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-rw-r--r--3756/CH3/EX3.1/Ex3_1.sce18
-rw-r--r--3756/CH3/EX3.10/Ex3_10.sce15
-rw-r--r--3756/CH3/EX3.11/Ex3_11.sce15
-rw-r--r--3756/CH3/EX3.12/Ex3_12.sce20
-rw-r--r--3756/CH3/EX3.13/Ex3_13.sce14
-rw-r--r--3756/CH3/EX3.14/Ex3_14.sce16
-rw-r--r--3756/CH3/EX3.15/Ex3_15.sce15
-rw-r--r--3756/CH3/EX3.2/Ex3_2.sce14
-rw-r--r--3756/CH3/EX3.3/Ex3_3.sce13
-rw-r--r--3756/CH3/EX3.4/Ex3_4.sce14
-rw-r--r--3756/CH3/EX3.5/Ex3_5.sce15
-rw-r--r--3756/CH3/EX3.6/Ex3_6.sce15
-rw-r--r--3756/CH3/EX3.7/Ex3_7.sce15
-rw-r--r--3756/CH3/EX3.8/Ex3_8.sce16
-rw-r--r--3756/CH3/EX3.9/Ex3_9.sce16
15 files changed, 231 insertions, 0 deletions
diff --git a/3756/CH3/EX3.1/Ex3_1.sce b/3756/CH3/EX3.1/Ex3_1.sce
new file mode 100644
index 000000000..7cb8f5622
--- /dev/null
+++ b/3756/CH3/EX3.1/Ex3_1.sce
@@ -0,0 +1,18 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=5896 //Wavelength
+N=60000 //Total Number of lines in 10 cm
+n1=2 //order
+n2=3 //order
+
+//Calculations
+RP=n1*N
+dlambda=((lambdaa)/(n2*N))
+
+//Result
+printf("\n (a)The resolving power in second order is %0.3f ",RP)
+printf("\n (b) The smallest wavelength that can be resolved in the 3rd order in 5896 Angstrom wavelength region is %0.4f Angstrom",dlambda)
diff --git a/3756/CH3/EX3.10/Ex3_10.sce b/3756/CH3/EX3.10/Ex3_10.sce
new file mode 100644
index 000000000..625e1c81e
--- /dev/null
+++ b/3756/CH3/EX3.10/Ex3_10.sce
@@ -0,0 +1,15 @@
+clc
+//
+//
+//
+
+//Variable declaration
+theta=6.5 //rotation of plane
+l=2 //length
+c=0.05 //concentration
+
+//Calculations
+s=(theta/(l*c))
+
+//Result
+printf("\n The Specific rotation of sugar solution is %i degree/(dm/(gm/cc)",s)
diff --git a/3756/CH3/EX3.11/Ex3_11.sce b/3756/CH3/EX3.11/Ex3_11.sce
new file mode 100644
index 000000000..18b0b3bf3
--- /dev/null
+++ b/3756/CH3/EX3.11/Ex3_11.sce
@@ -0,0 +1,15 @@
+clc
+//
+//
+//
+
+//Variable declaration
+theta=12 //rotation of plane
+l=2 //length
+s=60 //Specific rotation
+
+//Calculations
+c=(theta/(l*s))
+
+//Result
+printf("\n The Concentration of sugar solution is %0.3f gm/cc",c)
diff --git a/3756/CH3/EX3.12/Ex3_12.sce b/3756/CH3/EX3.12/Ex3_12.sce
new file mode 100644
index 000000000..34f704c34
--- /dev/null
+++ b/3756/CH3/EX3.12/Ex3_12.sce
@@ -0,0 +1,20 @@
+clc
+//
+//
+//
+
+//Variable declaration
+theta1=12 //rotation of plane
+l1=2 //length
+theta2=24 //rotation of plane
+l2=3 //length
+c1=0.08 //Concentration
+
+//Calculations
+s=((theta1)/(l1*c1))
+c2=((theta2)/(s*l2))
+Ms=10*10*10*c2
+Ms2=Ms*2
+
+//Result
+printf("\n The Mass of sugar dissolved in 2 liter of water for optical rotation 24 deg is %3.1f gm",Ms2)
diff --git a/3756/CH3/EX3.13/Ex3_13.sce b/3756/CH3/EX3.13/Ex3_13.sce
new file mode 100644
index 000000000..12d9e6153
--- /dev/null
+++ b/3756/CH3/EX3.13/Ex3_13.sce
@@ -0,0 +1,14 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=5086*10**-7 //Wavelength
+s=29.73 //Specific rotation
+
+//Calculations
+delmu=((s*lambdaa)/180)*10**5
+
+//Result
+printf("\n The Difference in RI is %1.1f *10**-5",delmu)
diff --git a/3756/CH3/EX3.14/Ex3_14.sce b/3756/CH3/EX3.14/Ex3_14.sce
new file mode 100644
index 000000000..ddb9cd224
--- /dev/null
+++ b/3756/CH3/EX3.14/Ex3_14.sce
@@ -0,0 +1,16 @@
+clc
+//
+//
+//
+
+//Variable declaration
+theta1=13 //rotation of plane
+l1=2 //length
+l2=3 //Length
+s=6.5 //Specific rotation
+
+//Calculations
+theta=s*l2*(1/3)
+
+//Result
+printf("\n The Concentration of sugar solution is %0.3f degree",theta)
diff --git a/3756/CH3/EX3.15/Ex3_15.sce b/3756/CH3/EX3.15/Ex3_15.sce
new file mode 100644
index 000000000..d4e3c7ea0
--- /dev/null
+++ b/3756/CH3/EX3.15/Ex3_15.sce
@@ -0,0 +1,15 @@
+clc
+//
+//
+//
+
+//Variable declaration
+theta1=35 //rotation of plane
+s=100 //Specific rotation
+c=0.1 //Concentration
+
+//Calculations
+l=((theta1)/(s*c))*10
+
+//Result
+printf("\n The Length will be %i cm",l)
diff --git a/3756/CH3/EX3.2/Ex3_2.sce b/3756/CH3/EX3.2/Ex3_2.sce
new file mode 100644
index 000000000..4d631591b
--- /dev/null
+++ b/3756/CH3/EX3.2/Ex3_2.sce
@@ -0,0 +1,14 @@
+clc
+//
+//
+//
+
+//Variable declaration
+mu=1.54 //refractive index of glass
+
+//Calculations
+ip=(180/%pi)*(atan(1.54))
+r=90-ip
+
+//Result
+printf("\n The Angle of polarization is %2.0f Degrees",r)
diff --git a/3756/CH3/EX3.3/Ex3_3.sce b/3756/CH3/EX3.3/Ex3_3.sce
new file mode 100644
index 000000000..f87cd4e5d
--- /dev/null
+++ b/3756/CH3/EX3.3/Ex3_3.sce
@@ -0,0 +1,13 @@
+clc
+//
+//
+//
+
+//Variable declaration
+ip=60 //Angle of incidence
+
+//Calculations
+mu=tan((%pi/180)*(ip))
+
+//Result
+printf("\n The Angle of polarization is %1.4f Degrees",mu)
diff --git a/3756/CH3/EX3.4/Ex3_4.sce b/3756/CH3/EX3.4/Ex3_4.sce
new file mode 100644
index 000000000..480d09cf5
--- /dev/null
+++ b/3756/CH3/EX3.4/Ex3_4.sce
@@ -0,0 +1,14 @@
+clc
+//
+//
+//
+
+//Variable declaration
+muwater=0.8660 //Refractive index of water
+
+//Calculations
+ip=(180/%pi)*(atan(muwater))
+r=90-ip
+
+//Result
+printf("\n The Angle of Refraction is %2.2f Degrees",r)
diff --git a/3756/CH3/EX3.5/Ex3_5.sce b/3756/CH3/EX3.5/Ex3_5.sce
new file mode 100644
index 000000000..f554d3183
--- /dev/null
+++ b/3756/CH3/EX3.5/Ex3_5.sce
@@ -0,0 +1,15 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=6000*10**-10 //Wavelength
+muo=1.55 //Refractive index of ordinary rays
+mue=1.54 //Refractive index of extra ordinary rays
+
+//Calculations
+t=((lambdaa)/(2*(muo-mue)))*10**2
+
+//Result
+printf("\n The thickness of the crystal is %0.3f cm",t)
diff --git a/3756/CH3/EX3.6/Ex3_6.sce b/3756/CH3/EX3.6/Ex3_6.sce
new file mode 100644
index 000000000..7a68239e3
--- /dev/null
+++ b/3756/CH3/EX3.6/Ex3_6.sce
@@ -0,0 +1,15 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=5893*10**-10 //Wavelength
+muo=1.54 //Refractive index of ordinary rays
+mue=1.53 //Refractive index of extra ordinary rays
+
+//Calculations
+t=((lambdaa)/(4*(muo-mue)))*10**2
+
+//Result
+printf("\n The thickness of the crystal is %0.3f cm",t)
diff --git a/3756/CH3/EX3.7/Ex3_7.sce b/3756/CH3/EX3.7/Ex3_7.sce
new file mode 100644
index 000000000..e2392bf59
--- /dev/null
+++ b/3756/CH3/EX3.7/Ex3_7.sce
@@ -0,0 +1,15 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=5893*10**-10 //Wavelength
+muo=1.551 //Refractive index of ordinary rays
+mue=1.54 //Refractive index of extra ordinary rays
+
+//Calculations
+t=((lambdaa)/(2*(muo-mue)))*10**2
+
+//Result
+printf("\n The thickness of the crystal is %0.5f cm",t)
diff --git a/3756/CH3/EX3.8/Ex3_8.sce b/3756/CH3/EX3.8/Ex3_8.sce
new file mode 100644
index 000000000..fe0d0b010
--- /dev/null
+++ b/3756/CH3/EX3.8/Ex3_8.sce
@@ -0,0 +1,16 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=4000*10**-10 //Wavelength
+mul=1.55821 //Refractive index of left landed
+mur=1.55810 //Refractive index of right landed
+t=2*10**-3 //thickness
+
+//Calculations
+orot=(180/%pi)*((2*3.14*(t*(mul-mur)))/lambdaa)
+
+//Result
+printf("\n The Amount of optical rotation produced is %3.0f degrees",orot)
diff --git a/3756/CH3/EX3.9/Ex3_9.sce b/3756/CH3/EX3.9/Ex3_9.sce
new file mode 100644
index 000000000..f897e0837
--- /dev/null
+++ b/3756/CH3/EX3.9/Ex3_9.sce
@@ -0,0 +1,16 @@
+clc
+//
+//
+//
+
+//Variable declaration
+lambdaa=5000*10**-10 //Wavelength
+muo=1.5418 //Refractive index of ordinary rays
+mue=1.5508 //Refractive index of extra ordinary rays
+t=0.032*10**-3 //thickness
+
+//Calculations
+orot=((2*(t*(mue-muo)))/lambdaa)
+
+//Result
+printf("\n The Amount of optical rotation produced is %i radians",orot)