diff options
author | prashantsinalkar | 2017-10-10 12:38:01 +0530 |
---|---|---|
committer | prashantsinalkar | 2017-10-10 12:38:01 +0530 |
commit | f35ea80659b6a49d1bb2ce1d7d002583f3f40947 (patch) | |
tree | eb72842d800ac1233e9d890e020eac5fd41b0b1b /32/CH16 | |
parent | 7f60ea012dd2524dae921a2a35adbf7ef21f2bb6 (diff) | |
download | Scilab-TBC-Uploads-f35ea80659b6a49d1bb2ce1d7d002583f3f40947.tar.gz Scilab-TBC-Uploads-f35ea80659b6a49d1bb2ce1d7d002583f3f40947.tar.bz2 Scilab-TBC-Uploads-f35ea80659b6a49d1bb2ce1d7d002583f3f40947.zip |
updated the code
Diffstat (limited to '32/CH16')
-rwxr-xr-x | 32/CH16/EX16.10/16_10.sce | 65 |
1 files changed, 33 insertions, 32 deletions
diff --git a/32/CH16/EX16.10/16_10.sce b/32/CH16/EX16.10/16_10.sce index b0b0942e5..5fd56b277 100755 --- a/32/CH16/EX16.10/16_10.sce +++ b/32/CH16/EX16.10/16_10.sce @@ -1,33 +1,34 @@ -//pathname=get_absolute_file_path('16.10.sce')
-//filename=pathname+filesep()+'16.10-data.sci'
-//exec(filename)
-//Barometer reading(in cm):
-h=75.6
-//Density of mercury(in kg/cm^3):
-d=0.013591
-//Diameter of orifice(in m):
-d1=15*10^(-3)
-//Coefficient of discharge:
-r1=0.65
-//Acceleration due to gravity(in m/s^2):
-g=9.81
-//Atmospheric temperature(in K):
-T=25+273
-//Manometer reading(in cm):
-h1=13
-//Cross-sectional area of orifice(in m^2):
-A=%pi*d1^2/4
-//Atmospheric pressure(in kPa):
-p=h*d*g*10
-//Specific volume at atmospheric conditions(in m^3/kg):
-v=(R*T)/p
-//Density of air(in kg/m^3):
-da=1/v
-//Pressure difference across orifice(in kPa):
-pd=h1*d*g*10
-//Height of air column(in m):
-ha=pd*10^3/(da*g)
-//Free air delivery(in m^3/min):
-f=r1*A*sqrt(2*g*ha)*60
-printf("\n RESULT \n")
+//pathname=get_absolute_file_path('16.10.sce') +//filename=pathname+filesep()+'16.10-data.sci' +//exec(filename) +R = 0.287; +//Barometer reading(in cm): +h=75.6 +//Density of mercury(in kg/cm^3): +d=0.013591 +//Diameter of orifice(in m): +d1=15*10^(-3) +//Coefficient of discharge: +r1=0.65 +//Acceleration due to gravity(in m/s^2): +g=9.81 +//Atmospheric temperature(in K): +T=25+273 +//Manometer reading(in cm): +h1=13 +//Cross-sectional area of orifice(in m^2): +A=%pi*d1^2/4 +//Atmospheric pressure(in kPa): +p=h*d*g*10 +//Specific volume at atmospheric conditions(in m^3/kg): +v=(R*T)/p +//Density of air(in kg/m^3): +da=1/v +//Pressure difference across orifice(in kPa): +pd=h1*d*g*10 +//Height of air column(in m): +ha=pd*10^3/(da*g) +//Free air delivery(in m^3/min): +f=r1*A*sqrt(2*g*ha)*60 +printf("\n RESULT \n") printf("\nFree air delivery = %f m^3/min",f)
\ No newline at end of file |