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Titlebook: Magnetic Interactions in Molecules and Solids; Coen de Graaf,Ria Broer Textbook 2016 Springer Nature Switzerland AG 2016 Anisotropic Magne

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Coen de Graaf,Ria Broers of distribu­ tion and Linear PDE * theories (to which one may add the theory of convolution in spaces of hoi om orphic functions). The theorems based on TVS ** theory are generally of the "foundation" type: they will often be statements of equivalence between, say, the existence - or the approx­ i
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Coen de Graaf,Ria Broerreconstruction of an arbitrary bit of a message by looking at only a small number of randomly chosen codeword bits. Local decodability comes with a certain loss in terms of efficiency – specifically, locally decodable codes require longer codeword lengths than their classical counterparts. Private i
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Two (or More) Magnetic Centers,tem can be approached from different viewpoints using (de-)localized, (non-)orthogonal orbitals. After this quantum chemical description of the magnetic interaction we discuss the more phenomenological approach based on spin operators. Starting with the standard Heisenberg Hamiltonian for isotropic
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Towards a Quantitative Understanding,s of the main contributions are derived and illustrated with numerical examples. An effective Hamiltonian is constructed that incorporates all important electron correlation effects and establishes a connection between the complex .-electron wave functions and the simpler qualitative methods discuss
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Magnetism and Conduction,t is given of the double exchange mechanism in mixed-valence systems. Although this phenomenon can certainly be found in transition metal complexes, it is more common to happen in doped systems in the solid state. Therefore, the second part of this chapter introduces the basics of the quantum chemic
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