Skip to main content
Log in

Bibliography section

  • Published:
Journal of Radioanalytical Chemistry Aims and scope Submit manuscript

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

1. Activation analysis

  • Abashin, E. G., Smakhtin, L. A., Gorshkov, V. V.: Determination of halogens in lithium fluoride.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 133–40 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 196.

    Google Scholar 

  • Abbosov, O., Starchik, L. P.: Activation analysis with neutrons from an electron linear accelerator of 4.2 MeV energy.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 194–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 123.

    Google Scholar 

  • Abbosov, O., Abrams, I. A., Pelekis, L. L., Starchik, L. P. (Inst. of Phys., Riga): Neutron activation method for the determination of hafnium in zirconium concentrates and ores.Latv. PSR Zinat. Akad. Vestis, Fiz. Teh. Zinat. Ser. 4 (1971) 20–3 (in Russian), see alsoNucl. Sci. Abstr. 26 (1972) No. 4245.

    Google Scholar 

  • Abdullaev, A. A., Anishchenko, Yu. M., Zhuk, L. I., Ganina, S. A., Activation analysis in hydrological and hydrotechnical investigations.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 64–6 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 222.

    Google Scholar 

  • Agievskii, D. A., Miranskii, I. A., Tushkova, R. Ya.: Radioactivation analysis of impurities in silicon fiber crystals.Sb. Aktivats. analiz, Fan, Tashkent, 1971. 102–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 193.

    Google Scholar 

  • Albu-Yaron, A., Amiel, S. (Nucl. Chem. Dept., Soreq Nucl. Res. Centre, Yavne, Israel): Instrumental neutron activation analysis of gunpowder residues.J. Radioanal. Chem. 11 (1972) 123–32.

    CAS  Google Scholar 

  • Aleksandrova, G. I., Demidov, A. M., Borisov, G. I., Zakharov, E. A., Sukhov, G. V., Shmanenkova, G. I., Shchelkova, V. P.: Determination of oxygen and carbon in some pure materials by3He activation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 210–2 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 194.

    Google Scholar 

  • Aliev, V. I., Drynkin, V. I., Kurochkin, S. S., Okunev, V. I., Eldashev, V. V.: On the use of instrument “Ekstremum” in activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 256–9 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. D 43.

    Google Scholar 

  • Andreev, A. V., Pronman, I. M.: Neutron activation method for the determination of oxygen in semi-conductor metals with a sensitivity of 1·10−4 % w/w.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 171–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 162.

    Google Scholar 

  • Andreev, A. V., Antonov, E. I., Barit, I. Ya., Grigorev, Yu. A., Kudinov, B. S., Pronman, I. M., Tustanovskii, V. T.: Plan of the automatic industrial apparatus constructed by “Giredmet” for the rapid determination of oxygen in different samples by neutron activation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 337–41 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 42.

    Google Scholar 

  • Anon. (Akad. Nauk SSSR, Goskom. po Ispolz. Atomm. Energii SSSR, Akad. Nauk UzSSR, Inst. Yadern. Fiz., UzSSR): Activation analysis. Fan, Tashkent, 1971 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. G 39.

  • Anon. (Inst. für Anorg. Chem. und Kernchem., Mainz Univ., GFR): Annual Report 1970. BMBW-FBK-71-12, Oct. 1971, 131 p. (in German), see alsoNucl. Sci. Abstr. 26 (1972) No. 8878.

  • Anon: Nuclear methods in environmental research. Book of abstracts. ANS (American Nuclear Society, Hinsdale, Ill.) Topical Meeting on Nuclear Methods in Environmental Research, Columbia, Mo., USA, Aug. 23–24, 1971, 54 p. AED-Conf-71-331-000.

  • Anon: Seminar “Aktivierungsanalyse” der Deutschen Atomkommission, Bad Godesberg, Neuherberg/Munich, F.R.G. May 10, 1971, 26 p. AED-Conf-71-091-000.

  • Aruscavage, P. J., Millard, H. T. Jr. (United States Dept. of the Interior, Geological Survey, Denver, Colorado, USA): A neutron activation analysis procedure for the determination of uranium, thorium and potassium in geologic samples.J. Radioanal. Chem. 11 (1972) 67–84.

    CAS  Google Scholar 

  • Aviles, B. M., Pedersen, K. B. (Puerto Rico Nucl. Center, Mayaguez): Activation analysis as a method for tracing suspended sediments. PRNC-142, 1969, see alsoNucl. Sci. Abstr. 26 (1972) No. 4217.

  • Babaev, A., Narzikulov, M., Khaidarov, A.: Determination of tantalum in minerals by the neutron activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 117–91 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 118.

    Google Scholar 

  • Barit, I. Ya., Gofman, V. I., Duev, L. T., Katsaurov, L. N., Kuznetsov, A. N., Primenko, G. I., Pronman, I. M., Strizhak, V. I., Tustanovskii, V. T., Neutron generator with mixed deuteron-tritium beams for activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 279–83 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. D 41.

    Google Scholar 

  • Belov, A. F., Vartanov, N. A., Egiazarov, B. G., Zyubko, V. A., Karpukhin, O. A.: Elaboration of instrumentation for instrumental neutron activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 251–6 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. D 36.

    Google Scholar 

  • Belyakov, M. A., Anchevskii, E. V.: On the possibility of eliminating the influence of humidity to the precision of the neutron activation analysis of large samples using radioisotope sources.Sb. Aktivats. analiz. Fan, Tashkent, 1971, 79–82 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 122.

    Google Scholar 

  • Bhagat, S. K., Funk, W. H., Filby, R. H., Shah, K. R. (Washington State Univ., Pullman, USA): Trace element analysis of environmental samples by neutron activation method.J. Water Pollut. Contr. Fed. 43 (1971) 2414–23, see alsoNucl. Sci. Abstr. 26 (1972) No. 8769.

    CAS  Google Scholar 

  • Blake, K. R., Ashe, J. H., Berry, P. F., Nelson, J. B. (Nucl. Chicago Corp., Austin, Tex.): Automatic industrial activation analysis system for slurries using a radioisotope neutron source.Isotop. Radiat. Technol. 9 (1971–1972) 167–72, see alsoNucl. Sci. Abstr. 26 (1972) No. 8762.

    CAS  Google Scholar 

  • Blankova, T. N., Obolenskii, A. A., Rusyaev, V. G., Determination of the isotope ratio196Hg/204Hg by neutron activation.Sb. Aktivats. analiz. Fan, Tashkent, 1971, 151–5 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. B 945.

    Google Scholar 

  • Blankov, E. B., Chernetskaya, N. A.: The use of graphical methods for the decomposition of decay curves of induced activities.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 33–7 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No G 36.

    Google Scholar 

  • Blokhin, V. I., Lastov, A. I., Moseev, L. I.: Radioactivation analysis of metallic sodium for oxygen, carbon and nitrogen traces.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 219–25 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G. 164.

    Google Scholar 

  • Bontemps, A., Monnier, J., Bruel, M. (Commissariat à l’Energie Atomique, Grenoble, France): Microanalysis by nuclear reaction. Application to semiconductors. CEA-CONF-1852. Aug. 1971, 11 p., CONF-710932-1 (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 4213.

  • Botvina, A. Ya., Sokolovskii, V. V., Faizrakhmanova, N. R.: Determination of nitrogen and fluorine with fast neutrons.Sb. Aktivats. analiz., Fan., Tashkent, 1971, 189–91 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G. 126.

    Google Scholar 

  • Botvina, A. Ya., Sokolovskii, V. V., Faizrakhmanova, N. R.: Determination of oxygen in copper and organic materials using a neutron generator.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 193–4 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G. 165.

    Google Scholar 

  • Brovtsin, V. K., Vitozhents, G. Ch., Sulin, V. V., Shornikov, S. I.: On the use of betatron for the neutron activation analysis of rock samples.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 70–3 (in Russian), see alsoRef. Zh. Khim. 8 (1972). No. G. 132.

    Google Scholar 

  • Brovtsin, V. K., Vitozhents, G. Ch., Sulin, V. V., Shorinkov, S. I.: Complex gamma and neutron activation analysis of poly-metallic ores using betatron.Sb. Aktivats. analiz, Fan, Tashkent, 1971. 73–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 124.

    Google Scholar 

  • Brune, D., Arroyo, A. (Inst. de Asuntos Nucleares, Bogota): Determination of nitrogen content of grains by means of fast neutron activation analysis.Anal. Chim. Acta 56 (1971) 473–6, see alsoNucl. Sci. Abstr. 26 (1972) No. 4255.

    Article  CAS  Google Scholar 

  • Brunfelt, A. O., Steinnes, E. (Univ. of Oslo): Neutron activation scheme developed for the determination of 42 elements in lunar materials.Talanta 18 (1971) 1197–208, see alsoNucl Sci. Abstr. 26 (1972) No. 8777.

    Article  CAS  Google Scholar 

  • Bujdosó, E., Miskei, M. (Res. Inst. for Non-Ferrous Metals, Budapest, Hungary): Determination of the iron content of aluminate liquors from the bayer alumina process by neutron activation analysis.J. Radioanal. Chem. 11 (1972) 99–104.

    Google Scholar 

  • Burrill, A. E., (Accelerators, Inc., Austin, Tex., USA): Practical applications for particle accelerators in research, medicine, and industry. ASME (American Society of Mechanical Engineers, New York, N. Y.)1st National Congress on Pressure Vessels and Piping, San Francisco, Calif, USA, May 10–12, 1971, 11 p. AED-Conf-71-106-003.

  • Caldwell, R. L. (Mobil Res. and Development Corp., Field Res. Lab., Dallas, Tex., USA): Use of neutrons for petroleum and gas exploration.National Topical Meeting on Neutron Sources and Applications, Augusta, Ga., USA, Apr. 18–21, 1971, 10 p. AED-Conf-71-076-002.

  • Cameron, J. F. (Nucl. Enterprises Ltd., Reading, England): Radioisotope techniques for measurement and control of industrial pollution.Meas. Contr. 4 (1971) 303–7, see alsoNucl. Sci. Abstr. 26 (1972) No. 8767.

    CAS  Google Scholar 

  • Channell, J. K. (Stanford Univ., Stanford, Calif., USA): Activable rare earth elements as estuarine water traces.Thesis. 1971, 205 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8774.

  • Chemin, J. F. (Bordeaux Univ., France): Microanalysis of S, Si and Zn in GaSb by direct observation of (p, p’γ) nuclear reactions. FRNC-TH-99, 1971, 66 p. (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 4215.

  • Chulakov, Yu. G., Kosatkin, V. A., Dubinchuk, V. T., Mikhailov, N. A.: Simultaneous determination of aluminium and silicon in various rocks with neutron generators.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 185–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 125.

    Google Scholar 

  • Comar, D. (CEA, Orsay, France): Recent developments in the application of activation analysis to medicine and biology.Ind. At. 15 (1971) 22–6 (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 8758.

    CAS  Google Scholar 

  • Damburg, N. A., Pelekis, L. L. (Inst. of Phys., Riga, USSR): Certain possibilitie of activation analysis by resonance neutrons.Zh. Analit. Khim. 26 (1971) 1869–73 (in Russian), see alsoNucl. Sci. Abstr. 26 (1972) No. 8759.

    Google Scholar 

  • Egolin, Ya. G., Kudichenkov, A. A., Mamonov, E. I., Natitnyk, E. F., Toropov, V. P.: Principles of selection of basic points and mechanisms for multi-address transport systems of activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 290–5 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. D 43.

    Google Scholar 

  • Egolin, Ya. G., Kudichenkov, A. A., Mamonov, E. I., Natitnyk, E. F., Toropov, V. P.: Selection of the capacity and principles of the pre-switches in multi-address pneumotransport systems.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 296–301 (in Russian), see alsoRef. Zh. Khim. 6 (1971) No. D 47.

    Google Scholar 

  • Egolin, Ya. G., Mamonov, E. I., Spasov, Yu. P., Toropov, V. P.: Data processing arrangement for automatic systems.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 268–73 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 46.

    Google Scholar 

  • Faure, L., Giroux, J., Tousset, J. (Inst. de Phys. Nucléaire, Lyon Univ., France): Determination of oxygen in lead and lead-antimony using α-particles. LYCEN-7157, July 1971, 17 p. (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 8754.

  • Faure, L., Boisser, M., Tousset, J. (Inst. de Phys. Nucléaire, Lyon Univ., France): Determination of oxygen in Mo using α-particles. LYCEN-7156, 1971, 16 p. (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 8753.

  • Filatova, T. P., Chernova, M. A., Yarmarkin, V. K.: Determination of traces in thin layers of cadmium sulfide by neutron activation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 99–102 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. 195.

    Google Scholar 

  • Gambaryan, R. G., Shtan, A. S.: Some results in the fields of neutron resonance analysis of substances.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 37–9 (in Russian), see alsoRef. Zh. Khim. 7 (1972), No. G 48.

    Google Scholar 

  • Gambaryan, R. G., Kazachenkov, Yu. N., Shtan, A. S.: Application of non-stationer slowing down of neutrons in heavy media for elemental analysis of substances.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 39–40 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 47.

    Google Scholar 

  • Gambaryan, R. G., Rogov, E. V., Shtan, A. S.: Apparatus for the analysis of samples by the neutron resonance absorption.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 329–31 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 41.

    Google Scholar 

  • Ganev, I. Kh., Gambaryan, R. G., Gurkov, V. A., Efanov, A. I., Ivanov, I. N., Konstantinov, L. V., Lovanov, S. V., Nikolaev, V. A., Talanov, B. P., Ustinov, A. A., Shtan, A. S. Neutron multiplicator CO-1.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 315–6 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. G. 39.

    Google Scholar 

  • Ganiev, A. G., Mirzaev, M. R., Karimkulov, D.: Determination of small quantities of iridium, rhenium and rhodium in pure metallic osmium by activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 115–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 173.

    Google Scholar 

  • Gorshkov, V. V., Smakhtin, L. A., Mekhryusheava, L. I., Sinitsina, T. S.: Investigation of organic co-precipitators for the separation and concentration of elements in radioactivation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 87–91 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 64.

    Google Scholar 

  • Guinn, V. P. (Dept. of Chem., California Univ., Irvine, USA): Uses of neutrons in forensic science.National Topical Meeting on Neutron Sources and Applications, Augusta, Ga., USA, Apr. 18–21, 1971, 4 p., AED-Conf-71-086-005.

  • Gureev, E. S., Miroshnikov, V. S., Islamov, T., Muminova, M. F.: Activation analysis of the cerium group rare earth elements using radiochemical method.Sb. Aktivats. analiz.Fan, Tashkent, 1971. 120–2 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 119.

    Google Scholar 

  • Hashimoto, T. (Kyoto, Univ., Japan): Determination of the uranium content in sea water by a fission track method with condensed aqueous solution.Anal. Chim. Acta 56 (1971) 347–54, see alsoNucl. Sci. Abstr. 26 (1972) No. 4253.

    Article  CAS  Google Scholar 

  • Joyard, J., Fourcy, A. (CEN, Grenoble, France): Mn content of maize etioplasts when turning green.Comp. Rend. Ser. D. 273 (1971) 572–5 (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 8764.

    CAS  Google Scholar 

  • Kalinin, A. I.: Chromatographic separation of 27 elements for the determination of microimpurities in semiconductor materials by neutron activation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 82–7 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 190.

    Google Scholar 

  • Kartashev, E. R., Shtan, A. S.: Investigation on the fields of elemental activation analysis of liquid streams.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 41–4. (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 44.

    Google Scholar 

  • Kelley, M. T. (Oak Ridge National Lab., Tenn., USA): Modern trends in radiochemical analytical methods.Pure Appl. Chem. 26 (1971) 65–74, see alsoNucl. Sci. Abstr. 26 (1972) No. 4209.

    CAS  Google Scholar 

  • Khatamov, Sh., Khamidov, R., Kist, A. A., Lobanov, E. M.: Determination of the uranium and samarium content of soils and plants by the neutron activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 122–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 220.

    Google Scholar 

  • Khusnutdinov, R. I., Lobanov, E. M., Mingaliev, G. G.: On the sensitivity of the activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 9–16 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G. 39.

    Google Scholar 

  • Khusnutdinov, R. I., Mingaliev, G. G., Leushkina, G. V.: Neutron activation analysis of pure aluminium nitride.Sb. Aktivats analiz, Fan, Tashkent, 1971, 109–12 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 178.

    Google Scholar 

  • Kim, C. K., Voris, S. S., French, W. G. (Bell Telephone Labs., Inc., Murray Hill, N. J., USA): Simultaneous determination of cobalt, copper and manganese in high purity optical glass by thermal neutron activation.Glass Technol. 12 (1971) 128–30, see alsoNucl. Sci. Abstr. 26 (1972) No. 8766.

    CAS  Google Scholar 

  • Kislitsina, G. I., Podkolzin, V. V., Poznyak, V. L., Sokolovskii, V. V.: The use of ionization chambers for the determination of relatively high oxygen content.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 335–7 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 146.

    Google Scholar 

  • Kist, S. M., Kist, A. A., Lobanov, E. M.: Selection of the conditions of automatic ion-exchange equipment for destructive radioactivation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 317–23. (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. D 38.

    Google Scholar 

  • Kodiri, S., Starchik, L. P.: Gamma activation analysis with (γ, γ′) reaction using a linear accelerator of 4.2 MeV electron energy.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 216–9 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 37.

    Google Scholar 

  • Krutikov, M. G., Drynkin, V. I., Leipunskaya, D. I., Putyatina, N. D., Rudyk, Yu. M., Sokolov, G. V.: Elemental analysis of geological samples by the spectrometry of gamma rays from radiation capture of neutrons.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 143–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 131.

    Google Scholar 

  • Kudinov, B. S., Pronman, I. M., Shulepnikov, M. N.: Determination of nitrogen in rare metals by the activation method with 14 MeV neutrons and bremsstrahlung of electrons.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 180–4 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G. 169.

    Google Scholar 

  • Kudinov B. S., Kuchinskaya, O. I., Pronman, I. M.: Determination of the carbon content in semiconductor silicon by the gamma activation method.S. Aktivats. analiz, Fan, Tashkent, 1971, 225–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G. 191.

    Google Scholar 

  • Kuznetsov, F. F., Kurochkin, S. S., Rogushin, I. I., Sokolov, A. D., Shuvalov, G. I.: Module-blocks instrumentation for laboratory activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 259–65 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. D 37.

    Google Scholar 

  • Leushkina, G. V., Lobanov, E. M., Dutov, A. G., Matveeva, N. P.: The use of shortlived isotopes in activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 23–8 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 40.

    Google Scholar 

  • Linkevich, V. Zh., Zverev, B. P., Kryzhenkova, N. A., Dutov, A. G., Lobanov, E. M.: Application of Cerenkov counters in activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 30–2 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. D 42.

    Google Scholar 

  • Litvishko, B. V., Savinykh, Yu. G., Afanaseva, S. A.: On the possibility of rapid determination of aluminium in solutions by the neutron activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 197–200 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 182.

    Google Scholar 

  • Lobanov, E. M., Khaidorov, A. A.: On the problems of sensitivity calculations of the activation analysis by gammaspectra.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 16–23 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 38.

    Google Scholar 

  • Lobanov, E. M., Chanyshev, A. I., Chanisheva, T. I.: The use of isotope neutron sources for rapid analysis of various samples.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 55–61 (in Russian), see alsoRef. Khim. Zh. 7 (1972) No. G 41.

    Google Scholar 

  • Lobanov, E. M., Chanyshev, A. I., Chanisheva, R. I., Teplyakov, R. V.: Apparatus for packing of the samples in routine neutron activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 331–5 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. D 41.

    Google Scholar 

  • Lobanov, E. M. (ed.): Neutron activation analysis. Izdatelstvo Fan UzSSR, 1971, 192 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8775.

  • Lukens H. R., Bryan, D., Hiatt, N. A., Schlesinger, H. L. (Gulf Radiation Technology, San Diego, Calif.): Development of nuclear analytical techniques for oilslick identification. GULF-RT-A-10684, 11 June 1971, see alsoNucl. Sci. Abstr. 26 (1972) No. 8751.

  • Lyubimova, L. N., Salmin, Yu. P., Sergeeva, T. V., Sochevanov, V. G., Shiryaeva, M. B.: Neutron activation analysis method for the determination of several elements of low concentration in rocks irradiating the samples in reactor neutron flux and with radiochemical separation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 130–3 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 120.

    Google Scholar 

  • Mackintosh, W. D. (Atomic Energy of Canada Ltd., Chalk River, Ont.): Investigation of fluorine deposits on zircaloy surfaces by proton activationNucl. Technol. 13 (1972) 65–71, see alsoNucl. Sci. Abstr. 26 (1972) No. 8757.

    CAS  Google Scholar 

  • Maebashi, K., Katuragawa, H. T. (Meteorological Res. Inst., Tokyo, Japan): Activation analysis of atmospheric aerosol.Meteorol. Soc. Japan 17 (1970) 549–55 (in Japanese), see alsoNucl. Sci. Abstr. 26 (1972) No. 8765.

    CAS  Google Scholar 

  • Mamonov, E. I.: Automatic systems of nuclear activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 265–8 (in Russian), see alsoRef. Zh. Khim. 5 (1971) No. D 38.

    Google Scholar 

  • Marunina, I. N., Sukhov, G. V.: Activation analysis using internal standards.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 28–30 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 37.

    Google Scholar 

  • Maslov, I. A., Luknitskii, V. A., Karazhanova, G. I., Terenteva, Z. P.: The use of the neutron activation for the study of the adsorption of cerium vapour on high-temperature ceramic insulators.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 155–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 206.

    Google Scholar 

  • Maslov, I. A., Akseerod, L. A., Karazhanova, G. I., Safonov, A. B.: Activation analysis of organic samples using gas flame separation of the base material.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 159–63 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 306.

    Google Scholar 

  • Maslov, I. A., Luknitskii, V. A.: Neutron activation analysis handbook. Izdatelstvo Nauka Leningrads. Otdelenie, Leningrad, 1971, 312 p. (in Russian), see alsoNucl. Sci. Abstr. 26 (1972) No. 8776.

    Google Scholar 

  • Masters, L. W., Lutz, G. J. (National Bureau of Standards, Washington, D. C., USA): Determination of thalium by photon activation analysis.Anal. Chim. Acta 56 (1971) 365–70, see alsoNucl. Sci. Abstr. 26 (1972) No. 4254.

    Article  CAS  Google Scholar 

  • Maziere, B. (Service Hospitalier Frédéric Joliot, CEA, 91-Orsay, France): Intérêt des radioéléments dans l’analyse et le contrôle des médicaments.Intern. Conf. on Chemical Industries, Paris, France, Apr. 19–24, 1971, 22 p. (in French), AED-Conf-71-104-003.

  • Mazitov, B. S., Mukhammedov, S.: Determination of titanium in tantalum and niobium alloys by the activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 208–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 175.

    Google Scholar 

  • Mazitov, B. S., Mukhammedov, S.: Determination of the oxygen and nitrogen content in tantalum by proton activation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 212–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 170.

    Google Scholar 

  • McKnown, D., Kay, M., Gray, D., Abu-Samra, A., Eichor, M., Vogt, J. (Missouri Univ., Columbia, USA): Multielement surveys of bioenvironmental samples using neutron activation analysis.Proc. of the American Nuclear Society Topical meeting on Nuclear Methods in Environmental Research, Columbia, Missouri, USA, August 23–24, 1971, 150–7 p.

  • Meshcheryakov, R. P., Yakovlev, B. M., Glukhov, G. G.: Irradiation instrument NII YaF and its application to activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 230–3 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 44.

    Google Scholar 

  • Mikhailov, G. I.: The use of (p, γ) reaction for the determination of elementsZ≤17.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 76–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 68.

    Google Scholar 

  • Mikshevich, V. N., Moiseev, V. E., Antomov, V. A.: Determination of the gold, iridium and platinum content in pyroxene by the neutron activation analysis method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 127–30 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 128.

    Google Scholar 

  • Miranskii, I. A., Tushkova, R. Ya., Lobanov, E. M., Kist, A. A.: Activation analysis with fast reactor-neutrons taking into account the contribution of (n, γ) reactions.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 45–7 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 46.

    Google Scholar 

  • Moeller, P. (Hahn-Meitner-Institut für Kernforschung Berlin G.m.b.H., FRG): Messung von Ca- und K-Isotopenverschiebung mittels Neutrorenaktivierungs-analyse.Chemiedozententagung, Hamburg, F. R. Germany, Mar. 15–19, 1971, 8 p. AED-Conf-71-032-006.

  • Moiseev, V. E., Yakovlev, G. S., Lozhkin, V. N.: Determination of europium in samarium and neodymium oxides of high purity by the neutron activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 112–5 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 187.

    Google Scholar 

  • Moiseev, V. E., Krivorotov, V. A., Rychkov, Yu. A., Manaenkov, Yu. G., Teterin, D. M.: Transport system for activation analysis by horizontal reaction channel.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 306–9 (in Russian), see alsoRef Zh. Khim. 5 (1971) No. D 45.

    Google Scholar 

  • Olivier, C., Peisach, M. (Dept. of Chem., Urin of Stellenbosch, South Africa Southern Univ. Nucl. Inst., Faure, South Africa): Prompt proton spectrometry from highQ-value (d, p) reactions and its use for determining10B.J. Radioanal. Chem. 11 (1972) 105–22.

    CAS  Google Scholar 

  • Olrich, S. E., Martz, F. A., Vogt, J. R., Hildebrand, E. S. (Missouri Univ., Columbia, USA): Use of neutron activation analysis in the determination of digestibility with cerium as an inert marker.J. Anim. Sci. 33 (1971) 899–902.

    Google Scholar 

  • Orifkhodzhaev, U., Starchik, L. P., Tustanovskii, V. T.: The use of 14 MeV neutrons for determination of scattered rare elements.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 176–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 74.

    Google Scholar 

  • Payusov, A. S., Litvishko, V. V.: The study of the mechanism of the oxidation of chronium with Na4FeO4 using18O.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 200–3 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 200.

    Google Scholar 

  • Perezhogin, G. A., Meshcheryakov, V. G.: Determination of the distribution of impurities in silicon epitaxial layers by the neutron activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 95–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 192.

    Google Scholar 

  • Popa, L. L., Dorcioman, D., Constantinescu, S., Pandelica, D., Popa-Ghitescu, A. (Inst. de Fiz. Atomica, Bucharest, Roumania): Determination of the concentration of hafnium in the salts of zirconium by radioactivation. IFA-NM-12, 9 p. (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 4216.

  • Rakovskii, E. E., Khvostova, V. P., Nikitin, V. N. (The Central Res. Mining and Prospecting Inst. for Non-Ferrous, Rare and Noble Metals, Moscow, USSR): Activation analysis of osmium in natural materials and industrial products.J. Radioanal. Chem. 11 (1972) 9–22.

    CAS  Google Scholar 

  • Reed, J. H., Mandler, J. W. (Illinois Inst. of Techn. Res. Inst., Chicago, USA): In situ elemental analysis for oceanographic applications.Isotop. Radiat. Technol. 9 (1971–1972) 183–4, see alsoNucl. Sci. Abstr. 26 (1972) No. 7863.

    CAS  Google Scholar 

  • Riekstinya, D. V., Kizane, G. K. (Inst. of Phys., Riga, USSR): Instrumental neutron activation method for determining P and Al in the enamel of teeth.Latv. PSR Zinat. Akad. Vestis, Fiz. Tekh. Zinat. Ser. No. 4, 1971, 27–30 (in Russian), see alsoNucl. Sci. Abstr. 26 (1972) No. 4247.

    Google Scholar 

  • Rohleder, H. A., Kinder, L. (Gesellschaft für Strahlen- und Umweltforschung m. b. H., Neuherberg/Munich, FRG): Einfaches Rechenprogramm zur Schnellauswertung der Photopeaks in γ-Spektren.Intern. Symp. on Rapid Methods for Measurement in the Environment, Neuherberg/Munich, July 5–9, 1971, 15 p. AED-Conf-71-181-037.

  • Sanders, Wm. Mort (Los Alamos Scientific Lab., N. Mex.): Techniques for active3H activation analysis for carbon and oxygen. LA-4833, 1971, 173 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8752.

  • Savosin, S. I., Leipunskaya, D. I., Spiridonov, V. P.: Activation analysis in field conditions using the transportable laboratory “Sena”.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 242–51 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. D 21.

    Google Scholar 

  • Semel, S., Helf, S. (Feltman Res. Labs., Picatinny Arsenal, Dover, N. J., USA): Comparison of single- and dual-axis rotation techniques for total nitrogen in explosives by fast neutron activation analysis.J. Radioanal. Chem. 11 (1972) 91–97.

    CAS  Google Scholar 

  • Shukurov, Ya.: Activation analysis of substances using accelerator charged ions.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 203–6 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 137.

    Google Scholar 

  • Smakhtin, L. A., Merkulov, A. V.: Cesium determinations in potassium ore and salts by instrumental activation analysis methods.Ind. Lab. (USSR) 36 (1970) 1896–8. Translated fromZavodsk. Lab. 36 (1970) 1484–5, see alsoNucl. Sci. Abstr. 26 (1972) No. 4243.

    Google Scholar 

  • Sokolskii, V. V., Novgorodov, A. F., Kazachevskii, I. V., Artemev, O. I. Kazakov, V. M., Trushlyakov, F. N.: Determination of small quantities of oxygen in copper by alpha activation.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 206–8 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 166.

    Google Scholar 

  • Sokolskii, V. V.: Neutron generator operating with mixed deuterium-tritium ion source.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 283–9 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 39.

    Google Scholar 

  • Soyka, W., Havezov, I., Erdtman, G. (Zentrallabor für Chemische Analyse der Kernforschungsanlage, GmbH, Jülich, BRD). Selective absorption of bromine on columns of silver nitrate-loaded porous glass powder and its application in the neutron activation analysis of highpurity selenium.J. Radioanal. Chem. 11 (1972) 23–33.

    CAS  Google Scholar 

  • Srapenyants, R. A., Tsagolov, K. S., Kovtun, Yu. L.: Experiences with the use of neutron activation analysis in industry.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 5–9 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 218.

    Google Scholar 

  • Strizhak, V. I., Bobir, V. V., Bordulya, A. P., Boitenko, V. A., Gofman, V. I., Gurtovoi, M. E., Leshchenko, B. E., Primenko, G. I., Prokopets, G. A., Rebyuk, K. K., Sitko, S. P.: Neutron generators for physical investigations and activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 273–6 (in Russian), see alsoRef. Zh. Khim. 5 (1972) No. D 40.

    Google Scholar 

  • Strizhak, V. I., Bordulya, A. P., Skopyuk, M. I.: Impulse neutron generator with high and stable neutron flux.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 276–8 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 38.

    Google Scholar 

  • Strizhak, V. I., Bordulya, A. P., Stepanenko, V. A.: Rotating water cooled tritium target for neutron generators of high neutron yield.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 278–9 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. D 44.

    Google Scholar 

  • Talyzin, V. M., Leipunskaya, D. I., Smirnov, A. I., Khvostionov, V. E., Savosin, S. I.: Neutron activation analysis with the use of INN-3 reactor.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 233–42 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. D 40.

    Google Scholar 

  • Tushkova, R. Ya., Miranksii, I. A., Lobanov, E. M., Kist, A. A.: Activation analysis with interferences from threshold reactions.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 47–50 (in Russian), see alsoRef. Zh. Khim. 7 (1972) No. G 45.

    Google Scholar 

  • Tustanovskii, V. T., Orifkhodzhaev, U.: Determination of hafnium in zirconium concentrates by activation of samples with 14-MeV neutrons.Ind. Lab. (USSR) 36 (1970) 1893–5. Translated fromZavodsk. Lab. 36 (1970) 1482–3, see alsoNucl. Sci. Abstr. 26 (1972) No. 4226.

    Google Scholar 

  • Valieva, M. G., Lobanov, E. M., Usmanova, M. M.: Instrumental determination of gold and antimony in pure pyrographite.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 106–9 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 211.

    Google Scholar 

  • van der Linden, R., De Corte, F., Van Den Winkel, P., Hoste, J. (Inst. for Nucl. Sci., Ghent Univ., Ghent, Belgium): A compilation of infinite dilution resonance integrals. Part 1.J. Radioanal. Chem. 11 (1972) 133–41.

    Google Scholar 

  • Venkov, S. N., Egiazarov, B. G., Zybko, V. A., Koritko, L. A.: Automation of an apparatus for the analysis of gases with fast neutrons.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 323–9 (in Russian) see alsoRef. Zh. Khim. 6 (1972) No. D 40’

    Google Scholar 

  • Vilaithong, T., Crumpton, D., Francois, P. E., Grimes, N. W. (Univ. of Aston, Birmingham, England): Invesitgation by neutron activation of the Me/Fe ratio after the reaction MgO+Fe2O3→MgFe2O4.J. Inorg. Nucl. Chem. 33 (1971) 3165–6, see alsoNucl. Sci. Abstr. 26 (1972) No. 4244.

    Article  CAS  Google Scholar 

  • Vinitskaya, G. P., Kobalskaya, G. E., Kazachevskii, I. V., Lebkovskii, V. N., Sokolovskii, V. V.: Determination of sulfur in copper by the activation method.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 191–2 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 167.

    Google Scholar 

  • Wainerdi, R. E., Uken, E. A. (Eds): Modern methods of geochemical analysis. Monographs in Geoscience, New York, Plenum Corp., 1971, 314 p., see alsoNucl. Sci. Abstr. 26 (1962) No. 8676.

    Google Scholar 

  • Wilkinson, B. W., Toth-Allen, J. (Michigan State Univ., East Lansing, USA): Neutron activation analysis using daughter activity.Nucl. Technol. 13 (1972) 103–5, see alsoNucl. Sci. Abstr. 26 (1972) No. 8756.

    CAS  Google Scholar 

  • Wilkniss, P. E., Bressan, D. J., Larson, R. E. (Naval Res. Lab., Washington, D. C., USA): Radioanalytical methods applied to air—sea interaction studies.Isotop. Radiat. Technol. 9 (1971–1972) 162–6, see alsoNucl. Sci. Abstr. 26 (1972) No. 8761.

    CAS  Google Scholar 

  • Wininger, P., Haiter, J., Huber, D. (Inst. de Phys., Fribourg Univ., Switzerland): Analytische Methoden in der Gamma-Spektroskopie mit Anwendungsbeispielen.Intern. Symp. on Rapid Methods for Measurement of Radioactivity in the Environment, Neuherberg/Munich, F. R. Germany, July 5–9, 1971, 12 p. AED-Conf-71-181-029.

  • Withvorth, J. H., Gage, S. J., Pradzynski, A. (Nucl. Reactor Lab., Texas Univ., Austin, USA): Some recent applications of nuclear analysis techniques to typical forensic evidence.23rd Annual Meeting of the American Academy of Forensic Sciences. Phoenix, Ariz., USA, Feb. 21–27, 1971, 22 p., AED-Conf-71-012-002.

  • Zebakin, A. A., Kireev, V. A., Lobanov, E. M., Navalikhin, L. V., Talanin, Yu. N.: Rapid determination of oxygen in metallic samples using neutron generators.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 164–71 (in Russian), see alsoRef. Zh. Khim. 8 (1972) No. G 161.

    Google Scholar 

  • Yakovlev, B. M.: Some aspects of the use of electron accelerators in activation analysis.Sb. Aktivats. analiz, Fan, Tashkent, 1971, 66–9 (in Russian), see alsoRef. Zh. Khim. 6 (1972) No. D 45.

    Google Scholar 

Instrumentation, analysis by activity measurement

  • Bouzigues, H., Seyve, C., Aubeau, R., Boyer, R., Toussaint, C., Fontaine, A., Baude, L. (Centre d’Études Nucl., Commissariat à l’Energie Atomique, Fontenayaux-Roses, France): Industrial quality

  • Davydov, E. F., Syuzev, V. N., Chushkin, Yu. V. (Scientific Res. Atomic Reactor Inst., Melekess, USSR): Some methods for investigation of irradiated fuel elements. SRARI-P-72, 1970, 32 p. (in Russian), see alsoNucl. Sci. Abstr. 26 (1972) No. 4170.

  • Gunnink, R., Tinney, J. F. (Lawrence Radiation Lab., California Univ., Livermore, USA): Analysis of fuel rods by gamma-ray spectroscopy. UCRL-51086, Aug. 1971, 84 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8727.

  • Gunnink, R., Tinney, J. F. (Lawrence Livermore Lab., California Univ., Livermore, USA): Total fissile content and isotopic analysis of nuclear materials by gamma-ray spectrometry. UCRL-73274, 19 Oct. 1971, 19 p. CONF-711107-11, see alsoNucl. Sci. Abstr. 26 (1972) No. 8728.

  • Lawless, J. L., Willoughby, O. H. (United States Atomic Energy Commission): Radiochemical analysis of large quantities of materials.U. S. Patent 3.597.596. 3 Aug. 1971. Filed 7 Feb. 1969, see alsoNucl. Sci. Abstr. 26 (1972) No. 8737.

  • Metz, C. F., Waterbury, F. R. (Los Alamos Sci. Lab., N. Mex., USA): Analysis of nuclear fuels: A review. LA-DC-12804, 1971, 28 p. SM-149/32, CONF-711107-4. FromSymp. on Analytical Methods in the Nuclear Fuel Cycle, Vienna, Austria, 29 Nov. 1971, see alsoNucl. Sci. Abstr. 26 (1972), No. 4157.

  • Myers, W. A., Lindner, M. (Univ. of California, Livermore, USA): Precise determination of the natural abundance of237Np and239Pu in Katanga pitchblende.J. Inorg. Nucl. Chem. 33 (1971) 3233–8, see alsoNucl. Sci. Abstr. 26 (1972) No. 8734.

    Article  CAS  Google Scholar 

  • Pechin, W. H., Bradley, R. A., Lackey, W. J., Sease, J. D. (Oak Ridge National Lab., Tenn. USA): Analysis of (U, Pu)O2 fuels at Oak Ridge National Laboratory. CONF-711107-2, 1971, 20 p. FromSymp. on Analytical Methods in the Nuclear Fuel Cycle, Vienna, Austria, 29 Nov. 1971, see alsoNucl. Sci. Abstr. 26 (1972) No. 4164.

  • Rein, J. E., Phelps, R. T., Ashley, W. H., Waterbury, G. R., Metz, C. F., (Los Alamos Sci. Lab., N. Mex., USA): Preparation and characterization of reference material for the chemical specification analysis of uranium—plutonium mixed oxide fuel and source materials. LA-DC-12811, 1971, 10 p. Sm-149/39, CONF-711107-8. FromSymp. on Analytical Methods in the Nuclear Fuel Cycle, Vienna, Austria, 29 Nov. 1971, see alsoNucl. Sci. Abstr. 26 (1972) No. 4158.

  • Schroder, L. J. (Geological Survey, Denver, Colo., USA): Determination of tritium in water by the U.S. Geological Survey, Denver, Colorado. USGS-474-134, 1971, 22 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8729.

  • Sieswerda, G. B., Polak, H. L. (Lab. for Anal. Chem., Univ. of Amsterdam, Amsterdam, The Netherlands): Application of solid scintillators in high-speed radio column chromatography.J. Radioanal. Chem. 11 (1972) 49–58.

    CAS  Google Scholar 

  • Srinivasan, N., Ramaniah, M. V., Jain, H. C., Mathew, K. A. (Bhabha Atomic Res. Center, Bombay, India): Determination of specific activity and isotopic composition of plutonium. BRCA/I-87, 1970, 5 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 4196.

  • Walton, R. B., Augustson, R. H., East, L. V. (Los Alamos Sci. Lab., N. Mex., USA): Nondestructive analytical techniques for materials in the nuclear fuel cycle. LA-DC-12801, 1971, 25 p. CONF-711107-9. FromSymp. on Analytical Methods in the Nuclear Fuel Cycle, Vienna, Austria, 29 Nov. 1971, see alsoNucl. Sci. Abstr. 26 (1972) No. 4199.

  • Yura, O.: Absolute activity measurement of tritium by liquid scintillation counting.Radioisotopes (Tokyo) 20 (1071) 493–7, see alsoNucl. Sci. Abstr. 26 (1972) No. 8731.

    Google Scholar 

Analytical separations involving radioisotopes

  • Gupta, C. B., Tandon, S. N. (Chem. Dept., Univ. of Roorkee, U.P., India): Liquid-liquid extraction behaviour of mercury(II) as bromide, iodide and thiocyanate. Separation from Zn(II), Cd(II), Tl(I), Tl(III) and Au(III).J. Radioanal. Chem. 11 (1972) 59–66.

    CAS  Google Scholar 

  • McKay, H. A. C.: Principles of Radiochemistry. Butterworths, London, 1971, 550 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8992.

    Google Scholar 

  • Rakovskii, E. E., Starozhitskaya, M. I., Yampolskii, P. Ya. (The Central Res. Mining and Prospecting Inst. for Non-Ferrous, Rare and Noble Metals, Moscow, USSR): Extraction of iridium 1-nitroso-2-naphtholate.J. Radioanal. Chem. 11 (1972) 5–8.

    CAS  Google Scholar 

Analysis using radioactive reagents

  • Kao, C. W., Graham, E. R., Blanchar, R. W. (Univ. of Missouri, Columbia, USA): Determination of sulphate in soils as the133BaSO4 precipitate.Soil Sci. 112 (1971) 221–4, see alsoNucl. Sci. Abstr. 26 (1972) No. 8736.

    Article  CAS  Google Scholar 

  • Tölgyessy, J. (Technical Univ., Bratislava, Czechoslovakia): New developments in the techniques of radiometric titration.Isotopenpraxis 7 (1971) 208–17, see alsoNucl. Sci. Abstr. 26 (1972) No. 8744.

    Google Scholar 

  • Walton, D. J., McLean, Sh. A. (Queens Univ., Kingston, Ont., Canada): Double-isotope derivative assay of methylglycoxal.Anal. Biochem. 43 (1971) 472–80, see alsoNucl. Sci. Abstr. 26 (1972) No. 8733.

    Article  CAS  Google Scholar 

Environmental monitoring A. Results

  • Konecny, J., Keltos, D.: Rapid evaluation of activity in contaminated waters by means of ion exchange resins amberlite 200 and amberlite 402.Radioisotopy 11 (1970) 693–703 (in Czech). From2nd National Radiological Symp., Jachymov, Czechoslovakia, 20 Apr. 1970, see alsoNucl. Sci. Abstr. 26 (1972) No. 8750.

    CAS  Google Scholar 

  • Miribel, J. Rezkiccki, R., Wilzer, R. (CEN de Cadarache, Saint-Paul-les-Durance, France): Sampling and analysis of samples contaminated by a complex mixture of fission products.Bull. Inform. Sci. Tech. (Paris) No. 158, 1971, 45–58 (in French), see alsoNucl. Sci. Abstr. 26 (1972) No. 8749.

    Google Scholar 

  • Piper, N. R. (Australian Atomic Energy Commission Res. Establishment, Lucas Heights): Manual of procedures for the rapid analysis of radioactivity, radionuclides, and beryllium in environmental samples. AAEC/M-85, Nov. 1970, 41 p., see alsoNucl. Sci. Abstr. 26 (1972) No. 8726.

  • Seidel, H. O., Zaduban, M. (Safarik-Univ., Kosice, Czechoslovakia): Determination of the quantity of potassium having negligible radiometric effects upon radioactivity measurement carried out on vegetable samples. Part 2. Determination of the magnitude of sample containing40K.Isotopenpraxis 7 (1971) 226–31 (in German), see alsoNucl. Sci. Abstr. 26 (1972) No. 8745.

    CAS  Google Scholar 

B. Methods

  • Camera, V., Barassi, G., Legros, J. J. (Joint Nucl. Res. Center, European Atomic Energy Community, Ispra, Italy): Rapid and simple method for determination of total alpha radioactivity in urine. EUR-4675, 1971, 14 p. (in Italian), see alsoNucl. Sci. Abstr. 26 (1972) No. 4198.

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Bock-Werthmann, W., Sansoni, B. & Bujdosó, E. Bibliography section. J. Radioanal. Chem. 13, 497–508 (1973). https://doi.org/10.1007/BF02513941

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF02513941

Navigation