Linked from
The 71 pages that link to Nuclear magnetic resonance spectroscopy, each with the reason it gives.
DiastereomerRelated: Diastereomers can produce distinct NMR signals even in an achiral environment.
Carboxyl groupRelated: NMR signals near a carboxyl group help identify its molecular environment.
DeuteriumRelated: Deuterium can provide a distinct signal or serve as a solvent label in NMR.
MetabolomicsRelated: It measures metabolite signals without requiring molecules to be ionized.
Structural biologyRelated: It measures structures and motions of biomolecules in solution.
Keto–enol tautomerismRelated: NMR can distinguish keto and enol signals and reveal their exchange.
PhytochemistryRelated: It can establish the structures of purified phytochemicals.
Protein Data BankRelated: NMR experiments yield solution-state structures deposited in the archive.
GeminalRelated: NMR spectra can reveal interactions between nuclei in geminal positions.
Complex mixtureRelated: Overlapping signals can make complex-mixture spectra difficult to interpret.