Zobrazeno 1 - 10
of 64
pro vyhledávání: '"L. E. Ermakova"'
Autor:
A. S. Kuznetsova, L. E. Ermakova, M. A. Girsova, I. N. Anfimova, L. N. Kurilenko, A. V. Volkova, T. V. Antropova
Publikováno v:
Glass Physics and Chemistry. 48:598-613
Publikováno v:
Glass Physics and Chemistry. 48:248-265
Publikováno v:
Glass Physics and Chemistry. 48:180-186
Publikováno v:
Glass Physics and Chemistry. 47:709-713
Publikováno v:
Colloid Journal. 83:546-557
Aggregative stability of a polydisperse zirconium oxide sol with average sizes of primary particles and aggregates equal to 24 and 95 nm, respectively, has been studied within a wide range of sodium chloride concentrations (3 × 10−3–1 M) by turb
Publikováno v:
Colloid Journal. 83:418-427
The structural (structural resistance coefficient, volume porosity, tortuosity coefficient, filtration coefficient, and specific surface area) and electrokinetic (specific electrical conductivity, streaming potential, and electrophoretic mobility of
Publikováno v:
Glass Physics and Chemistry. 47:390-393
The structural (volume porosity, specific surface area, and average pore radius) and electrokinetic characteristics are studied for silicate and AgI-doped microporous glasses and quartz-like nanocomposites based on them. The change in the structure a
Autor:
I. S. Levin, Mikhail S. Kuzin, L. E. Ermakova, Kuanyshbek Musabekov, V. K. Yu, G. Kurmangazhi, Sagdat Tazhibayeva
Publikováno v:
Colloid Journal. 83:343-351
Magnetite particles are prepared from a mixed aqueous solution of FeCl2 and FeCl3, and magnetite−bentonite composite particles are obtained from a mixed dispersion of magnetite and bentonite by precipitation with ammonia. The dispersions are examin
Publikováno v:
Colloid Journal. 83:294-301
Transport numbers of sodium, nickel, and lanthanum counterions have been studied in microporous (average pore radius is r = 2–3.4 nm) and macroporous (r = 16–27 nm) magnetite-free glasses and those containing magnetite in their matrices. It has b
Publikováno v:
Colloid Journal. 83:335-342
The chemical composition, structure, and electrokinetic characteristics have been studied for different vitreous materials, including basic silicate glasses and those modified with iron and nickel oxides in the course of melting. The position of the