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The characteristics of the error as a function of measurement time have been provided.
Furthermore, we show the decrease in synchronization error as a function of the duration of the data stream.
The error as a function of the relaxation parameter is in that case qualitatively similar to that of flat walls.
Therefore, the large number of comparisons required to express error as a function of a physical quantity, like cutoff rigidity, are now possible.
A convex surface was obtained when considering error as a function of position for a fixed height setting confirming the empirical observations when using either calibration artefact.
We also benchmark efficiency (i.e. error as a function of computing time) against the SPME method, which indicates that our method is competitive.
For practical measurement situations a further analytical function was derived which gives this intensity error as a function of the difference between the measured (spatially averaged) pressure and intensity levels.
The glass transition temperatures for blends, around 227 K as determined by the ortho-positronium (o-Ps) lifetime τ3 versus temperature, were invariant, within the experimental error, as a function of EVA concentration.
Figure 1 The error as a function of time.
Figure 7 Reconstruction error as a function of time.
Figure 2 The error as a function of the stepsize.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com