What conclusion can be drawn from Davisson and Germer’s experiment?

Answer: Davisson-Germer experiment obtained the conclusion that electrons exhibit wave nature also , thus , supporting the hypothesis given by de-broglie regarding wave-particle duality of matter. This experiment involved bombardment of a nickel crystal in vaccum by accelerated electrons coming out of an electron gun.Click to see full answer. Moreover, what is the experimental outcome…

Answer: Davisson-Germer experiment obtained the conclusion that electrons exhibit wave nature also , thus , supporting the hypothesis given by de-broglie regarding wave-particle duality of matter. This experiment involved bombardment of a nickel crystal in vaccum by accelerated electrons coming out of an electron gun.Click to see full answer. Moreover, what is the experimental outcome of Davisson and Germer experiment?Davisson-Germer Experiment. The Davisson-Germer experiment demonstrated the wave nature of the electron, confirming the earlier hypothesis of deBroglie. Putting wave-particle duality on a firm experimental footing, it represented a major step forward in the development of quantum mechanics.Also, what is de Broglie hypothesis? De Broglie hypothesis says that all matter has both particle and wave nature. The wave nature of a particle is quantified by de Broglie wavelength defined as where is the momentum of the particle. Historically, de Broglie hypothesis was the next step in quantum theory after Planck, Einstein and Bohr. Also question is, what is the significance of Davisson Germer experiment? The Davisson-Germer experiment demonstrated that electron has wave like properties. It proved the De Broglie hypothesis. The hypothesis states that matter exhibits wave as well as particle nature.How was the wave nature of electron established?In 1924, Louis de Broglie suggested that just as light exhibits wave and particle properties, all microscopic material particles such as electrons, protons, atoms, molecules etc. have also dual character. This means that an electron which has been regarded as a particle also behaves like a wave.

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