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  1. 扩散(diffusion)和弥散(dispersion)有什么区别? - 知乎

    通常在微观层面,物质的传递可以由三种机制构成: 扩散(Diffusion)+移流(advection)+弥散(dispersion)。dispersion(弥散)是在有advection(移流)存在的情况下发生的,是由于流体流 …

  2. 扩散(diffusion)和弥散(dispersion)有什么区别? - 知乎

    dispersion(弥散)是在有advection(移流)存在的情况下发生的,是由于流体流动时溶质的流动速度不均匀而引起的一种对扩散现象(diffusion)的加强作用。 流体力学大师G.I.Taylor在1953年发 …

  3. 伦敦分散力(色散力)是什么? - 知乎

    Dec 26, 2019 · 色散力 (dispersion force) 离子-偶极作用 (ion-dipole) 该教材中将前三个统称为范德华力,并将氢键看做dipole-dipole force 的一种特殊形式。 二、下面来说一下什么是色 …

  4. Dispersion of Light and Refraction: Videos, Concepts and …

    ‘Dispersion of Light’ can be defined as the splitting of white light when it passes through a glass prism into its constituent spectrum of colors (i.e. violet, indigo, blue, green, yellow, orange and …

  5. Dispersion By Prism - Toppr

    Dispersion of prism takes place because white light entering the prism consists of so many different colors. Each of these different colors has a different wavelength. According to …

  6. Define deviation without dispersion. Derive an expression its

    When two prisms of different materials and different suitable angles are combined so at to produce only deviation but no dispersion in the path of light, such combination of prisms is …

  7. What is meant by 'Dispersion of Light'? - Toppr

    What is dispersion of white light? What is the cause of such dispersion? Draw a diagram to show the dispersion of white light by a glass prism.

  8. What do you mean by dispersion? Name the different colours of

    Statement 1: When white light ray passes through a prism it disperses into seven different colours, and this phenomenon is called dispersion. Statement 2: Refraction depends upon the …

  9. 伦敦力为什么称为「色散力」? - 知乎

    In physics, the term "dispersion" describes the variation of a quantity with frequency, which is the fluctuation of the electrons in the case of the London dispersion. 就是说Fritz London在解决这 …

  10. Dispersion can take place for - Toppr

    Correct option is C. Both transverse and longitudinal waves Transverse and Longitudinal waves both can undergo dispersion provided the components constituting them have different velocities.

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