Related Questions
Reactants react in the equal number of β¦β¦.. to give products.
Mole
Weights
Equivalent
All of these
In the following change, . If the atomic weight of iron is 56, then its equivalent weight will be :
42
21
63
84
In the reaction, . The eq.wt. of is equal to its :
mol. wt.
None of these
Weight of oxidized by 200 mL of 1 solution is :
30.4 g
15.2 g
60.8 g
158 g
In the standardization of using by iodometry, the equivalent weight of is :
$\begin{array}{*{20}{l}}
{\left( {molecular{\rm{ }}weight} \right)/2}
\end{array}$
$\begin{array}{*{20}{l}}
{\left( {molecular{\rm{ }}weight} \right)/6}
\end{array}$
$\begin{array}{*{20}{l}}
{\left( {molecular{\rm{ }}weight} \right)/3}
\end{array}$
Same as molecular weight
For the reaction, The normality of (mol.wt. = 189.7) solution prepared by dissolving 47.5 g in acid solution and diluting with to a total of 2.25 litre is :
0.222
0.111
0.333
0.444
What mass of is reduced by 35 mL of 0.16 oxalic acid in acidic solution? The skeleton equation is,
0.243 g
0.486 g
0.122 g
0.972 g
What is the normality of a solution to be used as an oxidant in acid medium, which contain 15.8 g of the compound in 100 mL of solution? Mol. wt. of is 158 :
How many g of are needed to prepare 3.75 litre of 0.850 solution if is reduced as,
101 g
202g
50.5 g
303.0 g
Reactants react in the equal number of β¦β¦.. to give products.
Mole
Weights
Equivalent
All of these