Which incorrect aspect of Rutherford’s model was fixed by Bohr’s model?

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Bohr basically placed electrons in Rutherford's model in fixed orbits.

Rutherford's model of the atom, also known as the "planetary model," suggested that negatively charged electrons orbit the positively charged nucleus in a manner similar to planets around the sun. However, it failed to explain certain observations, such as why the electrons do not lose energy and spiral into the nucleus.

Niels Bohr's model, known as the "Bohr model," addressed this issue by introducing the concept of quantized energy levels. According to Bohr's model, electrons can only exist in specific energy levels or shells around the nucleus. These energy levels are quantized, meaning that they have discreet values, and electrons can transition between these levels by absorbing or emitting energy in the form of photons.

The key fix that Bohr made to Rutherford's model was the introduction of quantized energy levels for the electrons. This addressed the problem of electron stability and explained why electrons do not lose energy and spiral into the nucleus. Instead, electrons occupy specific energy levels and remain in these stable orbits as long as they don't gain or lose energy.

So, to summarize, Bohr's model fixed the incorrect aspect of Rutherford's model by introducing the idea of quantized energy levels for electrons, which explained why the electrons do not lose energy and spiral into the nucleus.

Bohr's model fixed the incorrect aspect of Rutherford's model by addressing the problem of electron stability. Rutherford's model suggested that the electrons orbit the nucleus in a similar way to planets orbiting the sun, which would cause the electrons to continuously lose energy and collapse into the nucleus. This concept violated the principles of classical physics.

Niels Bohr improved upon Rutherford's model by proposing that electrons occupy specific energy levels or orbits around the nucleus. He stated that electrons could only exist in certain quantized energy levels, and they would not emit energy while in these stable orbits. This resolved the stability issue and explained why electrons do not collapse into the nucleus.