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Crystal Field Theory

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Crystal Field Theory

Crystal Field Theory

This note covers the following topics: Crystal Field Theory, Magnetic Properties of Coordination Complexes, High Spin and Low Spin, Colors of Coordination Complexes, Metals, Tetrahedral and Octahedral, Tanabe-Sugano Diagrams and Electronic Structure.

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sNA Pages
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Interpretation of crystal structure determinations

Interpretation of crystal structure determinations

This note is an illustration of the basic principles of X-ray crystal and provides an overview of the successive stages of a crystal structure determination. Topics covered includes:crystallization, diffraction, structure determination, symmetry, intramolecular geometry, including thermal motion analysis, graphics, intermolecular geometry, including hydrogen bonding, miscellaneous subjects, including powder diffraction, graph sets, twinning, absolute configuration, data bases, validation, -ray crystallography and chemical bonding.

s184 Pages
Crystal Structure Analysis

Crystal Structure Analysis

This note explains the following topics: X-ray Diffraction, Scattering, Compton Scattering, X-ray Scattering, Diffraction, Optical Interference, Bragg’s Law Of Diffraction, Debye-scherrer Method, Generation Of X-rays, Monochromatic X-rays, The Reciprocal Lattice And The Laue Description Of Diffraction, Reciprocal Lattices, K And Lattice Planes, Monoatomic Bases, Elastic X-ray Scattering By Atoms, Scherrer Constant, Rocking Curves.

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Crystal chemistry lecture notes(PDF)

Crystal chemistry lecture notes(PDF)

This lecture covers the following topics: X-ray diffraction: symmetry, space groups, geometry of diffraction, structure factors, phase problem, direct methods, Patterson methods, electron density maps, structure refinement, how to grow good crystals, powder methods, limits of X-ray diffraction methods, and structure data bases.

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Introduction to Solid State Chemistry

Introduction to Solid State Chemistry

This lecture note covers the following topics: Structure of the Atom, The Periodic Table, Atomic Models: Rutherford and Bohr, Matter/Energy Interactions: Atomic Spectra, Quantum Numbers, Electron Shell Model and Quantum Numbers, Particle-Wave Duality, The Aufbau Principle, Photoelectron Spectroscopy, Bonding and Molecules, Electronic Materials, Crystalline Materials and Amorphous Materials.

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Matter, Materials,Crystal Structure and Bonding

Matter, Materials,Crystal Structure and Bonding

This note covers the following topics:Atoms and Elements, Non-crystalline materials, Crystalline materials, Bonding and cohesion.

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Chemical Crystallography An Introduction To Optical And X Ray Methods (PDF 471P)

Chemical Crystallography An Introduction To Optical And X Ray Methods (PDF 471P)

This is a fascinating text that will greatly appeal to enthusiasts of mineralogy and gemmology, this scarce book will make a great addition to any such collection of literature. Chapters contained within this text include: Identification of crystals under the microscope, Origin of anisotropic properties of crystals,  The use of X-rays, Electron density maps, Molecular type and arrangement deduced from anisotropic properties of crystals, Limitations of X-ray methods, Use of X-ray diffraction patterns for identification.

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