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Principles of magnetic resonance
The n m r line shape
78 other sections not shown
2D experiment 90 pulse achieved amplitude applied axis basic carbon Chem chemical shift complex components consider constant correlation cross-correlation data acquisition defined depends detected detector digitisation discussed double resonance efficient energy equation equilibrium Fourier transform free induction decay Freeman frequency domain Gaussian gradient H.D.W. Hill high resolution homonuclear illustrated in Fig imaging inhomogeneity intensity irradiated Larmor frequency line shape line width linear Lorentzian Magn magnetic field method modulation molecules multiple quantum multipulse NMR spectrum noise decoupling noise ratio normal nuclear Overhauser effect nuclear spin nuclei obtained output Overhauser effect peak phase shift Phys polarisation power spectrum precession produce proton pulse angle pulse sequence pulsed excitation R.R. Ernst receiver coil result rotating frame sample saturation sensitivity signal to noise solvent spectra spectral width spectrometer spectroscopy spin coupling spin system spin-lattice relaxation spin-spin relaxation techniques transitions vectors weighting function zero