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FTIR was performed in attenuated total reflectance mode and data were collected between 4000 650 cm−1 using a scan time of 1 minute and a resolution of 4.0 cm−1.
directly coupled to the chromatographic system and programmed to step between low (4 eV) and high (15 40 eV) collision energies on the gas cell, using a scan time of 1.5 per function over 50 1990 m/z (Expression mode: data independent parallel parent and fragment ion analysis [50]).
Peptides were eluted by a gradient of 3 40% mobile phase B over 150 min at a flow rate of 250 nl/min followed by a gradient of 40 90% mobile phase B over 5-min and a 15-min rinse with 90% mobile phase B. The Q-Tof Premier mass spectrometer (Waters Corporation) was programmed to step between low (4 eV) and high (15 40 eV) collision energies using a scan time of 1.5 s over 50 1990 m/ z.
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Using a scanning time of 0.5 ms, this gives a value B = 1.19 MHz.
A SPAIR adiabatic fat suppression applied and a SENSE parallel imaging factor of 2.4 used for a scan time of 4 04 min. Contrast uptake by the prostate is monitored using a 3D dynamic T1-weighted, single-shot, turbo field echo sequence.
The trap collision cell was adjusted for 1 eV using a millisecond scan time adjusted based on the linear velocity of the chromatography peak delivered though nanoACQUITY UPLC, to obtain a minimum of 20 scan points for each single peak at both low-energy and high-energy transmission, followed by an orthogonal acceleration time-of-flight from 50 2000 m/z.
Reduced WT ThyX was incubated with 5F-dUMP and CH2THF and monitored over time using a scanning spectrophotometer.
Survey scans were acquired in positive ion centroid mode from m/ z 400 1,500 at a scan time of 1 s using an interscan time of 0.02 s.
The kinetics of this reaction was monitored using a time scan absorption measurement which reveals a sigmoidal curve, a signature of noble metal nanoparticles.
To estimate the potential emission of carbon nanotubes (CNTs) and potential exposure of workers, personal sampling, area monitoring, and real-time monitoring using an scanning mobility particle sizer (SMPS) and dust monitor were conducted at workplaces where the workers manufactured CNTs.
Images were pre-processed using slice scan time correction, 3D head motion correction, temporal high-pass filtering with 3 cycles/point, linear trend removal and 3D spatial smoothing, with a Gaussian filter of 5.0 mm.
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