In which of the following ions,$d-d$ transition is not possible?

  • A
    $Ti^{4+}$
  • B
    $Cr^{3+}$
  • C
    $Mn^{2+}$
  • D
    $Cu^{2+}$

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The element with the electronic configuration $[Kr] \ 4d^{10} \ 5s^0$ is

Consider $n$ as the number of lone pairs of electrons present in the equatorial position of the most stable structure of $ClF_3$. The ions from the following with $n$ number of unpaired electrons are :
$A. V^{3+}$
$B. Ti^{3+}$
$C. Cu^{2+}$
$D. Ni^{2+}$
$E. Ti^{2+}$
Choose the correct answer from the options given below :

The number of unpaired electrons in $Mn^{2+}$ ion is

Given below are two statements:
Statement $I$: Ferromagnetism is considered as an extreme form of paramagnetism.
Statement $II$: The number of unpaired electrons in a $Cr^{2+}$ ion $(Z=24)$ is the same as that of a $Nd^{3+}$ ion $(Z=60)$.
In the light of the above statements,choose the correct answer from the options given below:

In the $3d$ series of transition elements,the atomic radii from $Cr$ to $Cu$ are approximately the same because:

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