Table of Contents
- 1 What is the main difference between the Bohr model and earlier models?
- 2 How were Bohr and de Broglie pictures of the electron different?
- 3 What is the difference between the quantum mechanical model and the previous models of the atom?
- 4 What is the difference between the previous models of the atom and the modern quantum model?
- 5 What are the similarities and differences of Rutherford’s model and Bohr’s model?
- 6 Which of the following best describes how the quantum mechanical model of the atom differs from the Bohr model of the atom?
What is the main difference between the Bohr model and earlier models?
Bohr thought that electrons orbited the nucleus in circular paths; whereas in the modern view atomic electron structure is more like 3D standing waves.
What is the difference between the Bohr and quantum model?
In the Bohr Model, the electron is treated as a particle in fixed orbits around the nucleus. In the Quantum Mechanical Model, the electron is treated mathematically as a wave. It therefore required three coordinates, or three quantum numbers, to describe the distribution of electrons in the atom.
How were Bohr and de Broglie pictures of the electron different?
Terms in this set (13) how were the Bohr and de Broglie pictures of the electron different? Bohr knew that electrons traveled in the patterns they did, but he didn’t know why. De Broglie knew why the electron patterns were the way that they were, and said electrons traveled as waves and particles.
What is Bohr’s model similar to?
In atomic physics, the Bohr model depicts an atom as a small, positively charged nucleus surrounded by electrons. These electrons travel in circular orbits around the nucleus—similar in structure to the solar system, except electrostatic forces rather than gravity provide attraction.
What is the difference between the quantum mechanical model and the previous models of the atom?
What is the difference between the previous models of the atom and the modern quantum mechanical model? Previous models described the motion of electrons the same way as the motion of large objects. The quantum mechanical model is not based on the exact path an electron follows around the nucleus.
What is de Broglie model?
In 1924 de Broglie postulated wave‐particle duality for the electron and other massive particles, thereby providing the opportunity to remove some of the arbitariness from Bohrʹs model. The de Broglie‐Bohr model of the hydrogen atom presented here treats the electron as a particle on a ring with wave‐like properties.
What is the difference between the previous models of the atom and the modern quantum model?
What are the similarities and differences between the Bohr model and the quantum mechanical model?
These two models are closely related but the quantum model is much more detailed than Bohr model. According to the Bohr model, an electron behaves as a particle whereas quantum model explains that the electron has both particle and wave behavior. This is the main difference between Bohr and quantum model.
What are the similarities and differences of Rutherford’s model and Bohr’s model?
Both Rutherford model and Bohr model explain the same concept of atomic structure with slight variations. The main difference between Rutherford model and Bohr model is that Rutherford model does not explain the energy levels in an atom whereas Bohr model explains the energy levels in an atom.
What is quantum mechanical model explain?
quantum mechanical model: A model of the atom that derives from the Schrödinger wave equation and deals with probabilities. wave function: Give only the probability of finding an electron at a given point around the nucleus.
Which of the following best describes how the quantum mechanical model of the atom differs from the Bohr model of the atom?
3. Which of the following best describes how the quantum mechanical model of the atom differs from the Bohr model of the atom? It focuses primarily on the movement of electrons in the hydrogen atom. It proves that electrons can both absorb and emit energy.
What is de Broglie’s interpretation of Bohr orbits?
de Broglie came up with an explanation for why the angular momentum might be quantized in the manner Bohr assumed it was. de Broglie realized that if you use the wavelength associated with the electron, and assume that an integral number of wavelengths must fit in the circumference of an orbit, you get the same …