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Small-angle x-ray scattering --- Congresses. --- Small-angle scattering --- Congresses --- Small-angle x-ray scattering - Congresses.
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Experimental solid state physics --- Optics. Quantum optics --- Exciton theory --- Light --- Time-resolved spectroscopy --- Scattering --- Light - Scattering
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Ions --- Surface chemistry --- Surfaces (Physics) --- Chimie des surfaces --- Surfaces (Physique) --- Scattering --- Surface chemistry. --- Scattering. --- Surfaces (Physics). --- Ions - Scattering --- SURFACE (CHEMISTRY AND PHYSICS) --- ION BEAMS --- SCATTERING --- COLLISIONS --- FILMS --- CHEMICAL AND PHYSICAL EFFECTS
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Neutrons --- Polymers --- Neutrons --- Scattering --- Effect of radiation on --- Diffusion
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Waves --- Scattering (Physics) --- Surfaces (Physics) --- Mathematics --- 543.08 --- 517.98 --- Analytical measurement --- Functional analysis and operator theory --- 517.98 Functional analysis and operator theory --- 543.08 Analytical measurement --- Waves - Mathematics --- Scattering (Physics) - Mathematics --- Surfaces (Physics) - Mathematics
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Fluorescence. --- Fluorine compounds. --- Light --- Molecular association. --- Conformation --- Encapsulation --- Hydrogels --- Hydrophobicity --- Ionomers --- Labels --- Polyelectrolytes --- Scattering. --- Conformation --- Encapsulation --- Hydrogels --- Hydrophobicity --- Ionomers --- Labels --- Polyelectrolytes
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Designed for graduate students in mechanical engineering, this textbook discusses the basic concepts of superconducting magnet technology. Important topics covered include field distribution, magnets, force, thermal stability, dissipation, and protection. To help the students excel in the field, each chapter contains tutorial problems, accompanied by solutions, utilizing solenoidal magnets as examples.
Superconducting magnets. --- Magnetic properties of solids --- Physics. --- Condensed matter. --- Solid state physics. --- Crystallography. --- Spectroscopy. --- Microscopy. --- Materials science. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Condensed Matter Physics. --- Characterization and Evaluation of Materials. --- Surfaces (Physics). --- Crystallography and Scattering Methods. --- Superconducting magnets --- Stability.
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fysicochemie --- Macromolecules --- Polymers --- Analysis --- 678.01:543 --- -Polymere --- Polymeride --- Polymers and polymerization --- Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Analytical chemistry --- Analysis. --- -Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Analytical chemistry --- 678.01:543 Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Analytical chemistry --- -678.01:543 Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Analytical chemistry --- Polymere --- Polymers - Analysis --- POLYMERS --- GEL-PERMEATION CHROMATOGRAPHY --- INFRARED SPECTROSCOPY --- CHROMOPHORES --- X-RAY DIFFRACTION --- POLYELECTROLYTES --- COLLOIDS --- LIGHT SCATTERING --- SOLUTIONS (CHEMISTRY) --- ANALYSIS
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fysicochemie --- Macromolecules --- Physical organic chemistry --- Chimie organique physique --- Macromolécules --- 541.64 --- Chemistry, Physical organic --- #WSCH:MACR --- Molecules --- Supramolecular chemistry --- Chemistry, Organic --- Chemistry, Physical and theoretical --- Macromolecular chemistry. Polymerization products. Polycondensation products. Polyaddition products --- Macromolecules. --- Physical organic chemistry. --- 541.64 Macromolecular chemistry. Polymerization products. Polycondensation products. Polyaddition products --- Macromolécules --- High performance liquid chromatography. --- Infrared spectroscopy. --- Light --- Nuclear magnetic resonance. --- Optical rotatory dispersion. --- Scattering. --- Chemical chains --- Circular dichroism --- Diffusion --- Molecular weight --- Osmotic pressure --- Polymerization --- Polymers --- Sedimentation --- Thermodynamics --- Uv and visible spectroscopy --- Viscosity --- X-ray diffraction
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