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FEL power values of amplifier mode are explored using 3D SIMPLEX 1.3 (X-ray FEL Practical Simulator) simulation code and it is argued that the same or higher amount of power of TAC IR-FEL planing to obtain in the oscillator mode, could be obtained in the amplifier mode, using same undulator and electron beam parameters with a small modification.
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Fundamental TMz101 mode is explored in detail.
As polysaccharide-based CSPs generally show a higher success rate in resolving enantiomers under normal-phase elution (Brian 2010); hence, this mode was explored first.
The changing rules of indoor thermal environment, human body thermal comfort and energy utilization efficiency under two kinds of air supply mode were explored.
Therefore, indirect phosphorescence in sensitized and quenched mode was explored.
In this work, the use of a "green and clean" pressurised hot water extraction (PHWE) approach performed in continuous flow mode is explored.
The binding mode was explored for FGFR-1 and VEGFR-2 (fig. 2, online supplementary material section A and fig. S1).
Relationships between the active failure modes are explored.
Commercial-available separators with pore sizes of around 45 nm are particularly investigated and effects of key separator design parameters and operation modes are explored.
Cracking modes are explored through quantitative characterization on the distributions of secondary cracks in the longitudinal cross sections under different loading waveforms.
Then for arches with discrete rotational braces in uniform compression, the flexural-torsional buckling modes are explored using the finite element analysis (FEA), then improved predictions to the buckling load related to the bracing stiffness are obtained theoretically by assuming proper buckling shapes.
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