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Mathematical Modelling of Separation and Removal of Radionuclides by the Method of Coprecipitation
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I. V. MELIKHOV
Published/Copyright:
August 1, 1980
Published Online: 1980-8-1
Published in Print: 1980-8-1
© 2013 Oldenbourg Wissenschaftsverlag GmbH, Rosenheimer Str. 145, 81671 München
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- Independent Yields of 148mPm and 148gPm in the Thermal-Neutron-Induced Fission of 233U and 239Pu
- Cross Sections and Thick Target Yields of (d, xn) Reactions on Natural Lead
- (n,γ) Reactions of Metal Complexes
- Initial Retention in Iodates and Periodates after (n,γ) Reaction
- Reactions of 34m,38Cl Recoil Atoms with Chloroethylenes
- Recoil Reactions of 38Cl and 80mBr in Binary Organic Liquids
- Radiation Decomposition of Chlorates
- Mathematical Modelling of Separation and Removal of Radionuclides by the Method of Coprecipitation
- The Thermochromatography of Metallic Elements in Titanium Columns
- Separation of Thorium, Protactinium and Uranium by Ion Exchange and Extraction
- The Photochemistry of Neptunium in Aqueous Nitric Acid Solutions
Articles in the same Issue
- Independent Yields of 148mPm and 148gPm in the Thermal-Neutron-Induced Fission of 233U and 239Pu
- Cross Sections and Thick Target Yields of (d, xn) Reactions on Natural Lead
- (n,γ) Reactions of Metal Complexes
- Initial Retention in Iodates and Periodates after (n,γ) Reaction
- Reactions of 34m,38Cl Recoil Atoms with Chloroethylenes
- Recoil Reactions of 38Cl and 80mBr in Binary Organic Liquids
- Radiation Decomposition of Chlorates
- Mathematical Modelling of Separation and Removal of Radionuclides by the Method of Coprecipitation
- The Thermochromatography of Metallic Elements in Titanium Columns
- Separation of Thorium, Protactinium and Uranium by Ion Exchange and Extraction
- The Photochemistry of Neptunium in Aqueous Nitric Acid Solutions