How Do You Spell MASS SPECTRUM ANALYSIS?

Pronunciation: [mˈas spˈɛktɹəm ɐnˈaləsˌɪs] (IPA)

The spelling of "Mass Spectrum Analysis" can be explained using the International Phonetic Alphabet (IPA) transcription. The first word, "mass," is pronounced /mæs/ with a short 'a' sound and the second word, "spectrum," is pronounced /ˈspɛktrəm/ with the stress on the first syllable and the 'e' pronounced as 'eh'. Finally, the last word, "analysis," is pronounced /əˈnæləsɪs/ with the stress on the second syllable and the 'a' pronounced as 'uh'. Overall, this word combination is used to describe the study of molecular structures through their mass spectra.

MASS SPECTRUM ANALYSIS Meaning and Definition

  1. Mass spectrum analysis is a technique used in analytical chemistry and physics to identify and analyze the composition of a sample based on the masses and abundance of its constituent particles or molecules. It involves the measurement of the mass-to-charge ratio (m/z) of ions produced by the sample under investigation.

    The analysis begins with the introduction of the sample into a mass spectrometer, a highly sophisticated instrument that consists of three fundamental parts: an ion source, a mass analyzer, and a detector. The ion source converts the sample into ions by bombarding it with high-energy electrons or other particles, resulting in the production of charged species. These ions are then accelerated and separated according to their mass-to-charge ratio within the mass analyzer, which can be based on techniques such as magnetic or electric fields, time-of-flight, or quadrupole mass filters. Finally, the detector records the relative abundance of ions at each m/z value, generating a mass spectrum.

    From the mass spectrum, various information about the sample can be extracted. The positions and intensities of the peaks in the spectrum correspond to the masses and abundances of different ions present in the sample. By comparing these mass peaks to established databases or known standards, the molecular formula or compound identity of the sample can be determined. Furthermore, mass spectrometry can provide information about the structure, fragmentation patterns, and isotopic composition of the ionized molecules, allowing for more detailed characterization and identification.

    Overall, mass spectrum analysis is a powerful tool in scientific research and various industries, including environmental monitoring, forensic analysis, pharmaceutical development, and food safety, among others.

Common Misspellings for MASS SPECTRUM ANALYSIS

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