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By nanoindentation measurements, a maximum hardness of ∼36 GPa was observed in a film prepared at Vb = −140 V.
Under photovoltaic performance measurements, a maximum photon-to-electron conversion efficiency of 5.01% was achieved with the DSSC based on the dye HKK-Por1 (JSC = 10.7 mA/cm2, VOC = 0.67 V, FF = 0.70) under AM1.5 irradiation (100 mW/cm2).
From the photovoltaic performance measurements, a maximum conversion efficiency of 0.38% was achieved based on the bipyridylporphyrin ruthenium dye A7 (JSC = 1.33 mA/cm2, VOC = 0.45 V, FF = 0.64) under 1.5 irradiation (100 mW/cm2).
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For acoustic ranging measurement, a maximum correlation (MC) method between the transmitted and returned signals is usually applied to detect two-way traveltimes (TWT).
Measurements indicate a maximum pressure of 25 atm and a maximum measured flow rate of 85 nL/min.
Raman measurements had a maximum acquisition time of 50 seconds, while excitation light was measured for 5 seconds.
The measurements indicate a maximum error of 1%.
Hardness measurements showed a maximum value of 1.4 GPa for TiO2 10 wt% PLLA composite.
The "excursion" event was clearly recovered in the deconvolved measurements with a maximum error angle of ~3°.
Data include measurements with a maximum point of 119.8 nm, a median of 98.2 nm, and a minimum of 89.9 nm.
The simulated "excursion" event associated with a significant magnetization intensity drop was clearly recovered in the deconvolved measurements with a maximum error of ~3° in inclination.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com