The last decade has witnessed an explosion in the sophistication of neutron experiments. Neutrons, which are a penetrating yet non-destructive probe, are ideally suited to studying the structure, organisation and motion of molecules responsible for the physical properties of materials under a variety of conditions. This has led to applications in f
The last decade has witnessed an explosion in the sophistication of neutron experiments. Neutrons, which are a penetrating yet non-destructive probe, are ideally suited to studying the structure, organisation and motion of molecules responsible for the physical properties of materials under a variety of conditions. This has led to applications in f
1. A Short Introduction to Neutron Scattering 2. Molecular Structures Determined by Neutron Diffraction 3. The Liquid Structure of Halocarbons 4. Using SANS to Study Adsorbed Layers in Colloidal Dispersions 5. Crystalline and Amorphous Polymers 6. Organization and Dynamics of Amphiliphilic Polymers at Fluid Interfaces 7. The Structure of Surfactanct Monolayers at Their Air-Water Inferface 8. Polymer Blends 9. Inelastic Neutron Scattering of Polymers 10. The Wonderful World of Ionomers 11. Neutron Scattering in Pharmaceutical Sciences
1. A Short Introduction to Neutron Scattering 2. Molecular Structures Determined by Neutron Diffraction 3. The Liquid Structure of Halocarbons 4. Using SANS to Study Adsorbed Layers in Colloidal Dispersions 5. Crystalline and Amorphous Polymers 6. Organization and Dynamics of Amphiliphilic Polymers at Fluid Interfaces 7. The Structure of Surfactanct Monolayers at Their Air-Water Inferface 8. Polymer Blends 9. Inelastic Neutron Scattering of Polymers 10. The Wonderful World of Ionomers 11. Neutron Scattering in Pharmaceutical Sciences
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