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  1. ESTIMATION OF THE GAMMA-RAY FIELD IN AIR FROM RADIOACTIVE SOURCES IN THE GROUND BY NUMERICAL SOLUTION OF THE BOLTZMANN TRANSPORT EQUATION
  2. Monte Carlo method for determining the response of portable gamma detector for in situ measurement of terrestrial gamma ray field
  3. Neural network-random generation approach to analyze X-ray fluorescence spectra
  4. Optimization of a photoneutron source based on 10MeV electron beam using Geant4 Monte Carlo code
  5. Application of optimized geometry for the Monte Carlo simulation of a gamma-ray field in air created by sources distributed in the ground
  6. Optimised geometry to calculate dose rate conversion coefficient for external exposure to photons