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The research activities for a candidate collaborator include: (a) Radon and progeny measurements and modelling in indoor places (passive and active techniques), waters and soil and thermal spas (b) Real-time telemetry of Environmental Electromagnetic disturbances and Radon Emissions; (c) Time-series modelling through Chaos, R-S analysis, DFA, methods of Self-Organisation, Symbolic Dynamics, Long-memory analysis; (d) Environmental Electromagnetic Radiation and Digital Communication Systems-HealthEffects;  (e) Monte-Carlo modeling of Medical Imaging detectors and Medical Imaging Systems through (e1) self-designed gfortran-gnu-octave-gcc codes, (e2) EGSnrc-MP and (e3) GATE/GEANT4; Optical scattering through (e4) GATE, (e5) DETECT2000 and (e6) tkOptics; (f) Theoretical and experimental techniques employed in medical imaging scintillators (Absolute Efficiency, Detective Quantum Efficiency, X-ray to Luminescence Efficiency,Detector Optical Gain, Quantum Detection Efficiency, Energy absorption Efficiency, Modulation Transfer Function, Noise Power Spectrum, Noise Transfer Function e.tc.) (g) Dynamical Modelling of environmental systems

Further details on this research field may be found in the research activities menu. For further assistance please use the contact information (Associate Professor Dr. D. Nikolopoulos).

 


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