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authorpriyanka2015-06-24 15:03:17 +0530
committerpriyanka2015-06-24 15:03:17 +0530
commitb1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (patch)
treeab291cffc65280e58ac82470ba63fbcca7805165 /2021/CH21
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Diffstat (limited to '2021/CH21')
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diff --git a/2021/CH21/EX21.10/EX21_10.pdf b/2021/CH21/EX21.10/EX21_10.pdf
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+//Finding of Diameter
+//Given
+D=25;
+P1=25;
+P2=120;
+//To Find
+A=(%pi/4)*D^2;
+d=(A*P1)/P2;
+d1=sqrt(d);
+disp("Diameter ="+string(d1)+" centimeter");
diff --git a/2021/CH21/EX21.11/EX21_11.pdf b/2021/CH21/EX21.11/EX21_11.pdf
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+//Finding of load on Ram
+//Given
+D=0.2;
+L=6;
+p=588.6*10^4;
+//To Find
+A=(%pi/4)*D^2;
+W=p*A;
+capacity=W*L;
+disp("Load ="+string(W)+" Newtons");
+disp("Capacity of the accumulator ="+string(capacity)+" N-m");
diff --git a/2021/CH21/EX21.12/EX21_12.sce b/2021/CH21/EX21.12/EX21_12.sce
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+//Finding of Pressure of water
+//Given
+W=490500;
+Fr=39240;
+d=40;
+//To Find
+A=(%pi/4)*d^2;
+Wu=W+Fr;
+P1=Wu/A;
+Wd=W-Fr;
+P2=Wd/A;
+disp("Pressure while moving up ="+string(P1)+" N/cm^2");
+disp("Pressure while moving down ="+string(P2)+" N/cm^2");
diff --git a/2021/CH21/EX21.12/Ex21_12.pdf b/2021/CH21/EX21.12/Ex21_12.pdf
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+//Finding of Power delivered
+//Given
+L=(588600-(588600*4)/100);
+d=35;
+l=5;
+q=0.008;
+t1=2.5*60;
+rho=1000;
+g=9.81;
+//To Find
+A=(%pi/4)*d^2;
+P=L/A;
+P1=P*10^4;
+H=P1/(rho*g);
+W1=q*1000*g*H;
+W2=L*l/t1;
+W3=W1+W2;
+W4=W3/1000;
+disp("Power Delivered ="+string(W4)+" Kilo Watts");
diff --git a/2021/CH21/EX21.14/EX21_14.pdf b/2021/CH21/EX21.14/EX21_14.pdf
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+//Finding of Efficiency ,Slip
+//Given
+Nb=780;
+Na=800;
+//To Find
+E=Nb/Na;
+E1=E*100;
+S=100-E1;
+disp("Efficiency ="+string(E1)+" percentage");
+disp("Slip ="+string(S)+" Percentage");
diff --git a/2021/CH21/EX21.2/EX21_2.pdf b/2021/CH21/EX21.2/EX21_2.pdf
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+//Finding of Force,Power,strokes
+//Given
+d1=0.3;
+d2=0.15;
+W=600;
+d=1.2;
+s=0.25;
+//To Find
+A1=(%pi/4)*d1^2;
+A2=(%pi/4)*d2^2;
+F=(A1/A2)*W;
+W1=W*(d/1200);
+P=W1/1000;
+S=(A1/A2)*(d/s);
+disp("Force ="+string(F)+" Newtons");
+disp("Power required ="+string(P)+" Kilo Watts");
+disp("Number of strokes ="+string(S)+" No units");
diff --git a/2021/CH21/EX21.3/EX21_3.pdf b/2021/CH21/EX21.3/EX21_3.pdf
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+//Finding of Efficiency
+//Given
+W=0.03;
+rho=1000;
+g=9.81;
+w=0.003;
+H1=4;
+H2=18;
+//To Find
+W1=rho*g*W;
+w1=rho*g*w;
+E1=(w1*H2)/(W1*H1)*100;
+E2=(w1*(H2-H1))/((W1-w1)*H1)*100;
+disp("D Aubuissons Efficiency ="+string(E1)+" percentage");
+disp("Rankine Efficiency ="+string(E2)+" percentage");
diff --git a/2021/CH21/EX21.4/EX21_4.pdf b/2021/CH21/EX21.4/EX21_4.pdf
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+//Finding of Power, Working ,Idle Period
+//Given
+H=12;
+t=100;
+W=98100;
+v=0.6;
+w=981*12;
+//To Find
+P=w/1000;
+T1=H/v;
+T2=100-T1;
+disp("Power Required ="+string(P)+" Kilo watt");
+disp("Time for working ="+string(T1)+" seconds");
+disp("Idle Time ="+string(T2)+" seconds");
diff --git a/2021/CH21/EX21.7/EX21_7.pdf b/2021/CH21/EX21.7/EX21_7.pdf
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+//Finding of Volume ,Diameter
+//Given
+L=44145;
+H=10;
+E=0.55;
+P=490.5*10^4;
+//To Find
+W=L*H;
+F=P*(%pi/4);
+Energy=F*5;
+d=W/(Energy*E);
+d1=d^(.33);
+V=((%pi/4)*d1^2)*(5*d1);
+disp("Diameter ="+string(d1)+" meter");
+disp("Volume ="+string(V)+" m^3");
diff --git a/2021/CH21/EX21.9/EX21_9.pdf b/2021/CH21/EX21.9/EX21_9.pdf
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+//Finding of Pressure intensity
+//Given
+P=17;
+D=12;
+d=5;
+//To Find
+A=(%pi/4)*D^2;
+a=(%pi/4)*d^2;
+p=(A/a)*P;
+disp("Pressure Intensity ="+string(p)+" N/cm^2");