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The inset figure is the linear scale curve.
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A 4 parameter logistics (4PL) logarithm-linear scale curve was used to plot the standards.
As seen in Fig. 5a, a first order polynomial fitted well to the compressive strength-temperature curve in linear scale.
Open image in new window Fig. 4 a The I V characteristic curves in linear scale of Ag/BaWO4/FTO structure in the dark and under white-light illumination with power density of 30 mW cm−2.
Black line - fit line, red dashed line - the chance curve (that is the diagonal of the ROC curve when plotted in linear scale).
Figure S2: I-V curve of Au/ZnO/ITO (a) linear scale (b) semi logarithmic scale.
Signal calibration curves on a a linear scale and b log scale.
The lower inset shows the corresponding I-V curve of reset process in linear scale.
That our measurements approach saturation conditions is even clearer when the curves are plotted on a linear scale.
In Figure 5, the Y-axis of the concentration-response curves should be on a linear scale, not a log scale.
The figure shows the fitting of a linear curve through some discrete points for the stopping point of the entropy-change versus logarithmic scale curve, corresponding to the furthest peak.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com