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1 re (a process referred to as nebulization or atomization).
2 of analyte atoms in graphite furnaces during atomization.
3 , Fe, Mn, Zn) to the solution on the in situ atomization and excitation processes occurred during ope
4 e and, as a result, determines the extent of atomization and fragmentation that has proved to directl
5 the complex coacervation method, followed by atomization and lyophilization.
6 oking, were constantly produced via collison atomization and subsequent drying processes.
7 microelectrode system, followed by ablation, atomization, and excitation of the particulate matter us
8 ne oxide (GO) at the same time by ultrasonic atomization-assisted spray pyrolysis.
9 using two techniques: dripping-extrusion and atomization, both by means of a double emulsion (HE/raps
10 edes drop evaporation (suppressing secondary atomization by the usual sequence of many Coulomb explos
11                                          The atomization cell, a single lens, and a hand-held charge
12 may be absorbed by any metals present in the atomization cloud produced by the sample.
13 d was optimized by building up pyrolysis and atomization curves in sample medium and by evaluating th
14 ome thermal desorption was observed, sputter atomization dominated when samples were not subjected to
15  as an atomizer reflects both effects, i.e., atomization efficiency and free atom decay, was estimate
16                          Moreover, the lower atomization efficiency and/or faster decay of free atoms
17                                              Atomization efficiency in DBD was estimated to be 100% o
18 ed at reduced working pressures, and maximum atomization efficiency was found to occur near atmospher
19                                      Optimal atomization efficiency was predicted to occur at a press
20 ed by the sample or the buffer volatility or atomization efficiency.
21                                              Atomization energies at 0 K and heats of formation at 0
22 )A' states, and larger bond dissociation and atomization energies in the ground state.
23 lobal hybrid gives excellent predictions for atomization energies, reaction barriers, and weak intera
24 entials for N3, N3-, N5+, and N5- from total atomization energies.
25 icity of Cu(4)Li(2) also is indicated by its atomization energy, 243.2 kcal/mol, which is larger than
26 ucing agent as its nitrides have the highest atomization energy, the shortest M-N bond distance, and
27 ion of solid, liquid, or gas analytes, clean atomization environment, and minimum background noise.
28      Dry, coated particles were generated by atomization followed by drying.
29          Both the dripping-extrusion and the atomization have shown to be feasible techniques.
30 ellation of a hard, continuous surface - its atomization into discrete elements connected by a softer
31                                          The atomization-ionization efficiencies for different elemen
32 f arsenic in diluted serum by electrothermal atomization laser-excited atomic fluorescence spectromet
33                                              Atomization mechanisms for the plastic samples were stud
34                                              Atomization of arsane in a 17 W planar quartz dielectric
35                                              Atomization of bismuth hydride in a 17 W planar quartz d
36                                              Atomization of bismuthane in a planar dielectric barrier
37  directly from a solid nickel alloy, and the atomization of cobalt from an aqueous solution, no chang
38 generator which employs electro-hydrodynamic atomization of IMI solution in ethanol.
39 l (FHSO) using a novel green method based on atomization of supercritical carbon dioxide (SC-CO2)-exp
40                                      For the atomization of tellurium directly from a solid nickel al
41       The effect of thermal treatment (after atomization) on crosslinking and bioactivity of microsph
42 the other reaction types and far superior to atomization routes.
43 f pyrolysis temperature of 640 degrees C and atomization temperature of 2000 degrees C, the direct me
44      The effects of sample amount, pyrolysis/atomization temperatures on the determination of lead in
45 degrees C of pyrolysis and 1800 degrees C of atomization temperatures without modifier.
46 on was used to measure Se and electrothermal atomization to measure Cu, Cr and Mn.
47 ted nanocapsules, generated using dispersion atomization, to direct genes to liver sinusoidal endothe
48                 Complete analyte release and atomization was reached as soon as oxygen was switched o

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