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About:
Sebastian Kraszewski
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New Facet based on Instances of this Class
researcher
Attributes
Values
rdf:type
Item
description
researcher
(en)
연구원
(ko)
গবেষক
(bn)
研究者
(ja)
ഗവേഷകൻ
(ml)
araştırmacı
(tr)
дослідник
(uk)
изилдөөчү
(ky)
研究者
(zh)
հետազոտող
(hy)
hulumtues
(sq)
ricercatore polacco
(it)
chercheur polonais
(fr)
ikertzaile poloniarra
(eu)
investigador polaco
(es)
investigador polaco
(gl)
investigador polaco
(pt)
investigador polacu
(ast)
investigador polonès
(ca)
Pools onderzoeker
(nl)
polski fizyk (biocybernetyka i inżynieria biomedyczna, biologia medyczna, kierowane nośniki leków)
(pl)
rdfs:label
Sebastian Kraszewski
(ca)
Sebastian Kraszewski
(cs)
Sebastian Kraszewski
(en)
Sebastian Kraszewski
(es)
Sebastian Kraszewski
(gl)
Sebastian Kraszewski
(hr)
Sebastian Kraszewski
(it)
Sebastian Kraszewski
(nl)
Sebastian Kraszewski
(pl)
Sebastian Kraszewski
(ro)
Sebastian Kraszewski
(sk)
Sebastian Kraszewski
(sl)
Sebastian Kraszewski
(hsb)
Sebastian Kraszewski
(ast)
skos:prefLabel
Sebastian Kraszewski
(ca)
Sebastian Kraszewski
(cs)
Sebastian Kraszewski
(en)
Sebastian Kraszewski
(es)
Sebastian Kraszewski
(gl)
Sebastian Kraszewski
(hr)
Sebastian Kraszewski
(it)
Sebastian Kraszewski
(nl)
Sebastian Kraszewski
(pl)
Sebastian Kraszewski
(ro)
Sebastian Kraszewski
(sk)
Sebastian Kraszewski
(sl)
Sebastian Kraszewski
(hsb)
Sebastian Kraszewski
(ast)
name
Sebastian Kraszewski
(ca)
Sebastian Kraszewski
(cs)
Sebastian Kraszewski
(en)
Sebastian Kraszewski
(es)
Sebastian Kraszewski
(gl)
Sebastian Kraszewski
(hr)
Sebastian Kraszewski
(it)
Sebastian Kraszewski
(nl)
Sebastian Kraszewski
(pl)
Sebastian Kraszewski
(ro)
Sebastian Kraszewski
(sk)
Sebastian Kraszewski
(sl)
Sebastian Kraszewski
(hsb)
Sebastian Kraszewski
(ast)
Polish scientist ID (deprecated)
wds:Q46075870-01B3B6E4-7F79-4377-82E9-28BC39B50A96
Polish scientist ID (deprecated)
254967
Scopus author ID
wds:Q46075870-C7941355-75A5-4A40-AAB0-5D85E9D079A7
Scopus author ID
24066976000
given name
wds:Q46075870-57EBA8FD-0F91-4F48-83EF-C19DE26FF1E4
given name
Sebastian
instance of
wds:Q46075870-6D216F1E-F0E1-4F88-A52A-65346417F6FC
instance of
Homo sapiens
occupation
wds:Q46075870-F5640521-C04F-496C-8932-64D7933AE6FE
employer
wds:Q46075870-A46068EA-4368-43CC-93C8-B701CB8F8EB5
languages spoken, written or signed
wds:Q46075870-588BBB6F-4ED6-498B-8833-2D1A1D83FA9E
name in native language
wds:Q46075870-8603C766-A7C1-41F5-A7E8-DE337B98E646
sex or gender
wds:Q46075870-762472C5-2CE3-49E3-B595-7F87A4F2A166
country of citizenship
wds:Q46075870-E72C4BFE-2BEB-4DC8-93DD-EB5282E82F68
family name
wds:Q46075870-54FA06C3-DE4C-437F-9611-6BEBD8FCBCA8
occupation
researcher
employer
Wrocław University of Science and Technology
languages spoken, written or signed
Polish
name in native language
Sebastian Kraszewski
(pl)
sex or gender
male
country of citizenship
Poland
family name
Kraszewski
ORCID iD
wds:Q46075870-FE253E56-55B6-45B6-942F-C7AE7F16FC33
ORCID iD
https://orcid.org/0000-0003-3244-7694
ORCID iD
0000-0003-3244-7694
is
about
of
https://www.wikidata.org/wiki/Special:EntityData/Q46075870
is
author
of
Cholesterol Interaction with the MAGUK Protein Family Member, MPP1, via CRAC and CRAC-Like Motifs: An In Silico Docking Analysis.
Efficiency of the monofunctionalized C60 fullerenes as membrane targeting agents studied by all-atom molecular dynamics simulations
Determination of the shape and curvature of nonplanar lipid bilayers that are bent in a single plane in molecular dynamics simulations.
Cholesterol induces uneven curvature of asymmetric lipid bilayers.
How do functionalized carbon nanotubes land on, bind to and pierce through model and plasma membranes.
About the structural role of disulfide bridges in serum albumins: evidence from protein simulated unfolding.
Numerical studies of the membrane fluorescent dyes dynamics in ground and excited states.
Insertion of short amino-functionalized single-walled carbon nanotubes into phospholipid bilayer occurs by passive diffusion
Uptake and Translocation Mechanisms of Cationic Amino Derivatives Functionalized on Pristine C60by Lipid Membranes: A Molecular Dynamics Simulation Study
Insight into the origins of the barrier-less knock-on conduction in the KcsA channel: molecular dynamics simulations and ab initio calculations.
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