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The opportunities for doing scattering experiments at synchrotron and neutron facilities have grown rapidly in recent years and are set to continue to do so into the foreseeable future. This text provides a basic understanding of how these techniques enable the structure and dynamics of materials to be studied at the atomic and molecular level. Although mathematics cannot be avoided in a theoretical discussion, the aim has been to write a book that most scientists will still findapproachable. To this end, the first two chapters are devoted to providing a tutorial background in the mathematics
Neutrons --- X-rays --- Scattering. --- Rayons X --- Scattering --- Diffusion --- X-ray scattering --- Scattering (Physics) --- Nucleon-nucleon scattering --- Potential scattering --- scattering experiments, synchrotron facilities, neutron facilities, dynamics of materials, structure of materials
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Focusing on Bayesian methods and maximum entropy, this book shows how a few fundamental rules can be used to tackle a variety of problems in data analysis. Topics covered include reliability analysis, multivariate optimisation, least-squares and maximum likelihood, and more.
Maximum entropy method. --- Maximum principles (Mathematics) --- Engineering mathematics. --- Science --- Engineering --- Engineering analysis --- Mathematical analysis --- Differential equations, Partial --- Entropy maximization --- Entropy maximum principle --- Maximization, Entropy --- Entropy (Information theory) --- Mathematics. --- Mathematics --- Numerical solutions
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