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SCANDIUM SELENIDES 1037 SCENEDESMUS<br />

SCANDIUM SELENIDES<br />

INIS: 1996-07-23; ETDE: 1979-02-23<br />

(From July 1996 to November 2007<br />

SCANDIUM COMPOUNDS + SELENIDES<br />

was used for this concept.)<br />

*BT1 scandium compounds<br />

*BT1 sel<strong>en</strong>ides<br />

SCANDIUM SILICATES<br />

*BT1 scandium compounds<br />

*BT1 silicates<br />

SCANDIUM SILICIDES<br />

INIS: 1978-05-19; ETDE: 1978-03-03<br />

*BT1 scandium compounds<br />

*BT1 silicides<br />

SCANDIUM SULFATES<br />

*BT1 scandium compounds<br />

*BT1 sulfates<br />

SCANDIUM SULFIDES<br />

*BT1 scandium compounds<br />

*BT1 sulfides<br />

SCANDIUM TUNGSTATES<br />

INIS: 1982-06-09; ETDE: 1982-07-08<br />

*BT1 scandium compounds<br />

*BT1 tungstates<br />

scanners (beam)<br />

INIS: 1984-04-04; ETDE: 2002-06-13<br />

USE beam scanners<br />

scanners (image)<br />

USE image scanners<br />

scanners (optical)<br />

INIS: 2000-04-12; ETDE: 1977-04-12<br />

(Prior to March 1997 OPTICAL SCANNERS<br />

was used for this concept in ETDE.)<br />

USE image scanners<br />

USE optical equipm<strong>en</strong>t<br />

scanners (radioisotope)<br />

INIS: 1984-04-04; ETDE: 2002-06-13<br />

USE radioisotope scanners<br />

scanning (electron)<br />

USE electron scanning<br />

scanning (fuel)<br />

INIS: 1976-09-06; ETDE: 2002-06-13<br />

USE fuel scanning<br />

scanning (radioisotope)<br />

USE radioisotope scanning<br />

scanning acoustic microscopy<br />

INIS: 1993-04-07; ETDE: 2002-06-13<br />

USE acoustic microscopy<br />

SCANNING ELECTRON<br />

MICROSCOPY<br />

INIS: 1982-12-07; ETDE: 1979-11-23<br />

(Prior to January 1983 this concept was<br />

indexed by coordination of ELECTRON<br />

MICROSCOPY and ELECTRON<br />

SCANNING.)<br />

UF ebic<br />

UF electron beam induced curr<strong>en</strong>t<br />

UF sem (microscopy)<br />

*BT1 electron microscopy<br />

SCANNING LIGHT MICROSCOPY<br />

INIS: 1994-07-14; ETDE: 1983-03-23<br />

Means of spatial mapping of the optical or<br />

electrical properties of deep <strong>en</strong>ergy levels in<br />

semiconductors.<br />

UF slm<br />

*BT1 optical microscopy<br />

RT photocurr<strong>en</strong>ts<br />

RT photoluminesc<strong>en</strong>ce<br />

RT reflectivity<br />

SCANNING MEASURING<br />

PROJECTORS<br />

UF franck<strong>en</strong>stein<br />

UF projectors (scanning)<br />

UF smp devices<br />

*BT1 digitizers<br />

SCANNING TUNNELING<br />

MICROSCOPY<br />

INIS: 1999-07-26; ETDE: 1999-09-09<br />

Technique used to study surface properties of<br />

materials from atomic to micron level. A<br />

pot<strong>en</strong>tial differ<strong>en</strong>ce is applied betwe<strong>en</strong> a sharp<br />

metallic tip and a surface; electrons tunnel<br />

across the gap betwe<strong>en</strong> them.<br />

UF stm<br />

BT1 microscopy<br />

RT atomic force microscopy<br />

SCARABEE REACTOR<br />

1999-09-24<br />

Nuclear Protection and Safety Institute, CEA<br />

St. Paul Lez Durance, France.<br />

*BT1 pool type reactors<br />

*BT1 research reactors<br />

*BT1 thermal reactors<br />

SCATTERING<br />

1996-07-18<br />

(Prior to March 1997 KHURI<br />

REPRESENTATION and HAYWOOD<br />

MODEL were valid ETDE descriptors; prior<br />

to August 1996 ZEMACH-GLAUBER<br />

FORMALISM was a valid ETDE descriptor.)<br />

SF khuri repres<strong>en</strong>tation<br />

SF zemach-glauber formalism<br />

NT1 backscattering<br />

NT1 coher<strong>en</strong>t scattering<br />

NT2 brillouin effect<br />

NT2 diffraction<br />

NT3 atomic beam diffraction<br />

NT3 diffuse scattering<br />

NT3 electron diffraction<br />

NT3 neutron diffraction<br />

NT3 x-ray diffraction<br />

NT2 rayleigh scattering<br />

NT1 elastic scattering<br />

NT2 bhabha scattering<br />

NT2 compton effect<br />

NT2 coulomb scattering<br />

NT2 moeller scattering<br />

NT2 mott scattering<br />

NT2 pot<strong>en</strong>tial scattering<br />

NT2 rutherford scattering<br />

NT2 wigner scattering<br />

NT1 incoher<strong>en</strong>t scattering<br />

NT1 inelastic scattering<br />

NT2 deep inelastic scattering<br />

NT2 delbrueck scattering<br />

NT2 resonance scattering<br />

NT2 thomson scattering<br />

NT1 light scattering<br />

NT1 multiple scattering<br />

NT1 proximity scattering<br />

NT1 quasi-elastic scattering<br />

NT1 rescattering<br />

NT1 small angle scattering<br />

RT adiabatic approximation<br />

RT binary <strong>en</strong>counter method<br />

RT blank<strong>en</strong>becler-sugar equations<br />

RT born approximation<br />

RT born-opp<strong>en</strong>heimer approximation<br />

RT brinkman-kramers approximation<br />

RT buildup<br />

RT c<strong>en</strong>ter-of-mass system<br />

RT collisions<br />

RT conspiracy relations<br />

RT coupled channel born approximation<br />

RT detailed balance principle<br />

RT diabatic approximation<br />

RT dispersion relations<br />

RT dwba<br />

RT effective range theory<br />

RT four mom<strong>en</strong>tum transfer<br />

RT fsc approximation<br />

RT glauber theory<br />

RT gribov-lipatov relation<br />

RT impact parameter<br />

RT impulse approximation<br />

RT incid<strong>en</strong>ce angle<br />

RT interactions<br />

RT inverse scattering problem<br />

RT ion scattering analysis<br />

RT jost function<br />

RT laboratory system<br />

RT landau curves<br />

RT lane-robson theory<br />

RT levinson theorem<br />

RT nuclear reactions<br />

RT partial waves<br />

RT perturbation theory<br />

RT phase shift<br />

RT polarization-asymmetry ratio<br />

RT radiation scattering analysis<br />

RT raman effect<br />

RT resonating-group method<br />

RT s matrix<br />

RT scattering amplitudes<br />

RT scattering l<strong>en</strong>gths<br />

RT semiclassical approximation<br />

RT shadow effect<br />

RT shielding<br />

RT spectroscopic factors<br />

RT stray radiation<br />

RT targets<br />

RT threshold <strong>en</strong>ergy<br />

RT transport theory<br />

RT wkb approximation<br />

SCATTERING AMPLITUDES<br />

BT1 amplitudes<br />

RT abfst equation<br />

RT argand diagrams<br />

RT crossing symmetry<br />

RT dispersion relations<br />

RT duality<br />

RT eikonal approximation<br />

RT linear absorption models<br />

RT partial waves<br />

RT quasipot<strong>en</strong>tial equation<br />

RT regge poles<br />

RT s matrix<br />

RT scattering<br />

RT singularity<br />

RT v<strong>en</strong>eziano model<br />

SCATTERING LENGTHS<br />

1999-07-20<br />

*BT1 l<strong>en</strong>gth<br />

RT scattering<br />

SCATTERPLOTS<br />

Two-dim<strong>en</strong>sional projections of<br />

multidim<strong>en</strong>sional data.<br />

*BT1 diagrams<br />

NT1 argand diagrams<br />

NT1 dalitz plot<br />

NT1 prism plot<br />

SCAVENGING<br />

RT hot atom chemistry<br />

RT radiation chemistry<br />

RT radicals<br />

scav<strong>en</strong>ging (atmospheric)<br />

USE washout<br />

SCENEDESMUS<br />

*BT1 chlorophycota

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