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doses
100%
alanines
100%
epithermal neutrons
100%
thermal neutrons
100%
dosimetry
100%
neutron capture therapy
100%
particles
71%
neutrons
57%
energy
42%
irradiation
42%
absorbed doses
42%
applications
28%
prediction
28%
research reactors
28%
neutron beams
28%
tools
14%
comparative evaluations
14%
finland
14%
interactions
14%
monte carlo method
14%
pools
14%
sensitivity
14%
boron
14%
reactors
14%
solids
14%
spectra
14%
beams
14%
curves
14%
germany
14%
photons
14%
verification
14%
spectrometry
14%
readout systems
14%
accounting
14%
neutron sources
14%
ionizing radiations
14%
protons
14%
gamma radiation
14%
firs
14%
dosimeters
14%
cobalt 60
14%
taiwan
14%
triga-2-mainz reactor
14%
depth doses
14%
electron spin resonance
14%
Keyphrases
Dose-response
100%
Neutron Field
100%
Epithermal Neutrons
100%
BNCT Dosimetry
100%
Thermal Neutron
100%
Secondary Particles
50%
Absorbed Dose
50%
Relative Effectiveness
50%
Model Prediction
33%
Research Reactor
33%
Particle Type
33%
Particle Energy
33%
Response Behavior
33%
Finland
16%
Helsinki
16%
Monte Carlo Code
16%
Reactor
16%
Irradiation
16%
Germany
16%
Spectrometry
16%
Primary Particles
16%
Neutron Source
16%
Response Model
16%
Proton
16%
Mcnp
16%
Particle Spectrum
16%
Calculated Dose
16%
Solid State Dosimeter
16%
60Co γ-ray
16%
Gamma-ray Beams
16%
Detector Response
16%
Hsinchu
16%
TRIGA Mainz
16%
Neutron Beam
16%
Nuclear Interactions
16%
Ionizing Radiation
16%
Thermal Neutron Field
16%
Electron Spin Resonance
16%
Boron Neutron Capture Therapy
16%
Particle Field
16%
Medical Purpose
16%
Taiwan
16%
Depth Dose Curve
16%
Source Descriptions
16%
Tsing
16%
Physics
Dosimeter
100%
Neutron Beam
100%
Nuclear Reactor
100%
Monte Carlo
50%
Neutron Source
50%
Research Reactor
50%
Ionizing Radiation
50%
Thermal Neutron
50%
Electron Paramagnetic Resonance
50%
Gamma Ray Beams
50%
Nuclear Interaction
50%
Material Science
Alanine
100%
Particle Type
28%
Boron
14%
Electron Paramagnetic Resonance Spectroscopy
14%