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Mass spectroscopy data was recorded on a Waters Acquity Ultra Performance LC (Milford, MA).
All the products were identified by their 1 H NMR, IR and mass spectroscopy data and compared with literature reports.
All the products were confirmed by their proton nuclear magnetic resonance (1 H NMR), infrared (IR) and mass spectroscopy data.
All of the products were characterized by their proton nuclear magnetic resonance (1 H NMR), infrared (IR) and mass spectroscopy data.
Taking into account the similarity of the erbium and terbium fluorides' thermodynamic properties [20], in order to understand the structural features of the as-deposited SiO x < Er,F > film, it is appropriate to reference the mass spectroscopy data obtained during and after the deposition of SiO x < Tb, F> films by co-evaporation of silicon monoxide and terbium fluoride [21, 22].
The temperature of the maximum rate of cure in the dynamic mass spectroscopy data decreased with increasing solvent content and the temperature range over which imidization occurred narrowed by 300% for samples cast from NMP solution compared with solid samples precipitated from solution.
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The major products in accordance with mass-spectroscopy data were aromatic fragments of styrene and pyridine with the relative mass of 77 79 Da, CH and CH2 fragments with corresponding relative mass 30, and 38 Da as well as N2 and CO with relative mass 28 Da.
Fig. 1 shows mass-spectroscopy data of crude (1a), HPLC-purified (1b), and HPLC re-purified (1c) peptide III-10 (Table 1).
The structure of all products prepared by different methods was checked by comparison of their nuclear magnetic resonance (NMR), infrared spectroscopy (IR) and mass spectroscopy (MS) data and by the TLC behaviour.
This mass spectroscopy peptide data have included alignments to 120 regions that previously had only an ab initio gene prediction with no further evidence, indicating that these predictions are likely to be real coding genes.
The X-ray photoelectron spectroscopy and secondary ion mass spectrometry data reported herein show very clearly the importance of the WF parameter in controlling PP chemistry and structure.
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mass layoff data
mass spec data
mass spectroscopy methods
mass transfer data
mass spectroscopy scans
mass spectrum data
mass intensity data
mass percentage data
mass spectroscopy measurements
mass spectroscopy experiments
mass spectra data
mass fingerprint data
mass spectroscopy analyses
mass spectroscopy studies
mass spectrometry data
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