SPALAX NG: A breakthrough in radioxenon field measurement | Applied Radiation and Isotopes |
- Science: Chemistry: Inorganic chemistry
- Technology: Electrical engineering. Electronics. Nuclear engineering: Nuclear engineering. Atomic power
- Medicine: Medicine (General): Medical physics. Medical radiology. Nuclear medicine
- Science: Physics
| 25 | 2018 |
Application of simulated standard spectra for the analysis of complex sample spectra from NaI(Tl) detectors | Journal of Radioanalytical and Nuclear Chemistry |
- Science: Chemistry: Analytical chemistry
- Science: Chemistry: Inorganic chemistry
- Technology: Electrical engineering. Electronics. Nuclear engineering: Nuclear engineering. Atomic power
- Science: Chemistry: Inorganic chemistry
- Science: Physics: Nuclear and particle physics. Atomic energy. Radioactivity
- Science: Chemistry
| 2 | 2014 |
Development of a radioxenon measurement system and its application in monitoring Fukushima nuclear accident | Radiation Physics and Chemistry |
- Science: Chemistry: Physical and theoretical chemistry
- Technology: Electrical engineering. Electronics. Nuclear engineering: Nuclear engineering. Atomic power
- Science: Physics: Atomic physics. Constitution and properties of matter
- Science: Physics
| 12 | 2014 |
Innovative concept for a major breakthrough in atmospheric radioactive xenon detection for nuclear explosion monitoring | Journal of Radioanalytical and Nuclear Chemistry |
- Science: Chemistry: Analytical chemistry
- Science: Chemistry: Inorganic chemistry
- Technology: Electrical engineering. Electronics. Nuclear engineering: Nuclear engineering. Atomic power
- Science: Chemistry: Inorganic chemistry
- Science: Physics: Nuclear and particle physics. Atomic energy. Radioactivity
- Science: Chemistry
| 36 | 2013 |
Genesis and Equilibrium of Natural Lithospheric Radioxenon and its Influence on Subsurface Noble Gas Samples for CTBT On-site Inspections | Pure and Applied Geophysics |
- Science: Geology
- Science: Geology
- Science: Geology
| 20 | 2010 |