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Which model of the atom states that electrons are located is set orbits around the nucleus?

The Bohr model of the atom states that electrons are located in specific orbits around the nucleus. In this model, each orbit has a fixed energy level, and electrons can only occupy these specific orbits.


Who made the statement each electron orbit can hold a maximum number of electron?

The statement that each electron orbit (or energy level) can hold a maximum number of electrons is attributed to the physicist Niels Bohr. In his model of the atom, Bohr proposed that electrons reside in distinct orbits around the nucleus and introduced the formula (2n^2) to determine the maximum number of electrons in each orbit, where (n) is the principal quantum number. This concept is foundational in atomic theory and helps explain the structure of the periodic table.


Who said that atoms move around the nucleus in specific orbits?

Niels Bohr proposed the idea that electrons move around the nucleus in specific orbits, with each orbit corresponding to a specific energy level. This formed the basis of the Bohr model of the atom, which helped explain the spectral lines of hydrogen and laid the foundation for quantum mechanics.


The Bohr nuclear model suggests that?

The atomic model of Bohr (1913) suppose that an atom is formed from a central electrically positive charged nucleus surrounded by electrically negative charged electrons moving on circular orbits.


How the concept of ionization energy of H-atom can be justify from bohr model of atom?

In the Bohr model of the hydrogen atom, the electron is assumed to orbit the nucleus in discrete energy levels. The ionization energy of the hydrogen atom corresponds to the energy required to completely remove the electron from its orbit, moving it from its lowest energy level to an unbound state. This energy depends on the specific energy level the electron is in, as each energy level has a corresponding ionization energy.

Related Questions

How many electrons are in the largest bohr orbit of the uranium atom?

The largest Bohr orbit of the uranium atom can hold up to 92 electrons, as uranium has 92 protons. Each orbit in an atom can hold a maximum number of electrons given by the formula 2n^2, where n is the principal quantum number of the orbit.


Which model of an atom is being described Electrons orbit the nucleus on fixed paths Each orbit or path is referred to as an energy level?

You are PROBABLY referring to the "Bohr Model" of the atom.


Which model of the atom states that electrons are located is set orbits around the nucleus?

The Bohr model of the atom states that electrons are located in specific orbits around the nucleus. In this model, each orbit has a fixed energy level, and electrons can only occupy these specific orbits.


Who made the statement each electron orbit can hold a maximum number of electron?

The statement that each electron orbit (or energy level) can hold a maximum number of electrons is attributed to the physicist Niels Bohr. In his model of the atom, Bohr proposed that electrons reside in distinct orbits around the nucleus and introduced the formula (2n^2) to determine the maximum number of electrons in each orbit, where (n) is the principal quantum number. This concept is foundational in atomic theory and helps explain the structure of the periodic table.


Who said that atoms move around the nucleus in specific orbits?

Niels Bohr proposed the idea that electrons move around the nucleus in specific orbits, with each orbit corresponding to a specific energy level. This formed the basis of the Bohr model of the atom, which helped explain the spectral lines of hydrogen and laid the foundation for quantum mechanics.


The Bohr nuclear model suggests that?

The atomic model of Bohr (1913) suppose that an atom is formed from a central electrically positive charged nucleus surrounded by electrically negative charged electrons moving on circular orbits.


What is the Drawing of Bohr atom?

The Bohr atom model, proposed by Niels Bohr in 1913, depicts an atom with a central nucleus containing protons and neutrons, surrounded by electrons that orbit the nucleus in fixed energy levels or shells. Electrons move in circular orbits at specific distances from the nucleus, with each orbit corresponding to a quantized energy level. This model explains the emission and absorption spectra of hydrogen and laid the groundwork for modern quantum mechanics, although it has limitations when applied to more complex atoms. Overall, the Bohr model represents a significant step in understanding atomic structure.


What is bohr model of hydrogen atom?

The Bohr model of the hydrogen atom proposes that electrons orbit the nucleus in quantized energy levels, or shells. Each shell is associated with a specific energy level, and electrons can transition between these levels by absorbing or emitting photons of specific energies. The model successfully explains the spectral lines of hydrogen, but is limited in its applicability to more complex atoms.


Who discovered that electrons move in specific levels or shells?

Neil Bohr discovered that each electron shell has specified energy levels and limited place for electrons.


What is the phase of the moon when its halfway around its orbit?

That depends on what you want to call the 'beginning' of the moon's orbit.-- New Moon and Full Moon are opposite each other, 1/2 orbit apart.-- First Quarter and Last Quarter are opposite each other, 1/2 orbit apart.-- Each day of Waxing Crescent, and the Waning Gibbous that combines with itto form a complete disk, are opposite each other, 1/2 orbit apart.-- Each day of Waning Crescent, and the Waxing Gibbous that combines with itto form a complete disk, are opposite each other, 1/2 orbit apart.Hey! I just realized that every possible shape of the moon, and the shapethat combines with it to form a complete disk, are opposite each other,1/2 orbit apart.


How the concept of ionization energy of H-atom can be justify from bohr model of atom?

In the Bohr model of the hydrogen atom, the electron is assumed to orbit the nucleus in discrete energy levels. The ionization energy of the hydrogen atom corresponds to the energy required to completely remove the electron from its orbit, moving it from its lowest energy level to an unbound state. This energy depends on the specific energy level the electron is in, as each energy level has a corresponding ionization energy.


How do Bohr's assumption contradict classical physics?

In the classical physics of Faraday, Ampere, Maxwell, and those guys, a moving electrical charge always radiates energy away and eventually runs out of gas. But in the Bohr model of the atom, which resembles a miniature solar system, each electron and its negative charge occupies a stable orbit without losing energy.