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Experiments on the angular dependence of the thermomagnetic pressure difference

Author

Listed:
  • Eggermont, G.E.J.
  • Oudeman, P.
  • Hermans, L.J.F.
  • Beenakker, J.J.M.

Abstract

In a rectangular box containing a rarefied polyatomic gas, the combination of a temperature gradient, ▿T, and an external magnetic field, H, causes a slip of the molecules along the wall. This slip creates a pressure difference across the box, the “thermomagnetic pressure difference”. The phenomenon gives information on the behavior of angular momentum dependent polarizations near a boundary. Experimental results for this effect are presented as a function of the angle between ▿T and H for CO, N2, CH4, CF4, CO2, HD, SF6, CH3F and NH3. The results are analyzed in terms of a theory developed by Vestner, and numbers are obtained for three parameters which characterize the behavior of nonequilibrium polarizations for rotating molecules near a boundary.

Suggested Citation

  • Eggermont, G.E.J. & Oudeman, P. & Hermans, L.J.F. & Beenakker, J.J.M., 1978. "Experiments on the angular dependence of the thermomagnetic pressure difference," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 91(3), pages 345-364.
  • Handle: RePEc:eee:phsmap:v:91:y:1978:i:3:p:345-364
    DOI: 10.1016/0378-4371(78)90183-8
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    References listed on IDEAS

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    1. Eggermont, G.E.J. & Vestner, H. & Knaap, H.F.P., 1976. "Influence of a magnetic field on diffusion and thermal diffusion in gaseous mixtures," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 82(1), pages 23-46.
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