write three important steps required to determine molar conductivity.
Answers
Answer:
solution is defined as its conductivity divided by its molar concentration.[1][2]
{\displaystyle \Lambda _{\text{m}}={\frac {\kappa }{c}},}{\displaystyle \Lambda _{\text{m}}={\frac {\kappa }{c}},}
where:
κ is the measured conductivity (formerly known as specific conductance),[3]
c is the molar concentration of the electrolyte.
The SI unit of molar conductivity is Siemens metre-squared per mole (S m2 mol−1).[2] However, values are often quoted in S cm2 mol−1.[4] In these last units, the value of {\displaystyle \Lambda _{\text{m}}}{\displaystyle \Lambda _{\text{m}}} may be understood as the conductance of a volume of solution between parallel plate electrodes one centimeter apart and of sufficient area so that the solution contains exactly one mole of electrolyte.[5]
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Answer:
1) The conductivity of solution depends on number of ions present in unit volume of solution.
2) The solution of higher concentration contains more ions and exhibits higher conductivity than the solution of lower concentration
3) To compare conductivity of different solutions, they must have the same concentration.
Explanation:
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