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14 867 (0,114s)

Result

Erbium Burnable Absorber for High-Burnup Fuels

JF - Jaderná energetika

  • 2012
  • D
Result

Validation of Serpent-SUBCHANFLOW-TRANSURANUS pin-by-pin burnup calculations using experimental data from the Temelin II VVER-100 0 reactor

Nuclear related engineering; (nuclear physics to be 1.3);

  • 2021
  • Jimp
  • Link
Result

Validation of the Onsite Used Operational Code Against Burnup Measurement

JF - Jaderná energetika

  • 2016
  • Jx
  • Link
Result

Criticality safety analysis of GBC-32 spent fuel cask with improved neutron absorber concept

Nuclear related engineering; (nuclear physics to be 1.3);

  • 2020
  • O
  • Link
Result

Neutron absorber for VVER-1000 storage, transport and final disposal facilities

Nuclear physics

  • 2021
  • D
  • Link
Result

The Implementation of the IRT-4M Burn-up Model for Calculation of the LVR-15 Reactor

BG - Jaderná, atomová a molekulová fyzika, urychlovače

  • 2012
  • D
Result

Calibration of spent fuel measurement assembly

JF - Jaderná energetika

  • 2014
  • Jx
  • Link
Result

Comparison between SERPENT and MONTEBURNS codes applied to burnup calculations of a GFR-like configuration

JF - Jaderná energetika

  • 2014
  • Jx
  • Link
Result

On the ongoing computation of the LVR-15 reactor fuel burnup

Nuclear related engineering; (nuclear physics to be 1.3);

  • 2022
  • D
  • Link
Result

Cross Sections Influence on Monte Carlo Based Burnup Codes

JF - Jaderná energetika

  • 2014
  • D
  • Link
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