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The magnetic quantum number value for an element with n=1 is the K shell.

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What will be the value of magnetic quantum number if the value of azimuthal quantum number is given to you?

The magnetic quantum number can have integer values ranging from -ℓ to +ℓ, where ℓ is the azimuthal quantum number. So the value of the magnetic quantum number would depend on the specific value of the azimuthal quantum number provided to you.


How many values are there for the magnetic quantum number when the value of the angular momentum quantum number is 4?

The magnetic quantum number ( m_l ) can take on values ranging from (-l) to (+l), where ( l ) is the angular momentum quantum number. For ( l = 4 ), the possible values of ( m_l ) are (-4, -3, -2, -1, 0, +1, +2, +3, +4). This results in a total of 9 possible values for the magnetic quantum number when ( l = 4 ).


Which one o the following is not a valid value for the magnetic quantum number of an electron in a 5d sublevel?

The magnetic quantum number (m_l) can take on integer values ranging from -l to +l, where l is the azimuthal quantum number. For a 5d sublevel, l equals 2, so m_l can take values of -2, -1, 0, +1, or +2. Therefore, any value outside this range, such as 3, is not a valid magnetic quantum number for an electron in a 5d sublevel.


Which quantum number is not a whole number?

The quantum number that is not a whole number is the magnetic quantum number, often denoted as ( m_l ). While the principal quantum number ( n ), angular momentum quantum number ( l ), and spin quantum number ( m_s ) are all whole numbers or integers, ( m_l ) can take on integer values ranging from (-l) to (+l), including zero, depending on the value of ( l ). However, the magnetic quantum number itself is always an integer, but its possible values reflect a range defined by the angular momentum quantum number.


The number of sublevels within each energy level of an atom is equal to the value of the?

The number of sublevels within each energy level of an atom is equal to the value of the principal quantum number (n). Each principal quantum number corresponds to one sublevel within the energy level.


What could be a third quantum number of a 2p3 electron in phosphorus 1s22s22p63s23p3?

ml = -1


What quantum number represents the orientation of an electron orbital in space?

The quantum number that indicates the position of an orbital is the magnetic quantum number. The number of different sublevels within each energy level of an atom is equal to the value of the principle quantum number.


What is the difference between the 2px orbital and the 2py orbital?

The px orbital has a magnetic quantum number value of -1, and the py orbital has a magnetic quantum number value of 0.


The numerical values of the magnetic quantum number m1 depends on the?

The values of the magnetic quantum number depend on the value of the azimuthal quantum number (orbital angular momentum quantum number) and has values -l, .. 0 . ..+l l=1, p orbital, -1, 0, +1 - three p orbitals l=2 d orbital -2, -1, 0., +1,+2 five d orbitals etc.


All of the orbitals in a given electron shell have the same value of the?

Principal quantum number.


What is the quantum number needed to determine the size and shape of an atomic electron?

The principal quantum number (n) is needed to determine the size of an atomic electron. The shape of an atomic electron is determined by the azimuthal quantum number (l) and the magnetic quantum number (m).


What quantum number specifies the orbital orientation in space?

The quantum number that specifies the orbital orientation in space is the magnetic quantum number, denoted as ( m_l ). This quantum number can take integer values ranging from (-l) to (+l), where ( l ) is the azimuthal (angular momentum) quantum number. Each value of ( m_l ) corresponds to a specific orientation of the orbital within a given subshell. For example, in the p subshell, ( l = 1 ), and ( m_l ) can be (-1, 0, +1), indicating the three possible orientations of p orbitals.