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- W4253783306 abstract "This chapter describes various aspects of multiple resonance, and examines multiple quantum methods and their uses along with new and special pulse sequences. Nuclear Overhauser Effect (NOE) is also presented in the chapter. In addition to providing improved sensitivity, pulsed Fourier transform (FT) methods provide considerable control over the spin dynamics, leading to a rise in new pulse sequences intended to aid assignments of 13C spectra in particular and to provide different types of 2D spectra. This aspect of multiple resonance is one of the most important developments and a number of real chemical problems have been solved with the help of this technique. Essentially, a multiple resonance experiment is one in which sample is affected by several radiofrequency (rf) fields. Modern spectrometers are equipped with extremely versatile pulse programmers so that a range of pulse sequences are available that can result in significant improvements in sensitivity and can facilitate spectral assignments. The chapter also considers general applications of multiple resonance namely, indirect determination of chemical shifts and couplings." @default.
- W4253783306 created "2022-05-12" @default.
- W4253783306 creator A5021114596 @default.
- W4253783306 creator A5083759083 @default.
- W4253783306 date "1985-01-01" @default.
- W4253783306 modified "2023-09-25" @default.
- W4253783306 title "Multiple Resonance" @default.
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