7.7
If electrons are particles, then when a beam of electrons passes through two closely spaced slits, it is expected that two smaller beams of electrons should emerge and produce two bright stripes with darkness in between.
Initially, with only a few electrons, localized spots appear randomly on the screen. This suggests particle-like behavior.
However, as more and more electrons pass through the slits, an interference pattern — the hallmark of wave-like behavior — emerges. How is this possible?
Recall that the Bohr model proposed that the electron is a particle that orbits the nucleus. The French physicist Louis de Broglie postulated that the electron can exhibit wave properties. He suggested that the electron behaves as a circular standing wave with a wavelength, lambda.
The circumference of each orbit contains an integer number of wavelengths. Certain points on the wave have zero amplitude —these are nodes.
De Broglie proposed the following relation, in which the wavelength of the electron depends on its mass and velocity, with h being Planck’s constant. The greater the velocity of the electron, the shorter its wavelength.
The de Broglie hypothesis extends to all matter, and these
In the macroscopic world, objects that are large enough to be seen by the naked eye follow the rules of classical physics. A billiard ball moving on a…
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