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1 roteins from the fiber phases with increased linear velocity.
2 that generally differs from the direction of linear velocity.
3 ation distance-dependent mechanism at higher linear velocities.
4 terms of efficiency and peak shape at higher linear velocities.
5 e described with a model consistent with two linear velocities.
6 r normal-phase conditions at relatively high linear velocities.
7  micro-FFE is governed by diffusion at lower linear velocities and a migration distance-dependent mec
8 diffusion and hydrodynamic flow at different linear velocities and electric fields.
9 mns with higher aspect ratio turns at higher linear velocities and smaller analysis times as compared
10 ly integrated, thus encoding combinations of linear velocity and acceleration.
11  and experimentally observed values allowing linear velocity and electric field to be optimized.
12 D-LC), such as the length of the column, the linear velocity and the composition of the mobile phase
13 s (40.1%) were weakly modulated by the rat's linear velocity, and a smaller number were modulated by
14 cross the column and allow the use of higher linear velocities as the pump pressure limit is approach
15  be significantly ameliorated at high column linear velocities by using narrow-bore columns (2.1-mm i
16                                        Under linear velocity conditions, N223-53 catalyzed the FAS (f
17                              Regression of a linear velocity distribution based on near-wall fluid-pa
18 had similar response dynamics, responding to linear velocity during translation and angular position
19                     Knowledge of the average linear velocity facilitates calculation of the height eq
20  heat the eluent as a function of the column linear velocity for both air and liquid heat-transfer me
21  temperature (>80 degrees C) and high column linear velocity (> 1.5 cm/s) the length of tubing needed
22                                          The linear velocities in the channels were confirmed using p
23 th the use of narrower columns lead to lower linear velocity in the heater tubing and longer eluent r
24 erated at kHz frequencies and moving at high linear velocities, is almost exclusively achieved using
25 th the same heater tubing at the same column linear velocity, narrow-bore columns give better thermal
26  to the straight monolithic configuration at linear velocities of 1, 2.5, 5, and 10 mm s(-1), respect
27 the column to the radial distribution of the linear velocities of a compound peak and to the radial d
28 ates as low as approximately 20 nL/min at LC linear velocities of approximately 0.2 cm/s, which is ne
29                                         At a linear velocity of 4 mm/s resulting in a 36-s extension
30 nL/min mobile-phase flow rate at the optimal linear velocity of approximately 0.2 cm/s) coupled on-li
31 e flow rates of approximately 40 nL/min at a linear velocity of approximately 0.24 cm/s.
32 ue to the difference in channel heights, the linear velocity of buffer in the electrode channels is a
33        A simple relationship for the average linear velocity of carrier gas flowing through a rectang
34 A sensitivity analysis demonstrates that the linear velocity of crude transport and pipeline diameter
35                                    The local linear velocity of hydrodynamic flow was calculated by t
36 ints along the separation axis is identical, linear velocity of the mobile phase in a CEC column shou
37                                     The high linear velocity of the nebulizing gas provides efficient
38 umns to 1 mm x 50 mm columns, increasing the linear velocity of the solvent, and decreasing the gradi
39 re was a narrower range of movement, and the linear velocity of the tip of the foot was faster throug
40                                The effect of linear velocity on peak capacity was also studied for al
41                     Studies of the effect of linear velocity on the HETP show that column efficiency
42 ripe cells of multiple scales, which perform linear velocity path integration.
43 evealed that half of PIVC cells followed the linear velocity profile of the stimulus, one-quarter car
44 hrough the microreactor channel at different linear velocities ranging from 1 to 12 mm/s.
45  9.1 x 10(-12) cm(2)/s for near-surface flow linear velocities ranging from 192 to 2952 mum/s.
46 Through the combined application of constant linear velocity scanning and beam path corrections, spir
47 ortions present in more complicated constant linear velocity spirals, where the frequency varies with
48 ession was found to cause an abnormally high linear velocity surge as the pressure was applied to the
49                                            A linear velocity surge caused by mobile-phase compression
50 ExoS ADP-ribosylated recombinant moesin at a linear velocity that was 5-fold faster and with a K(m) t
51        In packed-bed column reactors, at low linear velocities, the acid binding almost completely de
52                                    At higher linear velocities, the parabolic flow profile is elongat

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