[1]
Kolodyazhnyy A.V., Koval'chuk T.N., Korovin YU.V., Antonovich V.P. Opredeleniye mikroelementnogo sostava neftey i nefteproduktov. Sostoyaniye i problemy (Obzor) . J. Metody i ob"yekty khimicheskogo analiza, 2006, t. 1, No 2, S.
Google Scholar
[2]
https://bodystrong.info/nutrition/useful-products/milk (po sostoyaniyu na 24.04.2019 g.).
Google Scholar
[3]
Kukla A.A., Pavlyuchenko A.S., Maystrenko A.S., Mamykin A.V. Impedansnyy analizator dlya identifikatsii marok vodno-spirtovykh napitkov. J. Tekhnologiya i konstruirovaniye v elektronnoy apparature. 2012. №01. S.15-21.
Google Scholar
[4]
Khastsaev B.D., Khastsaev M.B. Application information properties of the impedance in medicine and biology. Monograph. LAP LAMBERT Academic Publishing. 2013. P. 96.
Google Scholar
[5]
Khastsaev B.D., Khastsaev M.B. Quasiregulatory linearized multi-electrode converter of the impedance parameters for ACS // Devices and systems. Management Control Diagnosis. 2010. №5. pp.36-38.
Google Scholar
[6]
Khastsaev B.D., Bolotaeva I.I., Rutkowski L.A, Kovalyov M.A. Identification parameters of calcification process in the rotary kiln as an object with distributed parameters // F-L: Non-ferrous metallurgy, №2, 2014. P.31-36.
Google Scholar
[7]
Khastsaev B.D., Khastsaev M.B. Method for impedance measurements in many points of the object and device for its implementation/Patent of Russian Federation №2510032. Publ. 20.03.(2014).
Google Scholar
[8]
Khastsaev B.D. Development of intellectual capacitance and conductivity of the studied objects//Scientific proceedings of the Kabardino-Balkarian state University, KBR, 1, 2015. P. 38-43.
Google Scholar
[9]
Khastsaev B.D., Dedegkaeva K.M., Korolev A.L., Abaev A.I. Design of microprocessor based multimeter at the structural level // Science and Technology #2, 2016, pp.22-29. Scieuro.
Google Scholar
[10]
https://euro-eq.ru/p.226076649-biomer-analizator-pirtosoderzhaschih.html (po sostoyaniyu na 24.04.2019 g).
Google Scholar