Linked from
The 108 pages that link to Mass spectrometry, each with the reason it gives.
Isotopic abundanceRelated: Its mass-separated ion signals are used to estimate isotope proportions.
Atomic mass unitRelated: It measures isotope masses that can be expressed in atomic mass units.
Mass defectRelated: Precise isotope masses provide data for determining nuclear mass defects.
Cathode rayRelated: Its early development drew on methods for deflecting charged particle beams.
DNA adductRelated: It can detect and characterize adducts after DNA is enzymatically broken down.
Isotope analysisRelated: It measures isotope abundances in prepared archaeological samples.
Venom researchRelated: It helps identify venom components in complex mixtures.
Chemical biologyRelated: It identifies targets and chemical changes caused by probes.
Isochron datingRelated: It provides the isotope-ratio measurements plotted for an isochron.
SpectrometerRelated: Mass spectrometers measure particle spectra rather than spectra of light.
BiomoleculeRelated: Mass spectrometry helps identify and measure biomolecules in complex samples.
Harold UreyRelated: It provides a later, direct way to distinguish hydrogen isotopes by mass.
ProteomeRelated: It is a main tool for identifying proteins in complex samples.
Robert CurlRelated: Mass spectra revealed an unusually abundant carbon cluster containing 60 atoms.
Harry KrotoRelated: Mass spectra revealed an unusually abundant carbon cluster with 60 atoms.
SecretomeRelated: It enables broad identification of proteins collected from secretome samples.
Complex mixtureRelated: It helps identify and quantify compounds after or during mixture separation.