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Structure and Dynamics
* Structure and Dynamics of Organic Nanostructures discovered by STM
The Tornado: Its Structure, Dynamics, Prediction, and Hazards, Geophys.
The Tornado: Its Structure, Dynamics, Prediction, and Hazards ( C. Church et al., Eds.
The Tornado: Its Structure, Dynamics, Prediction, and Hazards ( C. Church et al., Eds ), Geophys.
The Tornado: Its Structure, Dynamics, Prediction and Hazards, Geophys.
The Structure and Dynamics of the Psyche.
* Structure and Dynamics of the Global Multi-Media Business Networks Amelia Arsenault and Manuel Castells ( 2008 ) International Journal of Communication
* Structure and Dynamics of Supercell Thunderstorms
* Structure and Dynamics of Organic Nanostructures
* Graham Fleming, Biophysical Chemistry ; Molecular Structure and Dynamics Chemistry ; Physical Chemistry
* Daniel Neumark, Physical Chemistry, Molecular Structure and Dynamics
* Evan Williams, Analytical Chemistry ; Biophysical Chemistry ; and Molecular Structure and Dynamics Chemistry ; Mass Spectrometry
* Log-Periodic Oscillation Analysis Forecasts the Burst of the « Gold Bubble » // Structure and Dynamics 4 / 3 ( 2010 ): 1-11 ( with Alexey Fomin, Sergey Tsirel, and Andrey Korotayev ).
* Global Inflation Dynamics: regularities & forecasts // Structure and Dynamics 5 / 3 ( 2012 ): 1-15 ( with Andrey Korotayev and Alexey Fomin ).
There are seven research divisions: Laboratory for the Structure of Matter, Chemistry, Material Science & Technology, Laboratory for Computational Physics and Fluid Dynamics, Plasma Physics, Electronics Science & Technology, and the Center for Biomolecular Science & Engineering.
* The Dynamics of US Capitalism: Corporate Structure, Inflation, Credit, Gold, and the Dollar.
* Part II Stellar Dynamics and Structure of Galaxies
* Structure and Dynamics eJournal of the Anthropological and Related Sciences
USML-2 Experiments included: the Surface Tension Driven Convection Experiment ( STDCE ), the Drop Physics Module, the Drop Dynamics Experiment ; the Science and Technology of Surface-Controlled Phenomena experiment ; the Geophysical Fluid Flow Cell Experiment ; the Crystal Growth Furnace, the Orbital Processing of High Quality Cadmium Zinc Telluride Compound Semiconductors experiment ; the Study of Dopant Segregation Behavior During the Crystal Growth of Gallium Arsenide ( GaAs ) in Microgravity experiment ; the Crystal Growth of Selected II-VI Semiconducting Alloys by Directional Solidification experiment ; the Vapor Transport Crystal Growth of Mercury Cadmium Tellurida in Microgravity experiment ; the Zeolite Crystal Growth Furnace ( ZCG ), the Interface Configuration Experiment ( ICE ), the Oscillatory Thermocapillary Flow Experiment ; the Fiber Supported Droplet Combustion Experiment ; the Particle Dispersion Experiment ; the Single-Locker Protein Crystal Growth experiment ; ( including the Protein Crystallization Apparatus for Microgravity ( PCAM ) and the Diffusion-controlled Crystallization Apparatus for Microgravity ( DCAM )); the Crystal Growth by Liquid-Liquid Diffusion, the Commercial Protein Crystal Growth experiment ; the Advanced Protein Crystallization Facility, Crystallization of Apocrystacyanin C experiment ; Crystal Structure Analysis of the Bacteriophage Lambda Lysozyme, Crystallization of RNA Molecules Under Microgravity Conditions experiment ; Crystallization of the Protein Grb2 and Triclinic Lysozyme experiment ; Microgravity Crystallization of Thermophilic Aspartyl-tRNA Synthetase and Thaumatin experiment ; Crystallization in a Microgravity Environment of CcdB experiment ; A Multivariate Analysis of X-ray Diffraction Data Obtained from Glutathione S Transferase experiment ; Protein Crystal Growth: Light-driven Charge Translocation Through Bacteriorhodopsin experiment ; Crystallization of Ribosome experiment ; Crystallization of Sulfolobus Solfataricus Alcohol Dehydrogenase experiment ; Crystallization of Turnip Yellow Mosaic Virus, Tomato Aspermy Virus, Satellite Panicum Mosaic Virus, Canavalin, Beef Liver Catalase, Concanavalin B experiment ; Crystallization of the Epidermal Growth Factor ( EGF ); Structure of the Membrane-Embedded Protein Complex Photosystem I ; Crystallization of Visual Pigment Rhodopsin ; Commercial Generic Bioprocessing Apparatus ; Astroculture Facility and Experiment.
Commission on the Structure and Dynamics of Condensed Matter
The Structure and Dynamics of the Psyche, Collected Works, Volume 8, Princeton, N. J .: Princeton University Press.
* Neural Organization: Structure, Function, and Dynamics by Michael A. Arbib, et al.

Dynamics and Electrons
* O. Klein and Y. Nishina, On the Scattering of Radiation by Free Electrons According to Dirac's New Relativistic Quantum Dynamics, The Oskar Klein Memorial Lectures, Vol.

Neutrons and Electrons
# " Protons, Neutrons, Electrons " – 4: 44
# " Protons, Neutrons, Electrons "

Neutrons and X-rays
Neutrons are capable of locating hydrogen atoms in molecules, resolving atomic thermal motion and studying collective excitations of photons more effectively than X-rays.
Neutrons and X-rays interact with matter differently.

Electrons and X-rays
Electrons can be used in these situations, whereas X-rays cannot, because electrons interact more strongly with atoms than X-rays do.
Electrons do not penetrate as deeply into matter as X-rays, hence electron diffraction reveals structure near the surface ; neutrons do penetrate easily and have an advantage that they possess an intrinsic magnetic moment that causes them to interact differently with atoms having different alignments of their magnetic moments.
Electrons and positrons can be discriminated from other charged particles using the emission of transition radiation, X-rays emitted when the particles cross many layers of thin materials.

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