computations presented in this paper, we have used the model of a Nordtank turbine NTK500/41, see Figure 1 (bottom), with 35 m hub height because we are provided with aerodynamic data for the blades of this WT.
The development of the turbo processing will be addressed in Section 4. The binary convolutional coding structure in is used to develop the constituent soft-input soft-output (SISO) decoder (shown in Figure 2) to provide more reliable soft estimates of the coded bits,, based on the extrinsic soft-bit information received from the MIMO-demapper,, using the computations presented in [29].
While the computations presented in this paper used simple models of evaluation procedures, our results should extend into more complicated evaluation procedures.
All computations presented in Table 5 finished in under one second.
These large matrices are used for the abundance computations presented in this study and hence included as Additional file 3.
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Thus we get that C K ( R 1 ) is exactly the Jacobson algebra described in Example 7, so that (using the computation presented in that Example), we have C K ( R 1 ) ≅ L K ( T ), the Leavitt path algebra of the Toeplitz graph.
In the computations presented now, we use the value of 950 mA/300 m = 3.17 mA/m (≈950 mA/1000 feet) for a constant leakage current density.
Values used in the computations are presented in Appendix 2. Results of the computations illustrate that, in the absence of phosphate, As III) and As V) adsorb extensively onto hydrous ferric oxide so that concentrations of both species are maintained at extremely low levels (well below the analytical detection limit) throughout the pH range 5 7 (Fig. 4).
Matrix computations are presented in [14].
The results of these computations are presented in Table 1 (the numbers were rounded to four decimal places).
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