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isotope analysis (quantitative) 533 ISOTOPE SEPARATION PLANTS<br />

isotope analysis (quantitative)<br />

1995-11-10<br />

USE isotope ratio<br />

ISOTOPE APPLICATIONS<br />

NT1 tracer techniques<br />

NT2 dual-isotope subtraction technique<br />

NT2 isotope dilution<br />

NT2 labelled pool techniques<br />

NT2 radioactive tracer logging<br />

NT2 radioimmunodetection<br />

NT3 radioimmunoassay<br />

NT3 radioimmunoscintigraphy<br />

NT2 radioreceptor assay<br />

RT labelling<br />

RT radiocolloids<br />

isotope composition<br />

USE isotope ratio<br />

isotope composition (quantitative)<br />

USE isotope ratio<br />

ISOTOPE DATING<br />

UF argon method<br />

UF helium method<br />

UF lead method<br />

UF radiocarbon dating<br />

BT1 age estimation<br />

RT carbon 14<br />

ISOTOPE DILUTION<br />

*BT1 tracer techniques<br />

RT dilution<br />

RT quantitative chemical analysis<br />

RT substoichiometry<br />

ISOTOPE EFFECTS<br />

UF isotopic effects<br />

RT isotopes<br />

RT isotopic exchange<br />

ISOTOPE ENRICHED MATERIALS<br />

UF <strong>en</strong>riched materials (isotopes)<br />

BT1 materials<br />

NT1 <strong>en</strong>riched uranium<br />

NT2 highly <strong>en</strong>riched uranium<br />

NT2 moderately <strong>en</strong>riched uranium<br />

NT2 slightly <strong>en</strong>riched uranium<br />

RT gas c<strong>en</strong>trifugation<br />

RT isotope separation<br />

RT isotopic exchange<br />

isotope <strong>en</strong>richm<strong>en</strong>t<br />

USE isotope separation<br />

isotope exchange<br />

USE isotopic exchange<br />

ISOTOPE PRODUCTION<br />

UF production (isotope)<br />

RT accelerators<br />

RT isotope production reactors<br />

RT isotopes<br />

RT production<br />

RT radioisotope g<strong>en</strong>erators<br />

RT transmutation<br />

ISOTOPE PRODUCTION REACTORS<br />

1995-01-10<br />

For the production of radioisotopes to be used<br />

in medicine, agriculture, industry, etc.; for the<br />

production of fissile materials, see also<br />

PRODUCTION REACTORS, and for the<br />

production of tritium, see also TRITIUM<br />

PRODUCTION REACTORS.<br />

*BT1 irradiation reactors<br />

NT1 afrri reactor<br />

NT1 ai-l-77 reactor<br />

NT1 alrr reactor<br />

NT1 apsara reactor<br />

NT1 astra reactor<br />

NT1 atpr reactor<br />

NT1 bepo reactor<br />

NT1 ber-2 reactor<br />

NT1 bgrr reactor<br />

NT1 brr reactor<br />

NT1 byu l-77 reactor<br />

NT1 celestin reactor<br />

NT1 cesnef reactor<br />

NT1 cirus reactor<br />

NT1 consort-2 reactor<br />

NT1 cp-5 reactor<br />

NT1 dhruva reactor<br />

NT1 dido reactor<br />

NT1 dmtr reactor<br />

NT1 dow triga-mk-1 reactor<br />

NT1 dr-2 reactor<br />

NT1 dr-3 reactor<br />

NT1 el-1 reactor<br />

NT1 el-2 reactor<br />

NT1 el-3 reactor<br />

NT1 etr reactor<br />

NT1 ewa reactor<br />

NT1 fir-1 reactor<br />

NT1 fnr reactor<br />

NT1 fr-2 reactor<br />

NT1 frf reactor<br />

NT1 frg-2 reactor<br />

NT1 frj-2 reactor<br />

NT1 getr reactor<br />

NT1 gtrr reactor<br />

NT1 gulf triga-mk-3 reactor<br />

NT1 hanaro reactor<br />

NT1 hfir reactor<br />

NT1 hifar reactor<br />

NT1 htr reactor<br />

NT1 hwrr reactor<br />

NT1 ian-r1 reactor<br />

NT1 irt-c reactor<br />

NT1 irt-f reactor<br />

NT1 irt reactor<br />

NT1 irt-sofia reactor<br />

NT1 ispra-1 reactor<br />

NT1 jeep-2 reactor<br />

NT1 jrr-1 reactor<br />

NT1 jrr-3 reactor<br />

NT1 jrr-3m reactor<br />

NT1 kuhfr reactor<br />

NT1 lptr reactor<br />

NT1 maria reactor<br />

NT1 melusine-1 reactor<br />

NT1 mnr reactor<br />

NT1 mrr reactor<br />

NT1 nru reactor<br />

NT1 nrx reactor<br />

NT1 opal reactor<br />

NT1 ostr reactor<br />

NT1 pulstar-buffalo reactor<br />

NT1 r-1 reactor<br />

NT1 r-a reactor<br />

NT1 r2-0 reactor<br />

NT1 rtp reactor<br />

NT1 rts-1 reactor<br />

NT1 siloe reactor<br />

NT1 slowpoke type reactors<br />

NT2 slowpoke-alberta reactor<br />

NT2 slowpoke-dalhousie reactor<br />

NT2 slowpoke-montreal reactor<br />

NT2 slowpoke-ottawa reactor<br />

NT2 slowpoke-toronto reactor<br />

NT2 slowpoke-wnre reactor<br />

NT1 taiwan research reactor<br />

NT1 thetis reactor<br />

NT1 thor reactor<br />

NT1 tr-1 reactor<br />

NT1 trico reactor<br />

NT1 triga-1-california reactor<br />

NT1 triga-1-hanover reactor<br />

NT1 triga-1-michigan reactor<br />

NT1 triga-2-bandung reactor<br />

NT1 triga-2-bangladesh reactor<br />

NT1 triga-2-dalat reactor<br />

NT1 triga-2-illinois reactor<br />

NT1 triga-2-kansas reactor<br />

NT1 triga-2-ljubl<strong>ja</strong>na reactor<br />

NT1 triga-2-mainz reactor<br />

NT1 triga-2-musashi reactor<br />

NT1 triga-2-pavia reactor<br />

NT1 triga-2-pitesti reactor<br />

NT1 triga-2 reactor<br />

NT1 triga-2-rikkyo reactor<br />

NT1 triga-2-rome reactor<br />

NT1 triga-2-seoul reactor<br />

NT1 triga-2-vi<strong>en</strong>na reactor<br />

NT1 triga-3-munich reactor<br />

NT1 triga-3-salazar reactor<br />

NT1 triga-3-seoul reactor<br />

NT1 triga-brazil reactor<br />

NT1 triga-texas reactor<br />

NT1 triga-veterans reactor<br />

NT1 tz1 reactor<br />

NT1 ucbrr reactor<br />

NT1 uftr reactor<br />

NT1 uknr reactor<br />

NT1 uvar reactor<br />

NT1 uwnr reactor<br />

NT1 wtr reactor<br />

NT1 wwr-2 reactor<br />

NT1 wwr-m-kiev reactor<br />

NT1 wwr-m-l<strong>en</strong>ingrad reactor<br />

NT1 wwr-s-budapest reactor<br />

NT1 wwr-s-moscow reactor<br />

NT1 wwr-sm ross<strong>en</strong>dorf reactor<br />

NT1 x-10 reactor<br />

RT isotope production<br />

ISOTOPE RATIO<br />

UF abundance (isotopic)<br />

UF isotope analysis (quantitative)<br />

UF isotope composition<br />

UF isotope composition (quantitative)<br />

UF isotopic analysis (quantitative)<br />

UF isotopic composition (quantitative)<br />

BT1 dim<strong>en</strong>sionless numbers<br />

RT abundance<br />

RT elem<strong>en</strong>t abundance<br />

RT isotopes<br />

RT natural occurr<strong>en</strong>ce<br />

ISOTOPE SEPARATION<br />

For separation of isotopes of the same elem<strong>en</strong>t<br />

only.<br />

UF column separation (isotopes)<br />

UF depletion (isotopic)<br />

UF <strong>en</strong>richm<strong>en</strong>t (isotopic)<br />

UF <strong>en</strong>richm<strong>en</strong>t (uranium)<br />

UF isotope <strong>en</strong>richm<strong>en</strong>t<br />

UF isotopic separation<br />

UF uranium <strong>en</strong>richm<strong>en</strong>t<br />

BT1 separation processes<br />

NT1 dual temperature process<br />

NT1 electromagnetic isotope separation<br />

NT1 gas c<strong>en</strong>trifugation<br />

NT1 gaseous diffusion process<br />

NT1 laser isotope separation<br />

NT1 separation nozzle method<br />

RT c<strong>en</strong>trifugation<br />

RT electromagnetic isotope separators<br />

RT <strong>en</strong>richm<strong>en</strong>t<br />

RT gas c<strong>en</strong>trifuges<br />

RT heavy water plants<br />

RT isotope <strong>en</strong>riched materials<br />

RT isotope separators<br />

RT isotopes<br />

RT plasma c<strong>en</strong>trifuges<br />

RT radioisotope g<strong>en</strong>erators<br />

RT thermal diffusion<br />

RT ultrac<strong>en</strong>trifuges

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