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author | priyanka | 2015-06-24 15:03:17 +0530 |
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committer | priyanka | 2015-06-24 15:03:17 +0530 |
commit | b1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (patch) | |
tree | ab291cffc65280e58ac82470ba63fbcca7805165 /2417/CH6/EX6.28/Ex6_28.sce | |
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initial commit / add all books
Diffstat (limited to '2417/CH6/EX6.28/Ex6_28.sce')
-rwxr-xr-x | 2417/CH6/EX6.28/Ex6_28.sce | 18 |
1 files changed, 18 insertions, 0 deletions
diff --git a/2417/CH6/EX6.28/Ex6_28.sce b/2417/CH6/EX6.28/Ex6_28.sce new file mode 100755 index 000000000..96cafe745 --- /dev/null +++ b/2417/CH6/EX6.28/Ex6_28.sce @@ -0,0 +1,18 @@ +clear;
+clc;
+printf("\t\t\tProblem Number 6.28\n\n\n");
+// Chapter 6: The Ideal Gas
+// Problem 6.28 (page no. 271)
+// Solution
+
+//data given in problem 6.27
+T=50+273; //Celsius temperature converted to Kelvin //final temperature
+v2=1/2; //Because,v2=(1/2)*v1 //volume increases to its half its final volume
+v1=1;
+R=8.314/32; //moleculer weight of oxygen=32 //Unit:kJ/kg*K //constant of proportionality
+//From the equation, q=((R*T))*log(v2/v1)
+q=R*T*log(v2/v1); //heat added //kJ/kg
+printf("The heat added to system is %f kJ/kg(heat out of system)\n",q);
+//For a constant temperature,
+deltas=q/T; //Change in entropy //unit:kJ/kg*K
+printf("The change in entropy is %f kJ/kg*K\n",deltas);
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