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+//Example 20.1 Calculation of saturation magnetisation and flux density for Nickel
+
+clear;
+clc;
+
+printf("Example 20.1\n");
+
+b_m=9.27*10^-24; //ampere*m^2 (Bohr Magneton)
+
+Na=6.023*10^23; //atoms/mol (Avogadro's No.)
+
+d=8.9*10^6; //g/m^3 (density)
+
+uo=4*%pi*10^-7; //Permitivity of free space
+
+A=58.71; //g/mol (Atomic weigth of Nickel)
+
+N=d*Na/A; //No. of atoms per cubic meter
+
+// M is saturation magnetisation
+M=0.6*b_m*N; //0.6= Bohr Magneton/atom
+
+
+//B = Saturation Flux Density
+B=uo*M;
+
+printf("\nSaturation Flux Density is : %f Tesla\n",B);
+
+// End \ No newline at end of file