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+//CHAPTER 1- D.C. CIRCUIT ANALYSIS AND NETWORK THEOREMS
+//Example 14
+
+disp("CHAPTER 1");
+disp("EXAMPLE 14");
+
+//VARIABLE INITIALIZATION
+v=10; //voltage source in Volts
+I3=-5; //current source in Amperes
+r1=2; //in Ohms
+r2=2; //in Ohms
+r3=4; //in Ohms
+
+//SOLUTION
+//by loop analysis
+//(1)I1+(-1)I2=0.........eq (1)
+//(4)I1+(-2)I2=10........eq (2)
+//solving the equations by matrix method
+A=[1 -1;4 -2];
+b=[0;10];
+x=inv(A)*b;
+I1=x(1,:); //to access 1st element of 2X1 matrix
+I2=x(2,:); //to access 2nd element of 2X1 matrix
+In=I2-I3;
+rn=(r1*r2)/(r1+r2);
+I=(rn*In)/(rn+r3);
+disp(sprintf("By Norton Theorem, the current through resistor R3 is %d A",I));
+
+//END
+