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Thermoelectric properties of polycrystalline WS2 and solid solutions of WS2-ySey types., , , , , , , and . MIPRO, page 5-9. IEEE, (2016)Tungsten dichalcogenides as possible gas-sensing elements., , , , , , , and . MIPRO, page 48-52. IEEE, (2017)Strain-sensing element based on layered sulfide Mo0.95Re0.05S2., , , , , and . MIPRO, page 15-18. IEEE, (2015)Highly exfoliated graphite fluoride as a precursor for graphene fluoride dispersions and films., , , , , and . MIPRO, page 17-18. IEEE, (2011)Solid-state reaction as a mechanism of 1T &LEFT RIGHT ARROW; 2H transformation in MoS2 monolayers., , , , and . J. Comput. Chem., 36 (28): 2131-2134 (2015)Transition metal polysulfides and their potential applications., , , , , and . MIPRO, page 36-39. IEEE, (2018)Study of electronic structures of MoX2 (X = S, Se, Te): Arguments for interactions of molybdenum atoms in layers., , , , and . MIPRO, page 25-26. IEEE, (2012)Piezoresistive effect in polycrystalline bulk and film layered sulphide W0.95Re0.05S2., , , , , and . MIPRO, page 10-13. IEEE, (2016)Piezoresistive effect in composite films based on polybenzimidazole and few-layered graphene., , , , , , , and . MIPRO, page 27-30. IEEE, (2017)The conductivity and TEMF of MoS2 with Mo2S3 additive., , , , and . MIPRO, page 12-14. IEEE, (2015)