FARKHUTDINOV, I.,
ZLOBINA, A.,
FARKHUTDINOV, A.,
FARKHUTDINOVA, L.,
MATVEENKO, I.,
VOLFSON, I. (2020) concentrations in the
environments being studied. Application of this analytical technique made it possible
CHEN, Q.,
HAN, B.,
MENG, X.,
DUAN, C.,
YANG, C.,
WU, Z.,
MAGAFUROV, D.,
ZHAO, S.,
JIANG, C.,
CAI, J.,
SAFIN, S (2019) contributing to immunosuppressive
environment in glioma and that targeting LGALS1 could remodel
factors related to working
environment and labor process at their workplaces; those factors could produce
to constant intervention in urology, but also the essential developments in the
environment of neighboring
VASILYEVA, E.V.,
SITDIKOVA, I.D.,
KAMALETDINOVA, A.A.,
LOPUSHOV, D.V.,
USMANOVA, I.N.,
GERASIMOVA, L.I. (2018) , including benzene, epoxyethane, chrome VI, divinyl, cadmium into
environment. The paper also presents
%. An application for Android was created in Delphi development
environment to simplify its calculation.
Conclusion
Li, Shenglin,
Khoso, Muneer Ahmed,
Xu, He,
Zhang, Chao,
Liu, Ziyang,
Wagan, Sindho,
Dinislam, Khuzin,
Liu, Lijie (2024) Plants encounter various stresses in their natural
environments and can effectively respond to only