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debye การใช้

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  • This equation can be further simplified using the Debye-H點kel approximation
  • Actually, Debye derived his equation somewhat differently and more simply.
  • Where \ scriptstyle \ theta _ D is the Debye temperature.
  • At high temperatures, this becomes the Debye-Hukel length.
  • Hence the need for an extension to Debye-H點kel theory.
  • In graduate work his advisors were Peter Debye and Paul Scherrer.
  • The Debye length is the fundamental length scale of a classical plasma.
  • A high Debye temperature results in a high thermal conductivity.
  • This modification is called the Debye Model, which appeared in 1912.
  • Due to its symmetrically substituted dipole moment is 0 Debye.
  • In 1921, Debye was succeeded by Max Born.
  • These formulae treat the Debye model at all temperatures.
  • Another massless Bose gas is given by the Debye model for heat capacity.
  • The Debye sheath is the transition from a plasma to a solid surface.
  • See Debye model for how to calculate accurate low-temperature heat capacities.
  • The Debye model correctly predicts the low temperature dependence of the heat capacity.
  • This restricts the value of the Debye length and particle radius as following:
  • Debye screening is replaced with Thomas Fermi screening to yield
  • The dipole moment of one molecule of thiophosphoryl trifluoride is 0.640 Debye
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