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-rw-r--r--165/CH2/EX2.1.a/ex2_1_a.sce13
-rw-r--r--165/CH2/EX2.1.b/ex2_1_b.sce10
2 files changed, 23 insertions, 0 deletions
diff --git a/165/CH2/EX2.1.a/ex2_1_a.sce b/165/CH2/EX2.1.a/ex2_1_a.sce
new file mode 100644
index 000000000..5bce5295c
--- /dev/null
+++ b/165/CH2/EX2.1.a/ex2_1_a.sce
@@ -0,0 +1,13 @@
+//Example 2.1(a)
+clc;
+N=100; //No of turns of wire of the coil
+W=20*10^-3; //Width of the coil
+D=30*10^-3; //Depth of the ciol
+B=0.1; //Flux density in the gap
+I=10*10^-3; //Current in the movable coil
+K=2*10^-6; //Spring Constant
+A=W*D; //Effective coil area
+Tau=B*A*N*I; //Deflecting Torque
+Theta=Tau/K; //Deflection
+printf('\nDeflecting torque = %.2f uNm\n',Tau*10^6)
+printf('\nDeflection = %d degree\n',Theta) \ No newline at end of file
diff --git a/165/CH2/EX2.1.b/ex2_1_b.sce b/165/CH2/EX2.1.b/ex2_1_b.sce
new file mode 100644
index 000000000..ae5cb4246
--- /dev/null
+++ b/165/CH2/EX2.1.b/ex2_1_b.sce
@@ -0,0 +1,10 @@
+//Example 2.1(b)
+clc;
+N=100; //No of turns of wire of the coil
+W=20*10^-3; //Width of the coil
+D=30*10^-3; //Depth of the ciol
+B=0.1; //Flux density in the gap
+Tau=30*10^-6; //Deflecting Torque
+A=W*D; //Effective coil area
+I=Tau/(B*A*N); //Current through the moving coil
+printf('\nCurrent through the moving coil = %.2f mA\n',I*1000) \ No newline at end of file