Małgorzata A. Śmiałek

Polish biophysicist

Małgorzata A. Śmiałek is …
instance of (P31):
humanQ5

External links are
P12541Ludzie Nauki ID (new)RD3PWbCfoDk
P496ORCID iD0000-0003-2624-3716
P3124Polish scientist ID223780
P1053ResearcherIDG-1577-2011

P27country of citizenshipPolandQ36
P69educated atGdańsk University of TechnologyQ465922
The Open UniversityQ2413375
P108employerGdańsk University of TechnologyQ465922
Aarhus UniversityQ924265
P734family nameŚmiałekQ112289558
ŚmiałekQ112289558
ŚmiałekQ112289558
P735given nameAnnaQ666578
AnnaQ666578
MałgorzataQ15891793
MałgorzataQ15891793
P1412languages spoken, written or signedPolishQ809
P1559name in native languageMałgorzata Śmiałek
P106occupationresearcherQ1650915
P21sex or genderfemaleQ6581072

Reverse relations

author (P50)
Q40994740Cancer-selective, single agent chemoradiosensitising gold nanoparticles
Q51290531Dissociative electron attachment to the radiosensitizing chemotherapeutic agent hydroxyurea.
Q48093634Hydroperoxyl radical and formic acid formation from common DNA stabilizers upon low energy electron attachment
Q91514911Kinetics of molecular decomposition under irradiation of gold nanoparticles with nanosecond laser pulses-A 5-Bromouracil case study
Q44610792Limonene: electronic state spectroscopy by high-resolution vacuum ultraviolet photoabsorption, electron scattering, He(I) photoelectron spectroscopy and ab initio calculations.
Q51187809Measuring the density of DNA films using ultraviolet-visible interferometry.
Q42638316Quantification of radiation-induced single-strand breaks in plasmid DNA using a TUNEL/ELISA-based assay.
Q59405421Radio- and photosensitization of DNA with compounds containing platinum and bromine atoms
Q50882573Valence and Ionic Lowest-Lying Electronic States of Isobutyl Formate Studied by High-Resolution Vacuum Ultraviolet Photoabsorption, Photoelectron Spectroscopy, and Ab Initio Calculations.
Q35251162Valence and ionic lowest-lying electronic states of ethyl formate as studied by high-resolution vacuum ultraviolet photoabsorption, He(I) photoelectron spectroscopy, and ab initio calculations.
Q50605592Valence and lowest Rydberg electronic states of phenol investigated by synchrotron radiation and theoretical methods.