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The simulations are realized with the PCM model of Sentaurus Device using an analytical phase transition model coupled with a drift diffusion electro-thermal model for the transport.
We did this analysisby: linearising about the semi-classical steady state below the 'threshold'of the amplifier; by truncating the oscillator basis in the Fock basis and numericallycomputing the quantum phase space at steady state; and also by computing the exactquantum steady state by using an analytical phase space technique.
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Further the purified CrSPI1-D1 was passed through the reverse phase chromatography using an analytical Jupiter C18 column.
Separation was performed using an analytical RP-C18 Lichrospher-100 column (250 × 4 mm, particle size 5 μm) with a gradient using acetonitrile and 0, 05% trifluoroacetic acid (TFA) aqueous solution as the mobile phase.
Differential weights were determined using an analytical balance.
HPLC was performed on a Varian 940-LC system using a reversed phase analytical column (Pursuit XRs C18, 4.6 × 150 mm, 5 μm) with photodiode array (PDA) detection at 254 nm.
The chromatographic separations were performed at a flow rate of 0.8 mL min−1 and at 0.005 AUFS (Absorbance Units Full Scale) by using a reversed phase, analytical polymeric C30 column (250 × 4.6 mm i.d.; 3 μm particle diameter; YMC, Wilmington, NC, USA).
The bond behavior of epoxy-coated rebar embedded in two different ultra-high performance concrete (UHPC) mixtures is experimentally investigated by a uniaxial pullout test, and the effect of embedment length, side cover, and mixture type on the bond stress-slip relationship is predicted using a double-phase analytical model.
Generally, our approach is based on joint analysis of raw mapping data using a two-phase analytical scheme.
Twenty μL of each sample was injected and separated at a flow rate of 400 μL/min on an Agilent Zorbax RRHD Eclipse Plus C18, 2.1 × 150 mm and 1.8 μm analytical column using a mobile phase gradient from 3to90%0% phase B (90%acetonitrile/0.1%% formic acid) in a 43 min analysis.
During the second coding phase, transcripts were further examined using an inductive analytical approach to identify additional themes.
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