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Bode phase-angle plot

Figure 5 Nyquist, Bode magnitude and Bode phase angle plots for hypothetical corroding interfaces with Rp = 10, 100, or 1,000 ohms, Cd, = 100 tF, and Rs = 10 ohms using the electrical equivalent circuit model of Fig. 3a. Figure 5 Nyquist, Bode magnitude and Bode phase angle plots for hypothetical corroding interfaces with Rp = 10, 100, or 1,000 ohms, Cd, = 100 tF, and Rs = 10 ohms using the electrical equivalent circuit model of Fig. 3a.
Figure 21 Common graphical representations of EIS data in corrosion studies, (a) Complex plane plot, (b) Bode magnitude and Bode phase angle plots. (From Gamry, EIS Manual, pp. 2-3, 2-5.)... Figure 21 Common graphical representations of EIS data in corrosion studies, (a) Complex plane plot, (b) Bode magnitude and Bode phase angle plots. (From Gamry, EIS Manual, pp. 2-3, 2-5.)...
Fig. 9.16 Comparison of complex plane and Bode phase angle plots simulated using Eq. (9.16), symbols, and their approximation by de Levie s model, Eq. (9.7), lines... Fig. 9.16 Comparison of complex plane and Bode phase angle plots simulated using Eq. (9.16), symbols, and their approximation by de Levie s model, Eq. (9.7), lines...
Figure 4.4.36. Bode phase angle plots of the impedance of Alloy-22 in 6.2 m NaQ + 0.001 m HCI (pH = 3) at 80°C as a function of the standard rate constant for the dissolution of the passive film, calculated using the data listed in Table 4.4.6. Some experimental data are included for comparison. These data gave rise to the parameter values Usted in Table 4.4.7 as determined by optimization of the PDM on the experimental data. The standard rate constant, k has units of mol /cm s, corresponding to a kinetic order for film dissolution with respect to H of 0.6. Figure 4.4.36. Bode phase angle plots of the impedance of Alloy-22 in 6.2 m NaQ + 0.001 m HCI (pH = 3) at 80°C as a function of the standard rate constant for the dissolution of the passive film, calculated using the data listed in Table 4.4.6. Some experimental data are included for comparison. These data gave rise to the parameter values Usted in Table 4.4.7 as determined by optimization of the PDM on the experimental data. The standard rate constant, k has units of mol /cm s, corresponding to a kinetic order for film dissolution with respect to H of 0.6.

See other pages where Bode phase-angle plot is mentioned: [Pg.290]    [Pg.296]    [Pg.308]    [Pg.314]    [Pg.296]    [Pg.302]    [Pg.314]    [Pg.320]    [Pg.52]    [Pg.58]    [Pg.94]    [Pg.313]    [Pg.267]    [Pg.233]    [Pg.241]   
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