Applied Radiation and Isotopes provides a high quality medium for the publication of substantial, original and scientific and technological papers on the development and applications of nuclear, radiation and radionuclide techniques in chemistry, physics, biochemistry, biology, medicine, security, engineering and in the earth, planetary and environmental sciences. Nuclear techniques are defined in the broadest sense and both experimental and theoretical papers are welcome. They include the development and use of α- and β-particles, X-rays and γ-rays, neutrons and other nuclear particles and radiations from all sources, including radionuclides, synchrotron sources, cyclotrons and reactors and from the natural environment. Papers dealing with radiation processing, i.e., where radiation is used to bring about a biological, chemical or physical change in a material, should be directed to our sister journal Radiation Physics and Chemistry. Manuscripts describing the results of measurements of radioactive or other substances in any medium that have been obtained using well-established analytical methods will not be accepted unless they also describe substantial innovations or improvements in the analytical methodology. Relevant topics for Applied Radiation and Isotopes include the following, however, authors are encouraged to suggest other topics which might also be published in the journal: Radiation Sources: design, construction, production, characteristics. Radionuclides: production, activation cross-sections, target design, processing, quality control procedures. Synthesis of Labelled Compounds: synthesis, purification, quality control, in vitro testing of radionuclide-labelled compounds/ radiopharmaceuticals. Measurement of Radiation and Radioactivity: measurement of X-rays, γ-rays, α- and β-particles and other forms of radiation; nuclear instrumentation, including radiation spectrometry, dosimetry, novel counting systems and whole-body counters, novel radiation detector systems. Radioanalytical Methods: activation analysis, isotope dilution analysis, radioimmunoassay, radionuclide tomography, radiation spectrometry. Nuclear Physics and Chemistry topics including data compilations, directly relevant to practical applications. Nuclear Magnetic Resonance/Electron Spin Resonance: dosimetry, dating, imaging, biomedical applications and radiation accidents. Accelerator Mass Spectrometry: methodology, biomedical, environmental and other applications. Nuclear Geophysics: studies of the earth's crust, the hydrosphere, the atmosphere and planetary bodies; nuclear methods for exploration, extraction, transport and use of water, oil, gas, coal and other minerals. Radiochemistry: chemical behaviour and speciation of radionuclides. Environment: chemical behaviour and speciation of radionuclides and labelled compounds other than those of direct clinical interest, in geological, environmental, human, animal or plant systems; factors which modify this behaviour.

Applied Radiation and Isotopes

FERNANDEZ, JORGE EDUARDO
In corso di stampa

Abstract

Applied Radiation and Isotopes provides a high quality medium for the publication of substantial, original and scientific and technological papers on the development and applications of nuclear, radiation and radionuclide techniques in chemistry, physics, biochemistry, biology, medicine, security, engineering and in the earth, planetary and environmental sciences. Nuclear techniques are defined in the broadest sense and both experimental and theoretical papers are welcome. They include the development and use of α- and β-particles, X-rays and γ-rays, neutrons and other nuclear particles and radiations from all sources, including radionuclides, synchrotron sources, cyclotrons and reactors and from the natural environment. Papers dealing with radiation processing, i.e., where radiation is used to bring about a biological, chemical or physical change in a material, should be directed to our sister journal Radiation Physics and Chemistry. Manuscripts describing the results of measurements of radioactive or other substances in any medium that have been obtained using well-established analytical methods will not be accepted unless they also describe substantial innovations or improvements in the analytical methodology. Relevant topics for Applied Radiation and Isotopes include the following, however, authors are encouraged to suggest other topics which might also be published in the journal: Radiation Sources: design, construction, production, characteristics. Radionuclides: production, activation cross-sections, target design, processing, quality control procedures. Synthesis of Labelled Compounds: synthesis, purification, quality control, in vitro testing of radionuclide-labelled compounds/ radiopharmaceuticals. Measurement of Radiation and Radioactivity: measurement of X-rays, γ-rays, α- and β-particles and other forms of radiation; nuclear instrumentation, including radiation spectrometry, dosimetry, novel counting systems and whole-body counters, novel radiation detector systems. Radioanalytical Methods: activation analysis, isotope dilution analysis, radioimmunoassay, radionuclide tomography, radiation spectrometry. Nuclear Physics and Chemistry topics including data compilations, directly relevant to practical applications. Nuclear Magnetic Resonance/Electron Spin Resonance: dosimetry, dating, imaging, biomedical applications and radiation accidents. Accelerator Mass Spectrometry: methodology, biomedical, environmental and other applications. Nuclear Geophysics: studies of the earth's crust, the hydrosphere, the atmosphere and planetary bodies; nuclear methods for exploration, extraction, transport and use of water, oil, gas, coal and other minerals. Radiochemistry: chemical behaviour and speciation of radionuclides. Environment: chemical behaviour and speciation of radionuclides and labelled compounds other than those of direct clinical interest, in geological, environmental, human, animal or plant systems; factors which modify this behaviour.
2013
Fernandez, Jorge E.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/514972
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