MCQ
In ammonium-phosphomolybdate, the oxidation state of Mo is ${ }^{+}$ $..........$.
  • A
    $8$
  • B
    $4$
  • C
    $10$
  • D
    $6$

Answer

$\left( NH _4\right)_3 PO _4 \cdot 12 MoO _3$

Let $X =$ oxidation state of $Mo$ in $MoO _3$

$X +(-2) \times 3=0$

$X =+6$

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

If decomposition reaction $A(g) \to B(g)$ follows first order kinetics then the graph of rate of formation $(R)$ of $B$ against time $t$ will be
At ${25\,^o}C$ Ethylene glycol is a
The octahedral complex of a metal ion $M^{3+}$ with four monodentate ligands $L_1, L_2, L_3$ and $L_4$ absorb wave lengths in the region of red, green, yellow and blue, respectively. The increasing order of ligand strength of the four ligands is :
Match $List-I$ with $List-II$. 

$List-I$ (Compound) $List-II$ (Shape)
$(A)$ $BrF _{5}$ $(I)$ bent
$(B)$ $\left[ CrF _{6}\right]^{3-}$ $(II)$ square pyramidal
$(C)$ $O _{3}$ $(III)$ trigonal bipyramidal
$(D)$ $PCl _{5}$ $(IV)$ octahedral

Choose the correct answer from the options given below.

The amount of charge required to liberate $9\, gm$ of aluminium (atomic weight = $27$ and valency = $3$) in the process of electrolysis is ......... $\mathrm{coulombs}$ (Faraday's number  $=96500\,coulombs/gm$ equivalent)
Nitrogen is relatively inactive element because
Compare $\pi -$ bond strength between $B$ and $N$ given in two compounds

$(I)$  $\begin{array}{*{20}{c}}
  {{{(C{H_3})}_3}Si - NB{H_2}} \\ 
  {\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,|} \\ 
  {\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,Si{{(C{H_3})}_3}} 
\end{array}$         $(II)$   $\begin{array}{*{20}{c}}
  {{{(C{H_3})}_3}C - NB{H_2}} \\ 
  {\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,|} \\ 
  {\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,\,C{{(C{H_3})}_3}} 
\end{array}$

Urea is
The final major product of the following reaction is :
An electron has a spin quantum number $+1/2$ and magnetic quantum number $-1.$ It cannot be present in :