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authorpriyanka2015-06-24 15:03:17 +0530
committerpriyanka2015-06-24 15:03:17 +0530
commitb1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (patch)
treeab291cffc65280e58ac82470ba63fbcca7805165 /1436/CH2
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Diffstat (limited to '1436/CH2')
-rwxr-xr-x1436/CH2/EX2.1/ex2_1.sce19
-rwxr-xr-x1436/CH2/EX2.10/ex2_10.sce23
-rwxr-xr-x1436/CH2/EX2.11/ex2_11.sce9
-rwxr-xr-x1436/CH2/EX2.12/ex2_12.sce10
-rwxr-xr-x1436/CH2/EX2.2/ex2_2.sce19
-rwxr-xr-x1436/CH2/EX2.3/ex2_3.sce7
-rwxr-xr-x1436/CH2/EX2.4/ex2_4.sce19
-rwxr-xr-x1436/CH2/EX2.5/ex2_5.sce9
-rwxr-xr-x1436/CH2/EX2.6/ex2_6.sce9
-rwxr-xr-x1436/CH2/EX2.7/ex2_7.sce12
-rwxr-xr-x1436/CH2/EX2.8/ex2_8.sce16
-rwxr-xr-x1436/CH2/EX2.9/ex2_9.sce14
12 files changed, 166 insertions, 0 deletions
diff --git a/1436/CH2/EX2.1/ex2_1.sce b/1436/CH2/EX2.1/ex2_1.sce
new file mode 100755
index 000000000..de2f12fb6
--- /dev/null
+++ b/1436/CH2/EX2.1/ex2_1.sce
@@ -0,0 +1,19 @@
+// Example 2.1, page no-116
+clear
+clc
+
+//(a)
+//1kg/cm^2=10000 mmWG
+x=10000*10
+printf("(a)\n 10kg/cm^2 = %d mmWG",x)
+
+//(b)
+onemm_Hg=13.546
+y=10^5/onemm_Hg
+y=y/10^3
+printf("\n(b)\n10kg/cm^2 = 10^5 mmWG = %.2f * 10^3 mmHg",y)
+
+//(c)
+onebar=1.03
+z=10/onebar
+printf("\n(c)\n10kg/cm^2 = %.2f bars",z)
diff --git a/1436/CH2/EX2.10/ex2_10.sce b/1436/CH2/EX2.10/ex2_10.sce
new file mode 100755
index 000000000..196cc017c
--- /dev/null
+++ b/1436/CH2/EX2.10/ex2_10.sce
@@ -0,0 +1,23 @@
+// Example 2.10, page no-121
+clear
+clc
+
+c=0.57
+
+//(a)
+d=0.1
+di1=100
+di2=1000
+c1=c*di1*10/d
+c1=ceil(c1)
+printf("(a)\nC1=%d pf",c1)
+
+//(b)
+c2=c*di2*10/d
+printf("\n(b)\nC2=%d pf",c2)
+
+//(c)
+ds=0.09
+c11=c*di1*10/ds
+c12=c*di2*10/ds
+printf("\n(c)\nC1 = %.1f pf\nC2 = %d pf",c11,c12)
diff --git a/1436/CH2/EX2.11/ex2_11.sce b/1436/CH2/EX2.11/ex2_11.sce
new file mode 100755
index 000000000..d74df0f83
--- /dev/null
+++ b/1436/CH2/EX2.11/ex2_11.sce
@@ -0,0 +1,9 @@
+// Example 2.11, page no-121
+clear
+clc
+
+A=1
+p1=10
+W1=A*p1
+printf("W1 = %d kg",W1)
+printf("\nWith the 4 standard weights of 10kg, 20kg, 30kg and 40kg ")
diff --git a/1436/CH2/EX2.12/ex2_12.sce b/1436/CH2/EX2.12/ex2_12.sce
new file mode 100755
index 000000000..74097aea9
--- /dev/null
+++ b/1436/CH2/EX2.12/ex2_12.sce
@@ -0,0 +1,10 @@
+// Example 2.12, page no-122
+clear
+clc
+
+p1=10^-2
+h1=20
+K=p1/h1^2
+p2=K*30^2
+p2=p2*100
+printf("The unknown pressure p2 = %.2f * 10^-2 torr",p2)
diff --git a/1436/CH2/EX2.2/ex2_2.sce b/1436/CH2/EX2.2/ex2_2.sce
new file mode 100755
index 000000000..e060120c0
--- /dev/null
+++ b/1436/CH2/EX2.2/ex2_2.sce
@@ -0,0 +1,19 @@
+// Example 2.2, page no-116
+clear
+clc
+
+//(a)
+gamm=1000
+d=35
+dens_Hg=13.546
+press_in_kg_cm=gamm*d*10^-4
+press_in_mmHg=gamm*d/dens_Hg
+press_in_mmHg=press_in_mmHg/10^3
+printf("(a)\nThe pressure at depth of %d meters in a water tank=%.1f kg/cm^2 = %.2f*10^3 mmHg",d,press_in_kg_cm,press_in_mmHg)
+
+//(b)
+press_atm=1.03
+abspress=press_in_kg_cm+press_atm
+abspress_mmHg=press_in_mmHg*1000+760
+abspress_mmHg=abspress_mmHg/1000
+printf("\n(b)\nAbsolute Pressure= %.2f kg/cm^2 Abs = %.2f*10^3 mmHg Abs",abspress,abspress_mmHg)
diff --git a/1436/CH2/EX2.3/ex2_3.sce b/1436/CH2/EX2.3/ex2_3.sce
new file mode 100755
index 000000000..c03a57f3c
--- /dev/null
+++ b/1436/CH2/EX2.3/ex2_3.sce
@@ -0,0 +1,7 @@
+// Example 2.3, page no-116
+clear
+clc
+
+egp=260
+abspress=760-egp
+printf("Absolute Presssure = %d mmHg",abspress)
diff --git a/1436/CH2/EX2.4/ex2_4.sce b/1436/CH2/EX2.4/ex2_4.sce
new file mode 100755
index 000000000..c95a19a00
--- /dev/null
+++ b/1436/CH2/EX2.4/ex2_4.sce
@@ -0,0 +1,19 @@
+// Example 2.4, page no-117
+clear
+clc
+
+//(a)
+p_diff=500
+pdiff=p_diff*13.546/10000
+printf("(a)\np1-p2 = %.3f kg/cm^2",pdiff)
+
+//(b)
+p1=6770
+p_atm=10300
+abs_p1=p1+p_atm
+printf("\n(b)If p2 is open to atmosphere:\nAbsolute Pressure P1 = %d mmWG abs.",abs_p1)
+
+//(c)
+P1=500
+P1_gauge=P1-760
+printf("\n(c)If p2 is evacuated and sealed:\np1= %d mmHg gauge Pressure",P1_gauge)
diff --git a/1436/CH2/EX2.5/ex2_5.sce b/1436/CH2/EX2.5/ex2_5.sce
new file mode 100755
index 000000000..218927709
--- /dev/null
+++ b/1436/CH2/EX2.5/ex2_5.sce
@@ -0,0 +1,9 @@
+// Example 2.5, page no-117
+clear
+clc
+
+spe_grav_water=1
+spe_grav_X=spe_grav_water*100/50
+wt_dens_water=1000
+wt_dens_X=wt_dens_water*2
+printf("Weight Density of X = %d kg/m^3",wt_dens_X)
diff --git a/1436/CH2/EX2.6/ex2_6.sce b/1436/CH2/EX2.6/ex2_6.sce
new file mode 100755
index 000000000..16c917127
--- /dev/null
+++ b/1436/CH2/EX2.6/ex2_6.sce
@@ -0,0 +1,9 @@
+// Example 2.6, page no-117
+clear
+clc
+
+A=1/20
+p_diff=1500
+printf("(a)\nAs Delta_h=A2/A1*h << h and normally negligiblefor well type manometer\nhence, p1-p2 = h = %d =111 mmHg",p_diff)
+
+printf("\n(b)\nh measured above the oriinal reference will be half of H, i.e. 111/2=55.5 mmHg\n(Since area of both legs are same)")
diff --git a/1436/CH2/EX2.7/ex2_7.sce b/1436/CH2/EX2.7/ex2_7.sce
new file mode 100755
index 000000000..4b7ecb36c
--- /dev/null
+++ b/1436/CH2/EX2.7/ex2_7.sce
@@ -0,0 +1,12 @@
+// Example 2.7, page no-119
+clear
+clc
+
+printf("1 kg/cm^2 = 10 mWG\n")
+//(a)
+press=10+2
+printf("\n(a)Bourdon Gauge is mounted 20 meters below water line:\nPressure read by the Gauge = %d kg/cm^2",press)
+
+//(b)
+press2=10-3
+printf("\n\n(b)Bourdon Gauge is located 30 meters above the water line:\nPressure read by the Gauge = %d kg/cm^2",press2)
diff --git a/1436/CH2/EX2.8/ex2_8.sce b/1436/CH2/EX2.8/ex2_8.sce
new file mode 100755
index 000000000..afaf6ff06
--- /dev/null
+++ b/1436/CH2/EX2.8/ex2_8.sce
@@ -0,0 +1,16 @@
+// Example 2.8, page no-120
+clear
+clc
+
+dens_water=1000
+h1=125
+h2=250
+d2=(h1/h2)*dens_water
+printf("(a)\nDensity of Liquid = %d kg/m^3",d2)
+printf("\nSpecific Density of the liquid = %.1f",(h1/h2))
+
+//(b)
+printf("\n\n(b)\nIf Values of water and liquid interchanged:\n")
+d3=(h2/h1)*dens_water
+printf("\nDensity of Liquid = %d kg/m^3",d3)
+printf("\nSpecific Density of the liquid = %.1f",(h2/h1))
diff --git a/1436/CH2/EX2.9/ex2_9.sce b/1436/CH2/EX2.9/ex2_9.sce
new file mode 100755
index 000000000..97a26228a
--- /dev/null
+++ b/1436/CH2/EX2.9/ex2_9.sce
@@ -0,0 +1,14 @@
+// Example 2.9, page no-120
+clear
+clc
+
+R=120
+l=122
+a=0.1
+rho=R*a/l
+R1=140
+l1=sqrt(R1*a*l/rho)
+l1=ceil(l1)
+printf("Length l1 = %d meters",l1)
+A1=a*l/l1
+printf("\nArea A1 = %.4f mm^2",A1)