General Chemistry
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Identify the orbital that corresponds to the set of quantum numbers in the table below. The x, y, z subscripts are not required. If the set of quantum numbers is deemed impossible, write 'none'
Identify the sets of values for principal quantum number, angular momentum quantum number, and magnetic quantum number for each orbital in the 4d subshell.
Draw the shape of a dz2 orbital. Include the x,y, and z axes.
Shown below is the shape of an fxyz orbital.
Identify the smallest magnetic quantum number value possible.
Give the possible ml values for an orbital with n = 5 and l = 3
For n = 4, there are ____ unique combinations of quantum numbers l and m l
Give the feasible ml values for l = 5
Identify the incorrect set of quantum numbers.
Give the feasible ml values for l = 2
Provide the correct set of quantum numbers for the following atomic orbital shape:
Determine the number of possible orbitals in an atom with a quantum number of
a. 4s
b. 2px
c. 5f
d. n = 4
e. n = 2
Enumerate the possible values for ml if l = 3.
Assuming that instead of 0 to n–1, the possible values of angular momentum quantum number (l) are the integer values from 0 to n+1. Determine the number of orbitals that exist in the following levels: 1, 2, and 3.
Assuming that instead of –l to +l, the possible values of magnetic quantum number (ml) are the integer values from –l – 2 to +l + 2 (including 0). Determine the number of orbitals that exist in the following sublevels: s, p, and d.
The n = 2 shell and l = 1 orbital of the hydrogen atom has several contour representations. One of them is shown below. Which of the following is true when the magnetic quantum number, ml, is altered?