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Chemistry
A solution of concentration C g equiv/L has a specific resistance R . The equivalent conductance of the solution is
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Q. A solution of concentration $C\, g$ equiv/L has a specific resistance $R .$ The equivalent conductance of the solution is
EAMCET
EAMCET 2010
A
$\frac{R}{C}$
B
$\frac{C}{R}$
C
$\frac{1000}{R C}$
D
$\frac{1000 R}{C}$
Solution:
Equivalent conductivity,
$\wedge_{eq}=\frac{\text {specific conductance} \times 1000}{\text {concentration (in} g \text {equiv/L})}$
$\because$ Specific conductance
$=\frac{1}{\text { specific resistance }}$
(Given, concentration $=C g$ equiv/L)
$\therefore \wedge_{ eq} =\frac{1}{R} \times \frac{1000}{C}$
or $=\frac{1000}{R C}$