If three electrons could be accommodated in an orbital,then the element with atomic number $50$ will belong to:-

  • A
    $4^{th}$ period and $p$ block
  • B
    $5^{th}$ period and $s$ block
  • C
    $4^{th}$ period and $d$ block
  • D
    $5^{th}$ period and $p$ block

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Similar Questions

Which of the following statements are correct?
$(a)$ When an electron in an atom moves from $n=4$ to $n=2$,it gains energy.
$(b)$ An electron in a $3p$ orbital would have less energy than an electron in a $2p$ orbital.
$(c)$ $A$ $3s$ subshell has a maximum of $2$ electrons.
$(d)$ $A$ $3^{rd}$ orbit may contain a maximum of $10$ electrons.

What is the number of electrons present in the $3d$ orbital of $Ti$ in the $+2$ oxidation state?

The electronic configuration of neon is

If the electronic configuration of a nitrogen atom were $1s^7$,its energy would be lower than that of the ground state configuration $1s^2\,2s^2\,2p^3$ due to being closer to the nucleus. However,the $1s^7$ configuration is not observed because it violates which of the following rules?

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From which principal quantum number $(n)$ do the $s, p, d,$ and $f$ orbitals start? Describe them.

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