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+// Exa 6.8
+clc;
+clear;
+close;
+// Given data
+L= 0.8;// in H
+
+C= .08;// in pF
+C= C*10^-12;// in F
+C_M= 1.9;// in pF
+C_M= C_M*10^-12;// in F
+C_T= C*C_M/(C+C_M);// in F
+R=5;// in kohm
+f_s= 1/(2*%pi*sqrt(L*C));// in Hz
+disp(f_s*10^-3,"Series resonant frequency in kHz is : ")
+// (ii)
+f_p= 1/(2*%pi*sqrt(L*C_T));// in Hz
+disp(f_p*10^-3,"parallel resonant frequency in kHz is : ")
+
+// Note: Calculation to find the value of parallel resonant frequency in the book is wrong, so answer in the book is wrong