06.08.2013 Views

ja-en - IAEA

ja-en - IAEA

ja-en - IAEA

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

ELECTRON CHANNELING 304 ELECTRON GAS<br />

NT1 tin 100<br />

NT1 tin 102<br />

NT1 tin 106<br />

NT1 tin 107<br />

NT1 tin 108<br />

NT1 tin 109<br />

NT1 tin 110<br />

NT1 tin 111<br />

NT1 tin 113<br />

NT1 tin 99<br />

NT1 titanium 39<br />

NT1 titanium 44<br />

NT1 titanium 45<br />

NT1 tungst<strong>en</strong> 161<br />

NT1 tungst<strong>en</strong> 162<br />

NT1 tungst<strong>en</strong> 163<br />

NT1 tungst<strong>en</strong> 164<br />

NT1 tungst<strong>en</strong> 165<br />

NT1 tungst<strong>en</strong> 166<br />

NT1 tungst<strong>en</strong> 168<br />

NT1 tungst<strong>en</strong> 169<br />

NT1 tungst<strong>en</strong> 170<br />

NT1 tungst<strong>en</strong> 171<br />

NT1 tungst<strong>en</strong> 172<br />

NT1 tungst<strong>en</strong> 173<br />

NT1 tungst<strong>en</strong> 174<br />

NT1 tungst<strong>en</strong> 175<br />

NT1 tungst<strong>en</strong> 176<br />

NT1 tungst<strong>en</strong> 177<br />

NT1 tungst<strong>en</strong> 178<br />

NT1 tungst<strong>en</strong> 179<br />

NT1 tungst<strong>en</strong> 181<br />

NT1 uranium 228<br />

NT1 uranium 229<br />

NT1 uranium 231<br />

NT1 vanadium 42<br />

NT1 vanadium 45<br />

NT1 vanadium 47<br />

NT1 vanadium 48<br />

NT1 vanadium 49<br />

NT1 vanadium 50<br />

NT1 x<strong>en</strong>on 110<br />

NT1 x<strong>en</strong>on 111<br />

NT1 x<strong>en</strong>on 112<br />

NT1 x<strong>en</strong>on 113<br />

NT1 x<strong>en</strong>on 114<br />

NT1 x<strong>en</strong>on 115<br />

NT1 x<strong>en</strong>on 116<br />

NT1 x<strong>en</strong>on 117<br />

NT1 x<strong>en</strong>on 118<br />

NT1 x<strong>en</strong>on 119<br />

NT1 x<strong>en</strong>on 120<br />

NT1 x<strong>en</strong>on 121<br />

NT1 x<strong>en</strong>on 122<br />

NT1 x<strong>en</strong>on 123<br />

NT1 x<strong>en</strong>on 125<br />

NT1 x<strong>en</strong>on 127<br />

NT1 ytterbium 148<br />

NT1 ytterbium 149<br />

NT1 ytterbium 153<br />

NT1 ytterbium 155<br />

NT1 ytterbium 156<br />

NT1 ytterbium 157<br />

NT1 ytterbium 158<br />

NT1 ytterbium 159<br />

NT1 ytterbium 160<br />

NT1 ytterbium 161<br />

NT1 ytterbium 162<br />

NT1 ytterbium 163<br />

NT1 ytterbium 164<br />

NT1 ytterbium 165<br />

NT1 ytterbium 166<br />

NT1 ytterbium 167<br />

NT1 ytterbium 169<br />

NT1 yttrium 78<br />

NT1 yttrium 79<br />

NT1 yttrium 80<br />

NT1 yttrium 81<br />

NT1 yttrium 83<br />

NT1 yttrium 84<br />

NT1 yttrium 85<br />

NT1 yttrium 86<br />

NT1 yttrium 87<br />

NT1 yttrium 88<br />

NT1 zinc 55<br />

NT1 zinc 56<br />

NT1 zinc 60<br />

NT1 zinc 61<br />

NT1 zinc 62<br />

NT1 zinc 63<br />

NT1 zinc 65<br />

NT1 zirconium 78<br />

NT1 zirconium 79<br />

NT1 zirconium 84<br />

NT1 zirconium 85<br />

NT1 zirconium 86<br />

NT1 zirconium 87<br />

NT1 zirconium 88<br />

NT1 zirconium 89<br />

RT electron capture decay<br />

ELECTRON CHANNELING<br />

BT1 channeling<br />

RT crystal lattices<br />

ELECTRON COLLISIONS<br />

BT1 collisions<br />

NT1 electron-atom collisions<br />

NT1 electron-electron collisions<br />

NT1 electron-ion collisions<br />

NT1 electron-molecule collisions<br />

NT1 electron-positron collisions<br />

NT1 photon-electron collisions<br />

electron compounds<br />

2003-05-30<br />

USE intermetallic compounds<br />

electron configuration (atoms)<br />

USE electronic structure<br />

ELECTRON COOLING<br />

1975-08-22<br />

Reduction of particle beam oscillations by<br />

collisions with a low <strong>en</strong>ergy electron beam.<br />

BT1 beam cooling<br />

RT beam luminosity<br />

RT coulomb scattering<br />

RT electron beams<br />

RT proton beams<br />

ELECTRON CORRELATION<br />

In atomic models.<br />

UF correlation <strong>en</strong>ergy<br />

BT1 correlations<br />

RT atomic models<br />

RT d<strong>en</strong>sity functional method<br />

electron cyclotron masers<br />

INIS: 2000-04-12; ETDE: 1978-04-06<br />

USE microwave amplifiers<br />

ELECTRON CYCLOTRON-<br />

RESONANCE<br />

UF ecr<br />

*BT1 cyclotron resonance<br />

RT ecr heating<br />

RT ecr ion sources<br />

electron cyclotron-resonance curr<strong>en</strong>t<br />

drive<br />

INIS: 1999-07-26; ETDE: 1999-09-03<br />

USE ecr curr<strong>en</strong>t drive<br />

electron cyclotron-resonance heating<br />

USE ecr heating<br />

electron cyclotron-resonance ion<br />

sources<br />

1995-07-03<br />

USE ecr ion sources<br />

ELECTRON DENSITY<br />

UF d<strong>en</strong>sity (electron)<br />

RT curr<strong>en</strong>t d<strong>en</strong>sity<br />

RT electrons<br />

RT plasma eaters<br />

ELECTRON DETACHMENT<br />

A(1 minus) yields A(neutral) + e.<br />

RT electron loss<br />

RT ionization<br />

ELECTRON DETECTION<br />

*BT1 charged particle detection<br />

RT beta detection<br />

RT beta spectrometers<br />

RT electron dosimetry<br />

RT electron spectrometers<br />

RT positron detection<br />

electron-deuteron interactions<br />

(Prior to March 1996 this was a valid ETDE<br />

descriptor.)<br />

USE electron-neutron interactions<br />

USE electron-proton interactions<br />

ELECTRON DIFFRACTION<br />

UF diffraction (electron)<br />

UF leed<br />

UF low <strong>en</strong>ergy electron diffraction<br />

*BT1 diffraction<br />

RT crystallography<br />

RT diffuse scattering<br />

RT kikuchi lines<br />

electron donor<br />

USE binding <strong>en</strong>ergy<br />

USE electrons<br />

USE val<strong>en</strong>ce<br />

ELECTRON DOSIMETRY<br />

BT1 dosimetry<br />

RT electron detection<br />

ELECTRON DRIFT<br />

UF drift (electron)<br />

RT ambipolar diffusion<br />

RT electrons<br />

ELECTRON-ELECTRON<br />

COLLISIONS<br />

*BT1 electron collisions<br />

ELECTRON-ELECTRON COUPLING<br />

1998-10-23<br />

BT1 coupling<br />

RT superconductivity<br />

electron-electron double resonance<br />

1993-11-05<br />

USE eldor<br />

ELECTRON-ELECTRON<br />

INTERACTIONS<br />

*BT1 lepton-lepton interactions<br />

ELECTRON EMISSION<br />

UF emission (electron)<br />

BT1 emission<br />

NT1 photoelectric emission<br />

RT auger effect<br />

RT electron sources<br />

RT field emission<br />

RT internal electromagnetic pulses<br />

RT thermionic emission<br />

RT work functions

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!