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Bond Energies and Polarities1

Maurice L. Huggins1953-09-01Journal of the American Chemical Society

ADVERTISEMENT RETURN TO ISSUEPREVArticleNEXTBond Energies and Polarities1Maurice L. HugginsCite this: J. Am. Chem. Soc. 1953, 75, 17, 4123–4126Publication Date (Print):September 1, 1953Publication History Published online1 May 2002Published inissue 1 September 1953https://pubs.acs.org/doi/10.1021/ja01113a001https://do…

Machine Learning in Materials ScienceInorganic Fluorides and Related CompoundsAdvanced Physical and Chemical Molecular Interactions

Electronic Structure ofFCenters: Saturation of the Electron Spin Resonance

A. M. Portis1953-09-01Physical Review

It is shown that the unusual observed saturation behavior of the microwave electron spin resonance associated with $F$ centers in KCl, NaCl, and KBr crystals can be accounted for if the overall width is ascribed to interaction between the $F$-center electrons and the nuclear magnetic moments of the ions adjacent to th…

Electron Spin Resonance StudiesAdvanced NMR Techniques and ApplicationsSolid-state spectroscopy and crystallography

Der schachtofen

Wilhelm Anselm1953-09-01Materiales de Construccion

No disponible

The Scintillation Process in Plastic Solid Solutions

Robert K. Swank、Warren L. Buck1953-08-15Physical Review

The scintillation process has been studied in a number of systems involving a solid solution of an organic fluor in polystyrene or polyvinyltoluene. It has been determined that direct excitation of the solute by the ionizing radiation contributes a negligible amount to the observed scintillation for the concentrations…

Lanthanide and Transition Metal ComplexesAdvanced MRI Techniques and ApplicationsRadiation Detection and Scintillator Technologies

Phase Transitions in Antiferroelectric PbHfO3

G. Shirane、R. Pepinsky1953-08-15Physical Review

Phase transitions in ceramic PbHf${\mathrm{O}}_{3}$ have been studied by dielectric and structural measurements. The dielectric constant is about 90 at room temperature, and its temperature dependence shows a small anomaly at 163\ifmmode^\circ\else\textdegree\fi{}C and a pronounced peak of 540 at 215\ifmmode^\circ\els…

Solid-state spectroscopy and crystallographyFerroelectric and Piezoelectric MaterialsMicrowave Dielectric Ceramics Synthesis

Theory of Complex Spectra

Sydney Meshkov1953-08-15Physical Review

A method for the calculation of the energy levels of an atom in terms of the experimentally observed energy levels of ions of higher ionization is developed. This method can be applied to a system of nonequivalent electrons, as well as equivalent electrons. The notion of fractional parentage is extended to systems of…

Electron and X-Ray Spectroscopy TechniquesAtomic and Molecular PhysicsMass Spectrometry Techniques and Applications

Electrical Properties of Titanium Dioxide Semiconductors

R. G. Breckenridge、W. R. Hosler1953-08-15OpenAlex

Measurements have been made of the electrical resistivity and Hall coefficient of semiconducting rutile both in the form of ceramics and single crystals from -190\ifmmode^\circ\else\textdegree\fi{}C to +500\ifmmode^\circ\else\textdegree\fi{}C. The samples were reduced in pure hydrogen for various times and temperature…

Transition Metal Oxide NanomaterialsElectronic and Structural Properties of OxidesChemical and Physical Properties of Materials

Quantitative Insolubility of Thorium Oxalate

H. L. Kall、Louis Gordon1953-08-01Analytical Chemistry

ADVERTISEMENT RETURN TO ISSUEPREVArticleNEXTQuantitative Insolubility of Thorium OxalateH. L. Kall and Louis GordonCite this: Anal. Chem. 1953, 25, 8, 1256–1258Publication Date (Print):August 1, 1953Publication History Published online1 May 2002Published inissue 1 August 1953https://pubs.acs.org/doi/10.1021/ac60080a03…

Advanced ceramic materials synthesisPowder Metallurgy Techniques and MaterialsCyclone Separators and Fluid Dynamics

GLASS FOR PHARMACEUTICAL PURPOSES

Violet Dimbleby1953-08-01Journal of Pharmacy and Pharmacology

Journal Article GLASS FOR PHARMACEUTICAL PURPOSES Get access Violet Dimbleby Violet Dimbleby Department of Glass Technology, University of Sheffield Search for other works by this author on: Oxford Academic Google Scholar Journal of Pharmacy and Pharmacology, Volume 5, Issue 1, August-September 1953, Pages 969–989, ht…

Clay minerals and soil interactionsGlass properties and applicationsHallucinations in medical conditions

Current Density Tables for Field Emission Theory

W. W. Dolan1953-08-01Physical Review

The Fowler-Nordheim field emission equation permits calculation of current density $J$ as a function of surface electric field $F$ and work function $\ensuremath{\varphi}$. Computed values of $J$ for $1.00\ifmmode\times\else\texttimes\fi{}{10}^{7}<F<1.00\ifmmode\times\else\texttimes\fi{}{10}^{8}$ v/cm and for $2…

Chemical and Physical Properties of MaterialsCarbon Nanotubes in CompositesMechanical and Optical Resonators

Optical Investigations of Impurity Levels in Silicon

E. Burstein、E. E. Bell、J. W. Davisson 等 4 位作者1953-08-01The Journal of Physical Chemistry

ADVERTISEMENT RETURN TO ISSUEPREVArticleNEXTOptical Investigations of Impurity Levels in SiliconE. Burstein, E. E. Bell, J. W. Davisson, and M. LaxCite this: J. Phys. Chem. 1953, 57, 8, 849–852Publication Date (Print):August 1, 1953Publication History Published online1 May 2002Published inissue 1 August 1953https://pu…

Glass properties and applicationsSilicon Nanostructures and PhotoluminescenceSilicon and Solar Cell Technologies

Second approximation calculations of mechanical and electrical relaxation and retardation distributions

M. L. Williams、John D. Ferry1953-08-01Journal of Polymer Science

Abstract Second approximation methods for calculating distribution functions of mechanical relaxation times from complex dynamic data have been improved so that calculations of adequate accuracy can be made over a wider range of variables than was previously possible. Analogous methods for calculating distribution fun…

Magnetic Properties and ApplicationsEarthquake Detection and AnalysisMagnetic Properties and Synthesis of Ferrites

Low Temperature Heat Capacities of Inorganic Solids. XVIII. Heat Capacity of Ammonium Chromium Alum1

Herrick L. Johnston、Jih-Heng Hu、William S. Horton1953-08-01Journal of the American Chemical Society

ADVERTISEMENT RETURN TO ISSUEPREVArticleNEXTLow Temperature Heat Capacities of Inorganic Solids. XVIII. Heat Capacity of Ammonium Chromium Alum1Herrick L. Johnston, Jih-Heng Hu, and William S. HortonCite this: J. Am. Chem. Soc. 1953, 75, 16, 3922–3924Publication Date (Print):August 1, 1953Publication History Published…

Chemical and Physical Properties in Aqueous SolutionsChemical Thermodynamics and Molecular StructureThermal and Kinetic Analysis