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The simulated steady state performance of the fuel cell, for different operating conditions and current densities, is further investigated.
The model is in good agreement with the experimental results and can predict the heat generation and the temperature distribution across the cell for different operating conditions.
Therefore, the MD calculations need to be performed only in one cell for different values of nuclear energy deposition, and statistical considerations based on BCA simulations can be employed to obtain the depth profile and the total number of different defect species (vacancies, interstitials, disordered atoms, etc).
Open image in new window Fig. 10 Current voltage characteristics of a In0.12Ga0.88N/GaN p-i-n solar cell for different series resistance values Open image in new window Fig. 11 Power voltage characteristics of a In0.12Ga0.88N/GaN p-i-n solar cell for different series resistance values.
Open image in new window Fig. 12 Current voltage characteristics of a In0.12Ga0.88N/GaN p-i-n solar cell for different values of shunt resistance Open image in new window Fig. 13 Power voltage characteristics of a In0.12Ga0.88N/GaN p-i-n solar cell for different values of shunt resistance.
According to relation (5), it is possible to develop an equation which defines the maximal number of users (MAL) that can be served in the cell for different Tx powers of BS as n D V = 0.85 × P Tk E b / N o i v i R i 0.85 × P Tk W 1 − α ¯ + ι ¯ + N rf L ¯. (7).
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Moreover, temperature distributions within cell stacks for different cell designs, including different thickness of cell components and different current collector materials, are calculated so as to carry out cell structure optimization from a heat transfer point of view.
On the one hand, this formulation allows for computing the required eNB power that enables to maintain a constant average cell SINR for different cell radii, hence to obtain comparable CA results for different cell radii.
It is likely that the LCPUFA metabolism may differ in the placenta depending upon the requirement by the trophoblast cells for different physiological processes.
Giralt, M. & Villarroya, F. White, brown, beige/brite: different adipose cells for different functions?
DCs were loaded with the probe CCF4 for 1 h and β-lactamase was added to the cells for different times.
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