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Developing Trapped Ion Mobility Spectrometry as a Tool for the Structural Elucidation of Biological Compounds
Developing Trapped Ion Mobility Spectrometry as a Tool for the Structural Elucidation of Biological Compounds
Influence of Ion Charges to the Theoretical Calculated Cross Section and the Resolving Power and Accuracy of the Experimental Cross Section in Trapped Ion Mobility Mass Spectrometry
Influence of Ion Charges to the Theoretical Calculated Cross Section and the Resolving Power and Accuracy of the Experimental Cross Section in Trapped Ion Mobility Mass Spectrometry
Towards Structural Elucidation of Proteins, Glycoproteins, and Protein-Ligand Complexes          Using Tandem Trapped Ion Mobility Spectrometry-Mass Spectrometry (Tandem-TIMS/MS)
Towards Structural Elucidation of Proteins, Glycoproteins, and Protein-Ligand Complexes Using Tandem Trapped Ion Mobility Spectrometry-Mass Spectrometry (Tandem-TIMS/MS)