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ELECTROMAGNETIC ISOTOPE SEPARATION 299 ELECTRON BEAM TARGETS<br />

ELECTROMAGNETIC ISOTOPE<br />

SEPARATION<br />

1975-09-25<br />

The process.<br />

*BT1 isotope separation<br />

RT electromagnetic isotope separators<br />

ELECTROMAGNETIC ISOTOPE<br />

SEPARATORS<br />

1993-11-05<br />

UF calutrons<br />

NT1 tristan separator<br />

RT electromagnetic isotope separation<br />

RT isotope separation<br />

ELECTROMAGNETIC LENSES<br />

UF plasma l<strong>en</strong>s<br />

BT1 l<strong>en</strong>ses<br />

RT <strong>en</strong>d effects<br />

RT magnetic analyzers<br />

RT magnets<br />

ELECTROMAGNETIC PARTICLE<br />

DECAY<br />

INIS: 1978-02-23; ETDE: 1978-04-28<br />

*BT1 particle decay<br />

RT electromagnetic interactions<br />

RT radiative decay<br />

ELECTROMAGNETIC PULSES<br />

UF emp<br />

*BT1 electromagnetic radiation<br />

BT1 pulses<br />

NT1 internal electromagnetic pulses<br />

RT nuclear explosions<br />

ELECTROMAGNETIC PUMPS<br />

*BT1 pumps<br />

ELECTROMAGNETIC RADIATION<br />

UF electromagnetic waves<br />

BT1 radiations<br />

NT1 auroral hiss<br />

NT1 blackbody radiation<br />

NT1 bremsstrahlung<br />

NT2 cyclotron radiation<br />

NT2 internal bremsstrahlung<br />

NT2 ondulator radiation<br />

NT2 synchrotron radiation<br />

NT1 cher<strong>en</strong>kov radiation<br />

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

NT1 electromagnetic pulses<br />

NT2 internal electromagnetic pulses<br />

NT1 gamma radiation<br />

NT2 delayed gamma radiation<br />

NT2 prompt gamma radiation<br />

NT1 helicon waves<br />

NT1 infrared radiation<br />

NT2 far infrared radiation<br />

NT2 intermediate infrared radiation<br />

NT2 near infrared radiation<br />

NT1 laser radiation<br />

NT1 microwave radiation<br />

NT2 relict radiation<br />

NT1 monochromatic radiation<br />

NT1 multipole radiation<br />

NT1 radiowave radiation<br />

NT2 long wave radiation<br />

NT2 medium wave radiation<br />

NT2 radio noise<br />

NT3 atmospherics<br />

NT3 whistlers<br />

NT2 radioecho<br />

NT2 short wave radiation<br />

NT2 solar radio bursts<br />

NT2 solar radiowave radiation<br />

NT1 thermal radiation<br />

NT1 transition radiation<br />

NT1 ultralow frequ<strong>en</strong>cy radiation<br />

NT1 ultraviolet radiation<br />

NT2 extreme ultraviolet radiation<br />

NT2 far ultraviolet radiation<br />

NT2 near ultraviolet radiation<br />

NT1 visible radiation<br />

NT1 x radiation<br />

NT2 hard x radiation<br />

NT2 soft x radiation<br />

NT1 zodiacal light<br />

RT faraday effect<br />

RT frequ<strong>en</strong>cy mixing<br />

RT harmonic g<strong>en</strong>eration<br />

RT photons<br />

RT radiation pressure<br />

RT signal distortion<br />

RT standing waves<br />

RT travelling waves<br />

RT wave forms<br />

ELECTROMAGNETIC SURVEYS<br />

1981-02-27<br />

A subgroup of methods of electrical<br />

exploration based on the measurem<strong>en</strong>t of<br />

alternating magnetic fields associated with<br />

curr<strong>en</strong>ts artificially or naturally maintained in<br />

the subsurface.<br />

*BT1 electrical surveys<br />

NT1 magnetotelluric surveys<br />

RT geothermal exploration<br />

ELECTROMAGNETIC TESTING<br />

*BT1 nondestructive testing<br />

NT1 eddy curr<strong>en</strong>t testing<br />

electromagnetic transitions<br />

USE <strong>en</strong>ergy-level transitions<br />

electromagnetic waves<br />

USE electromagnetic radiation<br />

ELECTROMAGNETISM<br />

BT1 magnetism<br />

RT continuity equations<br />

RT electrodynamics<br />

RT kaluza-klein theory<br />

electromagnetostriction<br />

USE magnetostriction<br />

ELECTROMAGNETS<br />

*BT1 electrical equipm<strong>en</strong>t<br />

*BT1 magnets<br />

NT1 superconducting magnets<br />

RT electric coils<br />

RT magnetic properties<br />

ELECTROMECHANICS<br />

BT1 mechanics<br />

ELECTROMETALLURGY<br />

UF electrowinning<br />

BT1 metallurgy<br />

RT electrochemistry<br />

RT electrodeposition<br />

RT electrolysis<br />

RT electrorefining<br />

RT extractive metallurgy<br />

ELECTROMETERS<br />

*BT1 electric measuring instrum<strong>en</strong>ts<br />

RT cond<strong>en</strong>ser ionization chambers<br />

electromigration<br />

USE electrophoresis<br />

ELECTROMOTIVE FORCE<br />

1999-06-30<br />

A force capable of maintaining a pot<strong>en</strong>tial<br />

differ<strong>en</strong>ce, and thus a curr<strong>en</strong>t, within a circuit.<br />

it can be established by chemical action or by<br />

mechanical work.<br />

UF emf<br />

RT electric batteries<br />

RT electric pot<strong>en</strong>tial<br />

RT electrochemistry<br />

electron acceptor<br />

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

USE electrons<br />

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

electron acoustic waves<br />

INIS: 1984-04-04; ETDE: 1984-05-10<br />

USE electron plasma waves<br />

electron affinity<br />

INIS: 2000-04-12; ETDE: 1979-04-11<br />

USE affinity<br />

ELECTRON ANTINEUTRINOS<br />

*BT1 antineutrinos<br />

*BT1 electron neutrinos<br />

ELECTRON-ATOM COLLISIONS<br />

*BT1 atom collisions<br />

*BT1 electron collisions<br />

ELECTRON ATTACHMENT<br />

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

RT electron capture<br />

RT ionization<br />

ELECTRON BEAM FURNACES<br />

BT1 furnaces<br />

RT vacuum furnaces<br />

ELECTRON BEAM FUSION<br />

ACCELERATOR<br />

INIS: 1981-02-27; ETDE: 1979-07-24<br />

Electron beam accelerator at Sandia<br />

Laboratories to be used for inertial<br />

confinem<strong>en</strong>t fusion experim<strong>en</strong>ts.<br />

UF ebfa<br />

RT electron beam fusion reactors<br />

RT inertial confinem<strong>en</strong>t<br />

RT particle beam fusion accelerator<br />

ELECTRON BEAM FUSION<br />

REACTORS<br />

INIS: 1982-11-29; ETDE: 1983-02-09<br />

UF e-beam type reactors<br />

UF electron beam type reactors<br />

BT1 thermonuclear reactors<br />

RT electron beam fusion accelerator<br />

RT icf devices<br />

RT inertial confinem<strong>en</strong>t<br />

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

INIS: 2000-04-12; ETDE: 1983-03-23<br />

USE scanning electron microscopy<br />

ELECTRON BEAM INJECTION<br />

BT1 beam injection<br />

ELECTRON BEAM ION SOURCES<br />

INIS: 1976-08-17; ETDE: 1976-05-13<br />

Ion source creating high charge states by<br />

sequ<strong>en</strong>tial electron impact ionization.<br />

UF ebis<br />

BT1 ion sources<br />

RT electron beams<br />

ELECTRON BEAM MACHINING<br />

BT1 machining<br />

ELECTRON BEAM MELTING<br />

*BT1 melting<br />

ELECTRON BEAM PUMPING<br />

INIS: 1993-07-12; ETDE: 1981-08-21<br />

*BT1 electrical pumping<br />

RT excitation<br />

RT lasers<br />

RT stimulated emission

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