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The wavelength of a moving particle is inversely proportional to?

Correct answer: D. Both B and C

  • A. Mass
  • B. Velocity
  • C. Momentum
  • D. Both B and C

Explanation

Option D is correct.The wavelength of a moving particle is inversely proportional to its momentum. This is known as the de Broglie wavelength, which is given by the following equation: λ = h/p where: λ is the de Broglie wavelength h is Planck's constant p is the momentum of the particle This means that particles with higher momenta have shorter wavelengths.The wavelength of a moving particle is inversely proportional to its velocity. This is known as the de Broglie wavelength, which is given by the following equation: λ = h / p where: λ is the de Broglie wavelength h is Planck's constant p is the momentum of the particle The momentum of a particle is given by the following equation: p = mv where: m is the mass of the particle v is the velocity of the particle This means that the wavelength of a particle is inversely proportional to its velocity. This means that particles with higher velocities have shorter wavelengths.

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About Dawn of Modern Physics

Classical physics cannot explain blackbody radiation and related observations, leading to Planck’s quantum theory, in which energy is emitted or absorbed in discrete packets. Photons provide the particle model of light, with energy and momentum linked to frequency and wavelength, including the photoelectric effect and its threshold frequency.

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