Exact(3)
In this situation, we recalculated the NN, second and third configurations without U parameterizations.
The total energy of the NN configuration is less than the second and third configurations by 0.2, 0.5, 0.8, 1.0, and 1.3 eV for V, Mn, Fe, Co, and Cu doping, respectively.
Hence, the total magnetic moments for Cu doping in the second and third NN configurations are very close to 0. According to our calculations, for the five elements except for Cu doping, the magnetic ordering between the doped atoms and host atoms in the second and third configurations is similar with those in the NN configurations.
Similar(57)
The third and fourth configurations (SHC3 and SHC4) are similar to SHC2, but the absorption chiller size is reduced to 50%and20%0%, respectively.
As for the first and second configurations, the performance degradation compared to CP-OFDM/ML begins from about 12 dB.
Moreover, the local magnetic moments of the Fe and Co dopants in second and third NN configurations are larger than those in the NN configuration; thus, the total magnetic moments of second and third NN configurations are larger than those in the NN configuration.
For Cu doping in the second and third NN configurations, the AFM states are energetically more stable than the FM states; this is differing from the NN configuration. Figure 6 shows the AFM coupling between the two doped Cu atoms with large separations and the FM exchange with the nearby host S and Mo atoms like the NN configuration.
Additionally, the magnetic orderings among the dopants and the nearby host atoms in second and third NN configuration for the four elements are similar with the situation in the NN configuration.
To obtain an ECG signal, two leads sutured in the superficial muscles under the skin just below the right collarbone and between the second and third rib (Lead II configuration) and also fixed to the plug.
The numerical work covered the Reynolds number range of 2 1000, cooling channels volume fraction of 0.02, pressure drop range of 10 10 000 Pa, and six flow configurations: first, second, and third constructal structures with optimized hydraulic diameters (D1 and D2) and non-optimized hydraulic diameter (D) for each system size 10×10, 20×20 and 50×50, respectively.
The numerical work covered the Reynolds number range of 50 2000, cooling channels volume fraction of 0.02, pressure drop range of 20 2 × 105 Pa, and six flow configurations: first, second, and third constructal structures with optimized hydraulic diameters and non-optimized hydraulic diameter for each system size 10 × 10, 20 × 20, and 50 × 50, respectively.
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