50 and More Essential NMR Experiments. A Detailed Guide by Matthias Findeisen,Stefan Berger

By Matthias Findeisen,Stefan Berger

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I could not count beyond seven for weeks. The next step was to generalize the construction principles. I came up with a scheme based on phase shifts and cyclic permutations. This was suggested by my experience as an electric guitarist in a jazz-fusion band, where we were using permutations to generate unusual musical effects. Malcolm H. Levitt, *1957 "A Cyclic Evolution in Spin State" Enyclopedia of NMR, 1996, 1, 453–454. 4 Ps, 5 dB MLEV series of composite 180° pulses (90°, 180°, 90°) at transmitter attenuation of spin lock; 90° pulse width and transmitter attenuation typically in the order of 40 Ps and 16 dB, corresponding to an effective spin lock ¿eld of ca.

1986, 69, 375– 380. [2] T. Domke, "A new method to distinguish between direct and remote signals in proton-relayed X,H correlations" J. Magn. Reson. 1991, 95, 174–177. [3] G. E. Martin, T. D. Spitzer, R. C. -K. Luo, R. N. Castle, "Inverted and suppressed direct response HMQC-TOCSY spectra í a convenient method of spectral editing" J. Heterocyclic Chem. 1992, 29, 577–582. 51 Advanced Organic NMR [4] B. K. John, D. Plant, S. L. Heald, R. E. Hurd, "Ef¿cient detection of CDH-HN correlations in proteins using gradient-enhanced 15 N HMQC-TOCSY" J.

I could not count beyond seven for weeks. The next step was to generalize the construction principles. I came up with a scheme based on phase shifts and cyclic permutations. This was suggested by my experience as an electric guitarist in a jazz-fusion band, where we were using permutations to generate unusual musical effects. Malcolm H. Levitt, *1957 "A Cyclic Evolution in Spin State" Enyclopedia of NMR, 1996, 1, 453–454. 4 Ps, 5 dB MLEV series of composite 180° pulses (90°, 180°, 90°) at transmitter attenuation of spin lock; 90° pulse width and transmitter attenuation typically in the order of 40 Ps and 16 dB, corresponding to an effective spin lock ¿eld of ca.

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