Fill in the blanks:
$(a)$ The only $Mn$ halide compound that shows an oxidation state of $+7$ is ........
$(b)$ The $E^{\ominus}_{M^{II}/M}$ value is maximum negative for ........ in the $3d$ series.
$(c)$ Between $Cr^{2+}$ and $Fe^{2+}$,the stronger reducing agent is ........

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(N/A) The only stable manganese halide in $+7$ oxidation state is $MnF_7$ (though it is highly unstable and often discussed as $MnO_3F$ in related contexts,$MnF_7$ is the theoretical answer for halides).
$(b)$ The $E^{\ominus}_{M^{II}/M}$ value is maximum negative for $Mn$ $(-1.18 \ V)$ in the $3d$ series because of the extra stability of the $d^5$ configuration in $Mn^{2+}$.
$(c)$ $Cr^{2+}$ is a stronger reducing agent than $Fe^{2+}$ because $Cr^{2+}$ changes from $d^4$ to $d^3$ ($t_{2g}^3$ configuration),which is more stable due to half-filled $t_{2g}$ orbitals,while $Fe^{2+}$ changes from $d^6$ to $d^5$.

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Similar Questions

For the four successive transition elements $(Cr, Mn, Fe, \text{ and } Co)$,the stability of $+2$ oxidation state will be in which of the following order?
(Atomic numbers: $Cr = 24, Mn = 25, Fe = 26, Co = 27$)

Among the following,which is the strongest oxidizing agent?

Which of the following statements are correct?
$A$. The $M^{3+}/M^{2+}$ reduction potential for iron is greater than manganese.
$B$. The higher oxidation states of first row $d$-block elements get stabilized by oxide ion.
$C$. Aqueous solution of $Cr^{2+}$ can liberate hydrogen from dilute acid.
$D$. Magnetic moment of $V^{2+}$ is observed between $4.4-5.2 \ BM$.
Choose the correct answer from the options given below:

Correct order of oxidising nature is

Iron is rendered passive by treatment with

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