de broglie explain stability of atom by explaining that like in standing waves energy does not transfer and as we say that every shell has definite energy so the electron exist in atom in form of waves as whole number of standing waves
Rutherford's model failed to explain why elements emit light at specific frequencies when heated. This phenomenon, known as atomic emission spectra, was later explained by Niels Bohr's model of the atom which introduced the concept of quantized energy levels in the atom.
Bohr added the concept of quantized energy levels to the atom, proposing that electrons exist in specific orbits around the nucleus, each with a specific energy level. This idea helped explain the stability of atoms and led to the development of the Bohr model of the atom.
nuetrons
why atom and molecules are important to cell processes explain
The wave-mechanical model of the atom is required to explain the behavior of electrons in atoms, particularly their wave-like properties and the quantization of energy levels. This model integrates wave theory with the concept of particles, providing a more accurate description of the behavior of electrons within the atom. It helps explain phenomena such as electron orbitals, electron probability distributions, and the stability of atoms.
Using de Broglie's hypothesis and with reference to the Bohr model of a Hydrogen atom, it can be seen that the angular momentum of the electrons circling the proton is a multiple of "h" Planks constant and can be reinterpreted as an explanation using de Broglies hypothesis with a standing wave condition. Thus the electron is described by a wave and a whole number of wavelengthswhich must fit along the circumference of the electrons orbit.
The stability of an atom is determined by the:
Thomson's model does not account for the existence of positively charged particles within the atom. It also does not explain the stability of the atom or the arrangement of electrons within the atom. Additionally, it fails to describe the presence of different energy levels in the atom.
Rutherford's model of the atom was incomplete. He proposed a model in which electrons orbit the positively charged nucleus like planets around the sun. However, this model failed to explain the stability of the atom and the energy levels of electrons. It was later improved upon by Niels Bohr's model, which incorporated quantum mechanics concepts to explain these phenomena.
incorrect
Rutherford's model failed to explain why elements emit light at specific frequencies when heated. This phenomenon, known as atomic emission spectra, was later explained by Niels Bohr's model of the atom which introduced the concept of quantized energy levels in the atom.
The Bohr model of the atom helped to explain the quantization of electron energy levels, the stability of atoms, and the line spectrum observed in hydrogen. It proposed that electrons orbit the nucleus at specific energy levels, or shells, rather than in continuous orbits.
Bohr added the concept of quantized energy levels to the atom, proposing that electrons exist in specific orbits around the nucleus, each with a specific energy level. This idea helped explain the stability of atoms and led to the development of the Bohr model of the atom.
yes it does
nuetrons
Niels Bohr proposed the idea that electrons have fixed orbits around the nucleus of an atom in his model of the atom in 1913. This concept helped to explain the stability of atoms and the spectral lines observed in hydrogen.
atom is the smallest particle of matter