3.22 Assume that a spin system with a single resonance component was at ther- mal equilibrium. Calculate the transverse magnetization resulting from the following excitation sequences: (a) 90,90% (b) 90-T-90%,
3.22 Assume that a spin system with a single resonance component was at ther- mal equilibrium. Calculate the transverse magnetization resulting from the following excitation sequences: (a) 90,90% (b) 90-T-90%,
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![3.22 Assume that a spin system with a single resonance component was at ther-
mal equilibrium. Calculate the transverse magnetization resulting from the
following excitation sequences:
(a) 90°.90%,
(b) 90%, — т
- 90%,](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9c032157-7c51-4ae0-bf11-737222ac0370%2Fb53d07aa-cfcd-4e62-a8a7-3a2405d4b8d2%2Fhvk5dhj_processed.png&w=3840&q=75)
Transcribed Image Text:3.22 Assume that a spin system with a single resonance component was at ther-
mal equilibrium. Calculate the transverse magnetization resulting from the
following excitation sequences:
(a) 90°.90%,
(b) 90%, — т
- 90%,
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