The difference between a 2px and a 2py orbital should be explained using the concept of quantum numbers. Concept Introduction: When the principal quantum number (n) is 2 or greater, the angular momentum quantum number (l) gets the value of 1 corresponding to a p subshell. When l = 1, the magnetic quantum number (m l ) has three possible values: −1, 0, and +1, each corresponding to different p orbital. Therefore, there is a p subshell in every shell for which n ≥ 2 and each p subshell contains three p orbitals. The three p orbitals are labelled px, py and pz with the subscripted letters indicating the axis along which each orbital is oriented. These three p orbitals are identical in size, shape, and energy; they differ from one another only in orientation. p orbitals increase in size from 2p to 3p to 4p orbital and so on.
The difference between a 2px and a 2py orbital should be explained using the concept of quantum numbers. Concept Introduction: When the principal quantum number (n) is 2 or greater, the angular momentum quantum number (l) gets the value of 1 corresponding to a p subshell. When l = 1, the magnetic quantum number (m l ) has three possible values: −1, 0, and +1, each corresponding to different p orbital. Therefore, there is a p subshell in every shell for which n ≥ 2 and each p subshell contains three p orbitals. The three p orbitals are labelled px, py and pz with the subscripted letters indicating the axis along which each orbital is oriented. These three p orbitals are identical in size, shape, and energy; they differ from one another only in orientation. p orbitals increase in size from 2p to 3p to 4p orbital and so on.
Solution Summary: The author explains that the difference between a 2px and an y orbital should be explained using the concept of quantum numbers.
Study of body parts and their functions. In this combined field of study, anatomy refers to studying the body structure of organisms, whereas physiology refers to their function.
Chapter 3, Problem 3.86QP
Interpretation Introduction
Interpretation:
The difference between a 2px and a 2py orbital should be explained using the concept of quantum numbers.
Concept Introduction:
When the principal quantum number (n) is 2 or greater, the angular momentum quantum number (l) gets the value of 1 corresponding to a p subshell. When l = 1, the magnetic quantum number (ml) has three possible values: −1, 0, and +1, each corresponding to different p orbital. Therefore, there is a p subshell in every shell for which n ≥ 2 and each p subshell contains three p orbitals. The three p orbitals are labelled px, py and pz with the subscripted letters indicating the axis along which each orbital is oriented. These three p orbitals are identical in size, shape, and energy; they differ from one another only in orientation. p orbitals increase in size from 2p to 3p to 4p orbital and so on.
Are the products of the given reaction correct? Why or why not?
The question below asks why the products shown are NOT the correct products. I asked this already, and the person explained why those are the correct products, as opposed to what we would think should be the correct products. That's the opposite of what the question was asking. Why are they not the correct products? A reaction mechanism for how we arrive at the correct products is requested ("using key intermediates"). In other words, why is HCl added to the terminal alkene rather than the internal alkene?
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Quantum Numbers, Atomic Orbitals, and Electron Configurations; Author: Professor Dave Explains;https://www.youtube.com/watch?v=Aoi4j8es4gQ;License: Standard YouTube License, CC-BY