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High-resolution mass spectrometry can improve analysis, providing excellent mass accuracy and sensitivity.
The mass resolution, mass accuracy, and ion transmission were tested by utilizing an orthogonally coupled electron ionization source.
According to Yates, "recent improvements in mass spectrometers (for example, high resolution and high mass accuracy) and new ion dissociation methods have been shown to help identify new types of modifications.
FTMS performance parameters such as limits of detection, dynamic range, sensitivity, and even mass accuracy and resolution can be greatly improved by enhancing its detection circuit.
Initially, mass spectrometers were limited in mass accuracy and resolution.
Settings were adjusted to ±5 ppm mass accuracy and all compounds were processed in batch mode.
Only mass accuracy and the set of elements are chosen appropriately.
All MS data were acquired by using the LockSpray™ to ensure mass accuracy and reproducibility.
These structures were within 5 ppm mass accuracy and often included different elemental formulas.
"Either you gave up sensitivity for the performance factors, or you maintained sensitivity but gave up mass accuracy and high resolution.
In contrast, parameters for mass accuracy and peak intensities used for estimating the likelihood of a FT can be set individually for every analysis.
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