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Dye tracing experiments are recorded using time-lapse imaging.
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Experiments were recorded via an infra-red camera on a digital hard disk recorder and analysed afterwards by a naïve observer.
Cross-polarized solid state 29Si NMR experiments were recorded on Bruker DSX 300 NMR (Bruker Optik Gmbh, Ettlingen, Germany).
Chrono-potentiometric experiments were recorded in the current range of 0.25 mA cm−2 to 75 mA cm−2 at 300 s.
The real reverberant data used in these experiments was recorded in a recording room whose dimensions were about 5 × 6.4 × 2.65 m, as depicted in Figure9[51, 52].
For this reason, the experiments were recorded with a video camera, and this video data was later analysed to determine the trajectory data.
Fluorescence spectra of nanoparticles, pure GFP and filtrates from leaching experiments were recorded using the Fluoromax-3 spectrofluorometer (Spex, Horiba Scientific, Oberursel, Germany).
The relative peak area ratio of the analytes/isotopes (A/I) from five independent experiments was recorded with data shown as the mean ± SD (n = 5) for intra-batch analysis.
Similarly experiments were recorded as the temperature was increased from 10 to 60°C in steps of 1°C.
15N-edited NOESY-HSQC and TOCSY-HSQC experiments were recorded on uniformly 15N-labeled samples.
All 31P-NMR experiments were recorded on a Bruker DMX 500 spectrometer and were processed with the UXNMR software.
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