Q.If the electronic configuration of an element is 1s^2 2s^2 2p^6 3s^2 3p^6 3d^2 4s^2, the four electrons involved in chemical bond formation will be_____.
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Start your 14-day free trial to unlock the full solution →Valence electrons—those in the outermost shell and energetically accessible subshells—participate in bonding. For this element the outermost shell is and the nearby electrons are also available, giving as the bonding electrons.
Why valence electrons matter
Chemical bonding involves electrons that an atom can easily lose, share, or rearrange. These are the valence electrons: those sitting in the outermost principal energy level and any partially filled subshells just below it that are close enough in energy to participate.
The configuration given is . Let's identify the element and then determine which electrons are chemically active.
Step-by-step identification
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Count the total electrons.
electrons, so this is titanium (Ti, atomic number 22).
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Locate the outermost shell.
The highest principal quantum number occupied is . The electrons are in this outermost shell and are always considered valence electrons.
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Check subshells just below the outermost shell.
The subshell lies very close in energy to . In transition metals the and subshells are so similar in energy that both sets of electrons participate in bonding. The orbitals are not shielded by a complete outer shell—they are exposed and chemically active.
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What about ?
The electrons belong to the completely filled core (), which sits well below the valence shell in energy. These inner-shell electrons are tightly bound and do not participate in ordinary chemical bonding. They form part of the inert core. …
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