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In this work we report the elaboration of a family of metamagnetic shape memory alloys with composition Mn49Ni42-x FexSn9 (x = 0, 2, 3, 4, 5 and 6 at.%) and the systematic study of their structure, martensitic transformation (MT) behavior and functional characteristics as a function of the Fe doping and magnetic field, up to 12 T.
An evaluation of the regression coefficients for the structural characteristics as a function of age is presented in Table 4 and for the functional characteristics in Table 5.
We also study propagation characteristics as a function of local time, season, and solar activity.
Figure 6 shows the corrosion characteristics as a function of time.
Typical electrical characteristics as a function of temperature are shown in Fig. 4.
Open image in new window Fig. 6 Corrosion characteristics as a function of time.
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This paper presents a novel lithium-ion cell model, which simulates the current voltage characteristic as a function of state of charge (0%100%%) and temperature (0 30 °C).
We depict the total scattering characteristic as a function of the incident wavelength, as shown in Fig. 5, and the corresponding electric and magnetic multipole contributions to the total scattering efficiency are also shown in Fig. 5.
This tool can be developed by using empirical models derived from the measured data, or based on established by the PV module performance models used to estimate a module's I V characteristic as a function of irradiance and module temperature.
This is explained by the fact that for an increasing ratio the MOS characteristic as a function of the data rate, in (4), approaches the unbounded problem addressed in Section 4.2, for which according to (33) equal resource allocation is optimum.
The resulting static current density characteristic as a function of the static electric field is shown in Figure 2. The measured I-V curve obtained with the same sample in our previous study is placed in the figure inset for comparison [1].
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