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Titlebook: Dipolar Correlation Spectroscopy; Higher-Order Correla Bettina Basel Book 2015 Springer Fachmedien Wiesbaden 2015 Chirp Pulses.Echo Reducti

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https://doi.org/10.1007/978-3-658-09191-0Chirp Pulses; Echo Reduction; Orientation Selection; Orthogonal Spin Labels; Overcoupling
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978-3-658-09190-3Springer Fachmedien Wiesbaden 2015
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Dipolar Correlation Spectroscopy978-3-658-09191-0Series ISSN 2625-3577 Series E-ISSN 2625-3615
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https://doi.org/10.1007/978-3-662-58693-8bution is independent from this angle.It should thus be possible to extract the angular information from the three-spin contribution. The goal of this thesis is to find an experimental method with which this is in principal possible. Therefore, various approaches were tested, which shall be briefly introduced in this section.
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A General Introduction,sample of matter. In such kinds of spectroscopy, the electric field component of the radiation interacts with the electric dipole moment of the molecule. In magnetic resonance spectroscopy, however, the interaction of magnetic dipole moments with the oscillating magnetic component of electromagnetic
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Scope of the Thesis,bution is independent from this angle.It should thus be possible to extract the angular information from the three-spin contribution. The goal of this thesis is to find an experimental method with which this is in principal possible. Therefore, various approaches were tested, which shall be briefly
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Results and Discussion,ometry model to the experimental two-spin and three-spin contribution [1]. For more complex molecules, e.g. proteins, however it might not be possible to fit the experimental data with a simple geometry model. Therefore, a way of extracting the angular information from the higher-order terms of the
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