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+//Calculate the Equivalent Conductance of NaCl solution
+
+//Example 8.2
+
+clc;
+
+clear;
+
+c1=0.0560; //Molar concentration of KCl in solution mol L^-1
+
+equiV1=134.5; //Equivalent coductance of KCl in ohm^-1 equiv^-1 cm^2
+
+k1=(equiV1*c1)/1000; //Specific conductance of the KCl solution in ohm^-1 cm^-1
+
+C1=0.0239; //Conductance of the solution containing KCl in ohm^-1
+
+c2=k1/C1; //Cell constant of the solution in cm^-1
+
+C2=0.0285; //Conductance of the solution containing KCl and NaCl in ohm^-1
+
+k2=c2*C2; //Specific coductance of the NaCl solution ohm^-1 cm^-1
+
+c3=0.0836; //Molar concentration of NaCl in solution in mol L^-1
+
+equiV2=(1000*k2)/c3; //Equivalent conductance of NaCl in ohm^-1 equiv^-1 cm^2
+
+printf("Equivalent Conductance = %.1f ohm^-1 equiv^-1 cm^2",equiV2);