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-rwxr-xr-xWorking_Examples/293/CH2/EX2.1.a/eg2_1a.sce6
-rwxr-xr-xWorking_Examples/293/CH2/EX2.1.b/eg2_1b.sce10
-rwxr-xr-xWorking_Examples/293/CH2/EX2.1.c/eg2_1c.sce15
-rw-r--r--Working_Examples/293/CH2/EX2.10/eg210.xcos1
-rwxr-xr-xWorking_Examples/293/CH2/EX2.10/eg2_10.pdfbin0 -> 1937 bytes
-rwxr-xr-xWorking_Examples/293/CH2/EX2.10/eg2_10.xcos1
-rwxr-xr-xWorking_Examples/293/CH2/EX2.2/eg2_2.sce17
-rwxr-xr-xWorking_Examples/293/CH2/EX2.3/eg2_3.sce6
-rwxr-xr-xWorking_Examples/293/CH2/EX2.4/eg2_4.sce8
-rwxr-xr-xWorking_Examples/293/CH2/EX2.5/eg2_5.pdfbin0 -> 12768 bytes
-rwxr-xr-xWorking_Examples/293/CH2/EX2.5/eg2_5.sce22
-rwxr-xr-xWorking_Examples/293/CH2/EX2.6/eg2_6.pdfbin0 -> 13662 bytes
-rwxr-xr-xWorking_Examples/293/CH2/EX2.6/eg2_6.sce26
-rwxr-xr-xWorking_Examples/293/CH2/EX2.7/eg2_7.sce17
-rwxr-xr-xWorking_Examples/293/CH2/EX2.8/eg2_8.sce5
-rwxr-xr-xWorking_Examples/293/CH2/EX2.9/eg2_9.sce6
16 files changed, 140 insertions, 0 deletions
diff --git a/Working_Examples/293/CH2/EX2.1.a/eg2_1a.sce b/Working_Examples/293/CH2/EX2.1.a/eg2_1a.sce
new file mode 100755
index 0000000..993d36f
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.1.a/eg2_1a.sce
@@ -0,0 +1,6 @@
+V = 1; // voltage supply
+R = 10; // resistance in ohms
+I = V/R //current flowing through R
+disp("a)")
+disp(V,"voltage across the resistor (in volts)=")
+disp(I,"current flowing through the resistor (in amps) =")
diff --git a/Working_Examples/293/CH2/EX2.1.b/eg2_1b.sce b/Working_Examples/293/CH2/EX2.1.b/eg2_1b.sce
new file mode 100755
index 0000000..154f28e
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.1.b/eg2_1b.sce
@@ -0,0 +1,10 @@
+V = 1; // voltage supply
+R1 = 10; // first resistance in ohms
+R2 = 5; //resistance of the second resistor
+Vr1 = V * (R1/(R1 + R2)); //voltage across R1
+Vr2 = V - Vr1; //voltage across R2
+Ir = Vr1/R1; //current flowing through R
+
+disp(Vr1,"voltage across the first resistor (in volts)=")
+disp(Vr2,"voltage across the second resistor (in volts)=")
+disp(Ir,"current flowing through the resistor (in amps) =") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.1.c/eg2_1c.sce b/Working_Examples/293/CH2/EX2.1.c/eg2_1c.sce
new file mode 100755
index 0000000..a0f263d
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.1.c/eg2_1c.sce
@@ -0,0 +1,15 @@
+//c - a
+R1 = 10; // first resistance in ohms
+ R2 = 5;
+I = 1; // current source
+V = I*R1; // voltage across R
+disp("c - a)")
+disp(V,"voltage across the resistor (in volts)=")
+disp(I,"current flowing through the resistor (in amps) =")
+
+//c - b
+Vr1 = I*R1; // voltage across R1
+Vr2 = I*R2; //voltage across R2
+disp("c - b)")
+disp(V,"voltage across the resistor (in volts)=")
+disp(I,"current flowing through the resistor (in amps) =") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.10/eg210.xcos b/Working_Examples/293/CH2/EX2.10/eg210.xcos
new file mode 100644
index 0000000..305262f
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.10/eg210.xcos
@@ -0,0 +1 @@
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diff --git a/Working_Examples/293/CH2/EX2.10/eg2_10.pdf b/Working_Examples/293/CH2/EX2.10/eg2_10.pdf
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diff --git a/Working_Examples/293/CH2/EX2.10/eg2_10.xcos b/Working_Examples/293/CH2/EX2.10/eg2_10.xcos
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@@ -0,0 +1 @@
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diff --git a/Working_Examples/293/CH2/EX2.2/eg2_2.sce b/Working_Examples/293/CH2/EX2.2/eg2_2.sce
new file mode 100755
index 0000000..3714ebb
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.2/eg2_2.sce
@@ -0,0 +1,17 @@
+R = 100; // resistance in ohms
+I = 0.3; // current in amps
+P = I^2 * R; // power
+//power specification of the resistors available in the stock
+Pa = 5;
+Pb = 7.5;
+Pc = 10;
+
+if Pa > P then
+ disp("we should select resistor a")
+end
+if Pb > P then
+ disp("we should select resistor b")
+end
+if Pc > P then
+ disp("we should select resistor c")
+end \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.3/eg2_3.sce b/Working_Examples/293/CH2/EX2.3/eg2_3.sce
new file mode 100755
index 0000000..9a2694b
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.3/eg2_3.sce
@@ -0,0 +1,6 @@
+L = 1; //length of the copper wire in meters
+A = 1 * 10^-4; // cross sectional area of the wire in meter square
+rho = 1.724 * 10^-8; // resistivity of copper in ohm meter
+R = rho*L / A; // resistance of the wire in ohm
+
+disp(R, "resistance of the wire (in ohms)=") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.4/eg2_4.sce b/Working_Examples/293/CH2/EX2.4/eg2_4.sce
new file mode 100755
index 0000000..2ea3640
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.4/eg2_4.sce
@@ -0,0 +1,8 @@
+//1 inches = 0.0254meters
+//1 foot = 0.3048 meters
+d = 0.1*0.0254; // diameter of the wire in meters
+L = 10*0.3048; //length of the wire in meters
+rho = 1.724*10^-8; // resistivity of the wire in ohm-meter
+A = %pi*(d/2)^2; // cross sectional area of the wire
+R = rho*L/A; //resistance of the wire in ohm
+disp(R,"resistance of the wire (in ohm)=") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.5/eg2_5.pdf b/Working_Examples/293/CH2/EX2.5/eg2_5.pdf
new file mode 100755
index 0000000..f55213b
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.5/eg2_5.pdf
Binary files differ
diff --git a/Working_Examples/293/CH2/EX2.5/eg2_5.sce b/Working_Examples/293/CH2/EX2.5/eg2_5.sce
new file mode 100755
index 0000000..f1659ed
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.5/eg2_5.sce
@@ -0,0 +1,22 @@
+L = 0.1; // inductance of the coil in henry
+t1 = [0:0.001:0.1];
+t2 = [0.101:0.001:0.3];
+t3 = [0.301:0.001:0.6];
+t4 = [0.601:0.001:0.7];
+t5 = [0.701:0.001:0.9]
+//current variation as a function of time
+i1 = 100*t1;
+i2 = (-50*t2) + 15;
+i3 = -100*sin(%pi*(t3-0.3)/0.3);
+i4 = (100*t4) - 60;
+i5 = (-50*t5) + 45;
+
+t = [t1,t2,t3,t4,t5];
+i = [i1,i2,i3,i4,i5];
+plot(t, i)
+
+dt = 0.001;
+di = diff(i);
+V = L*di/dt; //voltage drop appearing across the inductor terminals
+Tv = [0:0.001:0.899];
+plot(Tv, V, "green") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.6/eg2_6.pdf b/Working_Examples/293/CH2/EX2.6/eg2_6.pdf
new file mode 100755
index 0000000..7e625db
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.6/eg2_6.pdf
Binary files differ
diff --git a/Working_Examples/293/CH2/EX2.6/eg2_6.sce b/Working_Examples/293/CH2/EX2.6/eg2_6.sce
new file mode 100755
index 0000000..5094d17
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.6/eg2_6.sce
@@ -0,0 +1,26 @@
+C = 0.01; // capacitance of the capacitor in Farads
+t1 = [0:0.001:0.1];
+t2 = [0.101:0.001:0.3];
+t3 = [0.301:0.001:0.6];
+t4 = [0.601:0.001:0.7];
+t5 = [0.701:0.001:0.9]
+//current variation as a function of time
+i1 = 100*t1;
+i2 = (-50*t2) + 15;
+i3 = -100*sin(%pi*(t3-0.3)/0.3);
+i4 = (100*t4) - 60;
+i5 = (-50*t5) + 45;
+
+t = [t1,t2,t3,t4,t5];
+i = [i1,i2,i3,i4,i5];
+plot(t, i)
+
+// voltage across the capacitor as a function of time
+V1 = (1/C)*integrate('100*t','t',0,t1);
+V2 = (1/C)*integrate('(-50*t)+15','t',0.101,t2);
+V3 = (1/C)*integrate('-100*sin(%pi*(t-0.3)/0.3)','t',0.301,t3);
+V4 = (1/C)*integrate('(100*t) - 60','t',0.601,t4);
+V5 = (1/C)*integrate('(-50*t) + 45','t',0.701,t5);
+V = [V1, V2, V3, V4, V5];
+
+plot(t, V, "green") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.7/eg2_7.sce b/Working_Examples/293/CH2/EX2.7/eg2_7.sce
new file mode 100755
index 0000000..3f437fe
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.7/eg2_7.sce
@@ -0,0 +1,17 @@
+//a
+Ri = 1;
+Rf = 39;
+A = 10^5; //open loop gain of the op-amp
+G = A/(1 + (A*Ri/(Ri+Rf))); //actual voltage gain of the circuit
+disp("a")
+disp(G,"actual voltage of the circuit =")
+
+//b
+G1 = 1 + (Rf/Ri); // voltage gain of the circuit with infinite open loop gain
+disp("b")
+disp(G1,"for ideal case the voltage gain =")
+
+//c
+er = ((G1 - G)/G)*100; //percent error
+disp("c")
+disp(er,"percent error of the ideal value compared to the actual value=") \ No newline at end of file
diff --git a/Working_Examples/293/CH2/EX2.8/eg2_8.sce b/Working_Examples/293/CH2/EX2.8/eg2_8.sce
new file mode 100755
index 0000000..9a60968
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.8/eg2_8.sce
@@ -0,0 +1,5 @@
+G = 4; // voltage gain of the circuit
+r = G -1; // ratio of the resistances in the non-inverting op-amp circuit
+disp(r,"Rf/Ri =")
+//Result:
+//A suitable choice for R1 is 10K, Hence Rf = 30K
diff --git a/Working_Examples/293/CH2/EX2.9/eg2_9.sce b/Working_Examples/293/CH2/EX2.9/eg2_9.sce
new file mode 100755
index 0000000..b204274
--- /dev/null
+++ b/Working_Examples/293/CH2/EX2.9/eg2_9.sce
@@ -0,0 +1,6 @@
+G = 4;
+r = G; // ratio of the resistances in the inverting op-amp circuit
+disp(r,"Rf/Ri")
+//Result;
+//A suitable choice for Rf=30K and R1=7.5K
+//therefore input resistance R1 = 7.5K