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authorpriyanka2015-06-24 15:03:17 +0530
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-rwxr-xr-x1883/CH7/EX7.3.1/Example7_1.sce12
-rwxr-xr-x1883/CH7/EX7.3.2/Example7_2.sce12
-rwxr-xr-x1883/CH7/EX7.3.3/Example7_3.sce15
-rwxr-xr-x1883/CH7/EX7.3.4/Example7_4.sce14
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diff --git a/1883/CH7/EX7.3.1/Example7_1.sce b/1883/CH7/EX7.3.1/Example7_1.sce
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+//Chapter-7,Example7_3_1,pg 7-6
+
+Ho=2*10^5 //critical field at absolute zero
+
+Hc=1*10^5 //critical field at given temperature
+
+T=8 //temperature
+
+Tc=T/sqrt(1-(Hc/Ho))
+
+printf("\ncritical temperature of the element Tc = %.2f Kelvin" ,Tc)
+
diff --git a/1883/CH7/EX7.3.2/Example7_2.sce b/1883/CH7/EX7.3.2/Example7_2.sce
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index 000000000..f9a77c830
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+++ b/1883/CH7/EX7.3.2/Example7_2.sce
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+//Chapter-7,Example7_3_2,pg 7-7
+
+Bo=3.06*10^-2 //critical field at absolute zero
+
+Tc=3.7 //critical temperature
+
+T=2 //temperature
+
+Bc=Bo*(1-(T/Tc)^2)
+
+printf("\ncritical field of wire Bc = %.5f T",Bc)
+
diff --git a/1883/CH7/EX7.3.3/Example7_3.sce b/1883/CH7/EX7.3.3/Example7_3.sce
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+++ b/1883/CH7/EX7.3.3/Example7_3.sce
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+//Chapter-7,Example7_3_3,pg 7-7
+
+Ho=6.5*10^4 //critical field at absolute zero
+
+Tc=7.18 //critical temperature
+
+T=4.2 //temperature
+
+r=0.5*10^-3 //radius of lead wire
+
+Hc=Ho*(1-(T/Tc)^2)
+
+Ic=2*%pi*r*Hc
+
+printf("\ncritical current for wire Ic = %.2f Amperes\n",Ic)
diff --git a/1883/CH7/EX7.3.4/Example7_4.sce b/1883/CH7/EX7.3.4/Example7_4.sce
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index 000000000..7564922b4
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+++ b/1883/CH7/EX7.3.4/Example7_4.sce
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+//Chapter-7,Example7_3_4,pg 7-8
+
+Tc1=4.185 //critical temperature 1
+
+Tc2=4.133 //critical temperature 2
+
+M1=199.5 //isotopic mass of a metal at temperature T1
+
+a=0.5
+
+M2=(Tc1*sqrt(M1)/Tc2)^2
+
+printf("\nisotopic mass is M2 = %.2f",M2)
+