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The spectra of phase current are shown in Fig. 5.
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Open image in new window Fig. 6 IR spectra of phases obtained after retention of RB19 by 100 mg of [Zn Al Cl] at different RB19 initial concentrations.
Open image in new window Fig. 9 IR spectra of phases obtained after retention of AG1 by 30 mg of [Zn Al Cl] at different mass ratio AG1/LDH.
Figure 9 shows the harmonic spectrum of phase a current when the system is delivering 10 kvar of reactive power to the grid and 10 kW of active power to the battery.
Open image in new window Fig. 9 Harmonic spectrum of phase a current with system parameters of Q = 10 kvar and Pbat = − 10 kW (fundamental (50 Hz) is equal to 56.08, THD is equal to 0.96%).
ES cells that lack Nanog may comprise a spectrum of phases between lineage specification and commitment.
Figure 5 XPS spectra of LC3 phase before and after adsorption of Cu II).
Fig. 10 Examples of Raman spectra of single phase fluid (at 800 °C) and coexisting fluids and melts at temperatures indicated (corresponding pressures in Table 1).
Unfortunately, the amounts that we have obtained thus far do not allow us to obtain clear spectra of either phase (e.g., Rh6 or Rh6-II).
The HCO3- abundance in melt diminishes rapidly with increasing temperature and can barely be observed at 750 °C and cannot be seen in spectra of single phase fluids at 800 °C.
Moreover, the bond length asymmetry of In O2–In is substantial which may have implications for the O NMR spectra of this phase (Table 1).
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