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author | prashantsinalkar | 2017-10-10 12:27:19 +0530 |
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committer | prashantsinalkar | 2017-10-10 12:27:19 +0530 |
commit | 7f60ea012dd2524dae921a2a35adbf7ef21f2bb6 (patch) | |
tree | dbb9e3ddb5fc829e7c5c7e6be99b2c4ba356132c /3740/CH8/EX8.1/Ex8_1.sce | |
parent | b1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (diff) | |
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initial commit / add all books
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-rw-r--r-- | 3740/CH8/EX8.1/Ex8_1.sce | 19 |
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diff --git a/3740/CH8/EX8.1/Ex8_1.sce b/3740/CH8/EX8.1/Ex8_1.sce new file mode 100644 index 000000000..749ad4ee1 --- /dev/null +++ b/3740/CH8/EX8.1/Ex8_1.sce @@ -0,0 +1,19 @@ +//Optoelectronics - An Introduction, 2nd Edition by J. Wilson and J.F.B. Hawkes
+//Example 8.1
+//OS=Windows XP sp3
+//Scilab version 5.5.2
+clc;
+clear;
+
+//given
+n1=1.5;//Dimensionless refractive index of glass
+n2=1;//Dimensionless refractive index of air
+Theta_i=60;//Angle of incidence in degrees
+Tan_Sai=sqrt(sind(Theta_i)^2-(n2/n1)^2)/(cosd(Theta_i))//Tan of phase shift in incident and reflected ray
+Sai=atand(Tan_Sai)//phase shift in perpendicular component ofincident and reflected ray in degrees
+delta=atand((n1/n2)^2*Tan_Sai)//phase shift in parallel component of incident and reflected ray in degrees
+
+
+mprintf("\n phase shift in perpendicular component ofincident and reflected ray in degrees Sai= %f",Sai);
+mprintf("\n\n phase shift in parallel component of incident and reflected ray in degrees Delta= %f",delta);
+// the difference in answer is becoause of roundingoff
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