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Ms = + 1/2

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Gonzalo Abernathy

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Q: What could be the fourth quantum number of a 1s2 electron be?
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Related questions

What could the fourth quantim number of 3p3 electron be?

The fourth quantum number, known as the electron spin quantum number, can have a value of +1/2 or -1/2 for an electron in an orbital.


What could the fourth quantum number of 1s2 electron be?

Ms = + 1/2


What could the fourth quantum number of a 2s2 electron be?

ms= +1/2


What could the fourth quantum number of 2s2 electron be?

ms= +1/2


What could the fourth quantum number of 3p3 electron be?

ms = -1/2


What could be the fourth quantum number for one of the electrons in the 4p energy sublevel of bromine?

ms -1/2


What could the fourth quantum number of a 3p3 electron be?

ms = -1/2


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

ml = -1


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

ml = -1


What could be the fourth quantum number for on of the electrons in the 4p energy sublevel of bromine?

ms -1/2


What could be the fourth quantum number for one of the electrons on the 4p energy sublevel of bromine?

ms=-1/2


Set of four quantum numbers for the final electron found in Cobalt Does anyone know how to find this answer or what is the answer?

The set of four quantum numbers for the final electron in Cobalt (Co) can be determined as follows: Principal quantum number (n): The energy level of the electron in the atom, which for Cobalt is typically 3. Azimuthal quantum number (l): Describes the shape of the orbital, which can be 0 to (n-1). For Cobalt, the possible values could be 0, 1, or 2. Magnetic quantum number (m_l): Specifies the orientation of the orbital in space, ranging from -l to +l. For Cobalt, this could be -1, 0, or +1 based on the possible values of l. Spin quantum number (m_s): Indicates the spin of the electron, which is either +1/2 (up) or -1/2 (down). For the final electron in Cobalt, the specific values for these quantum numbers would depend on the electron configuration and the particular orbital the electron occupies.