Search Results - "BAKANOV, S. P"

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  1. 1

    The thermophoresis of solids in gases by Bakanov, S.P.

    “…A brief review of existing ideas on the nature of the thermophoresis of solids in gases is given. A method for calculating the rate of thermophoresis of coarse…”
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    Journal Article
  2. 2

    The nature of thermophoresis of highly heat-conducting bodies in gases by Bakanov, S.P

    “…A method of calculating the rate of thermophoresis of large bodies in gases is briefly described. Particular attention is devoted to the features of the…”
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    Journal Article
  3. 3

    The dynamics of a small drop in a thermal diffusion chamber by Bakanov, S.P.

    “…The solution of the problem of the motion of a drop, whose size is small compared with the mean free path of the molecules of the gas surrounding the drop, in…”
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  4. 4

    Continuum regime motion of a growing droplet in opposing thermo-diffusiophoretic and gravitational fields of a thermal diffusion cloud chamber by Bakanov, S.P., Smolı́k, J., Zaripov, Sh.Kh, Ždı́mal, V.

    Published in Journal of aerosol science (01-03-2001)
    “…A model for the motion of aerosol particles by Stefan flow, thermo-diffusiophoresis and gravity in a continuum regime is described, which considers a phase…”
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    Journal Article
  5. 5

    The motion of an aerosol drop in a thermal diffusion chamber by Bakanov, S.P., Ẑdimal, V., Zaripov, Sh.Kh, Smolik, J.

    “…A mathematical model of the motion of aerosol drops in a thermal diffusion chamber due to the action of thermodiffusiophoresis and the gravity force is…”
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    Journal Article
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    The effect of a phase transition on the boundary conditions for rarefied gases by Bakanov, S.P., Roldughin, V.I.

    “…The entropy production at the interface between a liquid and a binary vapour-gas mixture is calculated using a phenomenological approach. The consideration is…”
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    The dynamics of condensation nuclei in a thermal diffusion chamber by Bakanov, S.P

    “…The evolution of a sphehiml liquid drop formed by homogeneous nucleation inside a thermal diffusion chamber is investigated. The equation of motion of the drop…”
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    Journal Article