22 февр. 2018 г. · The no of sub shells is indicated by the azimuthal quantum no (l) whose value ranges from 0 to (n−1) . Thus for n =6 we have ... |
15 апр. 2023 г. · Possible subshells are 4d , 5p , 6s . BECAUSE, l is less than n and n+l=6. So, total number of possible subshells are 3. How many orbitals have n = 6? Why? If n+l=6, then what would be the total possible number ... Другие результаты с сайта www.quora.com |
For n+l=6 possible values of n and l where n>l are: 6+0=6 5+1=6 4+2=6 thus there are three subshells option A is correct. |
7 дек. 2023 г. · Final answer: The shell with n = 6 has four subshells: 6s, 6p, 6d, and 6f. The maximum number of electrons that can be in each subshell can be ... |
The 6th shell could, theoretically, contain 6 subshells, including the g, h, and i, subshells. However, these three subshells are purely theoretical. |
26 февр. 2024 г. · Final answer: For the principal quantum number n=6, there are six subshells (6s, 6p, 6d, 6f, 6g, and 6h), with a total of 36 orbitals. |
4 июл. 2018 г. · Well, there are five subshells POSSIBLE, but only the first two are ACCESSIBLE. Well... apparently, you want the principal quantum number ... |
The number of orbitals can be determined using the formula: 2l+1. Therefore, the subshells associated to n=6 are 6s, 6p, 6d, 6f, 6g, and 6h. |
For instance, with \(n=6\), we have six possible subshells. The number of orbitals within each subshell also partially depends on the principal quantum number. |
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