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authorprashantsinalkar2017-10-10 12:27:19 +0530
committerprashantsinalkar2017-10-10 12:27:19 +0530
commit7f60ea012dd2524dae921a2a35adbf7ef21f2bb6 (patch)
treedbb9e3ddb5fc829e7c5c7e6be99b2c4ba356132c /911/CH9
parentb1f5c3f8d6671b4331cef1dcebdf63b7a43a3a2b (diff)
downloadScilab-TBC-Uploads-7f60ea012dd2524dae921a2a35adbf7ef21f2bb6.tar.gz
Scilab-TBC-Uploads-7f60ea012dd2524dae921a2a35adbf7ef21f2bb6.tar.bz2
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initial commit / add all books
Diffstat (limited to '911/CH9')
-rw-r--r--911/CH9/EX9.1/ex_9_1.pdfbin0 -> 109556 bytes
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-rw-r--r--911/CH9/EX9.10.a/ex_9_10_a.pdfbin0 -> 110286 bytes
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-rw-r--r--911/CH9/EX9.11.a/ex_9_11_a.pdfbin0 -> 107522 bytes
-rw-r--r--911/CH9/EX9.11.a/ex_9_11_a.sce6
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-rw-r--r--911/CH9/EX9.11.b/ex_9_11_b.sce6
-rw-r--r--911/CH9/EX9.12/ex_9_12.pdfbin0 -> 110796 bytes
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-rw-r--r--911/CH9/EX9.13/ex_9_13.pdfbin0 -> 110372 bytes
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-rw-r--r--911/CH9/EX9.3.a/ex_9_3_a.pdfbin0 -> 112034 bytes
-rw-r--r--911/CH9/EX9.3.b/ex_9_3_b.pdfbin0 -> 108991 bytes
-rw-r--r--911/CH9/EX9.3.b/ex_9_3_b.sce9
-rw-r--r--911/CH9/EX9.5.a/ex_9_5_a.pdfbin0 -> 108416 bytes
-rw-r--r--911/CH9/EX9.5.a/ex_9_5_a.sce9
-rw-r--r--911/CH9/EX9.5.a/ex_9_5_a.xcos1
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-rw-r--r--911/CH9/EX9.6/ex_9_6.pdfbin0 -> 108306 bytes
-rw-r--r--911/CH9/EX9.6/ex_9_6.sce6
-rw-r--r--911/CH9/EX9.7.b/ex_9_7_b.pdfbin0 -> 109178 bytes
-rw-r--r--911/CH9/EX9.7.b/ex_9_7_b.sce7
-rw-r--r--911/CH9/EX9.7/ex_9_7.pdfbin0 -> 107621 bytes
-rw-r--r--911/CH9/EX9.7/ex_9_7.sce8
-rw-r--r--911/CH9/EX9.8/ex_9_8.xcos1
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diff --git a/911/CH9/EX9.1/ex_9_1.pdf b/911/CH9/EX9.1/ex_9_1.pdf
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diff --git a/911/CH9/EX9.1/ex_9_1.sce b/911/CH9/EX9.1/ex_9_1.sce
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+//exmaple 9.1//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=bin2dec('0000')
+//given initial state//
+c=bin2dec('0011')
+//given final state//
+n=input('Enter the loop no = ')
+d=(16*(n-1))+c-a;
+disp(d,'No of negative clock cycles occured till now= ') \ No newline at end of file
diff --git a/911/CH9/EX9.10.a/ex_9_10_a.pdf b/911/CH9/EX9.10.a/ex_9_10_a.pdf
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diff --git a/911/CH9/EX9.10.a/ex_9_10_a.sce b/911/CH9/EX9.10.a/ex_9_10_a.sce
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+//example 9.10(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('At the end of eigth LOW to HIGH clock transition, the data bits loaded into the register will be 10110010, with ''0'' on the extreme right appearing at the Q7 output. The ninth clock transition will shift this 0 out of the register and the next adjacent bit (i.e.''1'') will take its place on Q7 output. Each subsequent clock pulse will shift the bits one step towards right with the result that at the end of 11th clock transition, the Q7 output will be logic ''0''. ') \ No newline at end of file
diff --git a/911/CH9/EX9.10.b/ex_9_10_b.pdf b/911/CH9/EX9.10.b/ex_9_10_b.pdf
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diff --git a/911/CH9/EX9.10.b/ex_9_10_b.sce b/911/CH9/EX9.10.b/ex_9_10_b.sce
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+//example 9.10(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('It will be logic ''1'' only. The Q3 output will be shifted two positions to right by two clock transitions.') \ No newline at end of file
diff --git a/911/CH9/EX9.11.a/ex_9_11_a.pdf b/911/CH9/EX9.11.a/ex_9_11_a.pdf
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diff --git a/911/CH9/EX9.11.a/ex_9_11_a.sce b/911/CH9/EX9.11.a/ex_9_11_a.sce
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+//example 9.11.a//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The modulus of a ring counter is same as the number of bits (or flip flops). Therefore, the number of flip flops required is 10. The count sequence is 1000000000, 0100000000, 0010000000, 0001000000, 0000100000, 0000010000, 0000001000, 0000000100, 0000000010, 0000000001, and back to 1000000000') \ No newline at end of file
diff --git a/911/CH9/EX9.11.b/ex_9_11_b.pdf b/911/CH9/EX9.11.b/ex_9_11_b.pdf
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index 000000000..f44ecb31b
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diff --git a/911/CH9/EX9.11.b/ex_9_11_b.sce b/911/CH9/EX9.11.b/ex_9_11_b.sce
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index 000000000..12f71dd60
--- /dev/null
+++ b/911/CH9/EX9.11.b/ex_9_11_b.sce
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+//example 9.11.b//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The modulus of a Johnson counter is twice as the number of bits (or flip flops). Therefore, the number of flip flops required is 5. The count sequence is 00000, 10000, 11000, ,11100, 11110, 11111, 01111, 00111, 00011, 00001 and back to 00000') \ No newline at end of file
diff --git a/911/CH9/EX9.12/ex_9_12.pdf b/911/CH9/EX9.12/ex_9_12.pdf
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diff --git a/911/CH9/EX9.12/ex_9_12.sce b/911/CH9/EX9.12/ex_9_12.sce
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index 000000000..226efe4a0
--- /dev/null
+++ b/911/CH9/EX9.12/ex_9_12.sce
@@ -0,0 +1,6 @@
+//example 9.12//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The LSB of the five-bit ring counter feeds the clock input of the JK flip flop that has been wired as a toggle flip-flop. The ring counter has a modulus of five and the JK flip-flop works like a divide by two circuit. The modulus of the counter circuit obtained by the cascade arrangement of the two is therefore 10. It is very simple to write the count sequence. First, we write the first ten states of the ring counter output(designated by A, B, C, D and E). The logic status of F can be written by examining logic status of E. F toggles whenever E undergoes 1-to-0 transition') \ No newline at end of file
diff --git a/911/CH9/EX9.13/ex_9_13.pdf b/911/CH9/EX9.13/ex_9_13.pdf
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diff --git a/911/CH9/EX9.13/ex_9_13.sce b/911/CH9/EX9.13/ex_9_13.sce
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+//example 9.13//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('Initially all the outputs are in logic 0 state. Since A=B=1, the serial input to the shift register is logic 1. The (MR)'' input is initially inactive. For the first three clock pulses, the output status is 10000000, 11000000 and 11100000. With the fourth clock pulse, the output tends to go to 11110000 but it can not be stable state as the NAND output goes from 1 to 0. This resets the register to 00000000. Thus, the register transits from 11100000 to 00000000. With the fifth, sixth, and seventh clock pulse, the circuit goes through 10000000, 11000000 and 11100000. The eighth clock pulse regenerates to 00000000') \ No newline at end of file
diff --git a/911/CH9/EX9.2/ex_9_2.pdf b/911/CH9/EX9.2/ex_9_2.pdf
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diff --git a/911/CH9/EX9.2/ex_9_2.sce b/911/CH9/EX9.2/ex_9_2.sce
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index 000000000..0d76906d3
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+//example 9.2//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+close
+//closes all other files//
+a=log(6000)
+//from the data//
+b=log(2)
+c=a/b;
+N=round(c)
+disp('Minimum number of flip flops=')
+disp(N) \ No newline at end of file
diff --git a/911/CH9/EX9.3.a/ex_9_3.sce b/911/CH9/EX9.3.a/ex_9_3.sce
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index 000000000..a038ffc93
--- /dev/null
+++ b/911/CH9/EX9.3.a/ex_9_3.sce
@@ -0,0 +1,16 @@
+//example 9.3(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+// ff = input ( ' Enter the no of flip-flops ' ) ;
+ff =4;
+//given input//
+k=2^ff;
+if(k ==2) then // output d i s p l a y
+printf ( 'With given flipflop we can only count 2 ,we can have a modulus 2 counter' );
+else
+printf ( 'With given number of flip-flops the counter will have a natural count of %d ' ,k);
+printf ( 'We can thus construct any counter that has a modulus between 2 and %d' ,k )
+disp('in our given question we are given count till 1011 so, it will be mod 12 counter')
+end \ No newline at end of file
diff --git a/911/CH9/EX9.3.a/ex_9_3_a.pdf b/911/CH9/EX9.3.a/ex_9_3_a.pdf
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diff --git a/911/CH9/EX9.3.b/ex_9_3_b.pdf b/911/CH9/EX9.3.b/ex_9_3_b.pdf
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diff --git a/911/CH9/EX9.3.b/ex_9_3_b.sce b/911/CH9/EX9.3.b/ex_9_3_b.sce
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--- /dev/null
+++ b/911/CH9/EX9.3.b/ex_9_3_b.sce
@@ -0,0 +1,9 @@
+//example 9.3(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+f=1.2*1000000/12
+//from part a//
+disp(f, 'frequency of given system (in Hz)=')
+//in Hz// \ No newline at end of file
diff --git a/911/CH9/EX9.5.a/ex_9_5_a.pdf b/911/CH9/EX9.5.a/ex_9_5_a.pdf
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diff --git a/911/CH9/EX9.5.a/ex_9_5_a.sce b/911/CH9/EX9.5.a/ex_9_5_a.sce
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--- /dev/null
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@@ -0,0 +1,9 @@
+//example 9.5(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+close
+//closes all open files//
+disp('here we have 4 flip flops, in which initial input is 0000')
+disp('Count sequence is given as 0000, 1111, 1110, 1101, 1100, 1011, 1010, 1001, 1000, 0111, 0110, 0101, 0100, 0011, 0010, 0001. ') \ No newline at end of file
diff --git a/911/CH9/EX9.5.a/ex_9_5_a.xcos b/911/CH9/EX9.5.a/ex_9_5_a.xcos
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+<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="677ec6dd:13dc6ef6f4a:-7fff"/><mxCell id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><BasicBlock blockType="h" dependsOnU="1" id="677ec6dd:13dc6ef6f4a:-7fd8" interfaceFunctionName="JKFLIPFLOP" ordering="1" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="JKFLIPFLOP"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" 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parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" connectedLinkId="8" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fca" ordering="2" parent="677ec6dd:13dc6ef6f4a:-7fcc" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="70.0" y="96.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="8" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fc2" ordering="2" parent="677ec6dd:13dc6ef6f4a:-7fc6" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ExplicitInputPort></ExplicitLink><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f95" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="140.0" y="170.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f94" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f95" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f91"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="164.0" y="180.0"/><mxPoint as="targetPoint" x="180.0" y="180.0"/></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f94" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f95" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="677ec6dd:13dc6ef6f4a:-7fd5" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7fd8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f8e" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="140.0" y="260.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f8d" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f8e" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f8a"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="164.0" y="270.0"/><mxPoint as="targetPoint" x="190.0" y="270.0"/><Array as="points" scilabClass=""><mxPoint x="190.0" y="270.0"/><mxPoint x="180.0" y="270.0"/></Array></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f8d" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f8e" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fd3" ordering="3" parent="677ec6dd:13dc6ef6f4a:-7fd8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="106.0"/></ExplicitInputPort></ExplicitLink><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f89" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="270.0" y="170.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f88" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f89" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f7f" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="270.0" y="260.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f7e" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f7f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f7b" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="380.0" y="260.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f7a" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f7b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f79" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="390.0" y="170.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f78" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f79" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f83" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" 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x="130.0"><mxPoint as="sourcePoint" x="294.0" y="180.0"/><mxPoint as="targetPoint" x="310.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="310.0" y="180.0"/><mxPoint x="310.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f88" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f89" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="677ec6dd:13dc6ef6f4a:-7fcf" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7fd2" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f68"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="294.0" y="270.0"/><mxPoint as="targetPoint" x="310.0" y="270.0"/></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f7e" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f7f" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fcd" ordering="3" parent="677ec6dd:13dc6ef6f4a:-7fd2" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="106.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f67"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="414.0" y="180.0"/><mxPoint as="targetPoint" x="440.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="430.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f78" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f79" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="677ec6dd:13dc6ef6f4a:-7fc9" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7fcc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f66"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="404.0" y="270.0"/><mxPoint as="targetPoint" x="430.0" y="270.0"/></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f7a" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f7b" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fc7" ordering="3" parent="677ec6dd:13dc6ef6f4a:-7fcc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="106.0"/></ExplicitInputPort></ExplicitLink><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f81" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="20.0" width="20.0" x="510.0" y="150.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f80" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f81" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f5f"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="534.0" y="160.0"/><mxPoint as="targetPoint" x="560.0" y="180.0"/><Array as="points" scilabClass=""><mxPoint x="550.0" y="160.0"/><mxPoint x="550.0" y="180.0"/><mxPoint x="560.0" y="180.0"/><mxPoint x="550.0" y="180.0"/><mxPoint x="550.0" y="180.0"/></Array></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f80" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f81" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" connectedLinkId="9" dataColumns="1" dataLines="1" dataType="UNKNOW_TYPE" id="677ec6dd:13dc6ef6f4a:-7fc3" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7fc6" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f5e"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="534.0" y="290.0"/><mxPoint as="targetPoint" x="560.0" y="270.0"/><Array as="points" scilabClass=""><mxPoint x="550.0" y="290.0"/><mxPoint x="550.0" y="290.0"/><mxPoint x="550.0" y="270.0"/></Array></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f82" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f83" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="20.0" y="6.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fc1" ordering="3" parent="677ec6dd:13dc6ef6f4a:-7fc6" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="106.0"/></ExplicitInputPort></ExplicitLink><ConstBlock blockType="d" id="677ec6dd:13dc6ef6f4a:-7f5d" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionType="C_OR_FORTRAN" value="Clock (input)"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="90.0" x="50.0" y="200.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f5c" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f5d" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="16.0"/></ExplicitOutputPort><ExplicitLink id="677ec6dd:13dc6ef6f4a:-7f59"><mxGeometry as="geometry" x="130.0"><mxPoint as="sourcePoint" x="164.0" y="220.0"/><mxPoint as="targetPoint" x="190.0" y="220.0"/><Array as="points" scilabClass=""><mxPoint x="180.0" y="220.0"/></Array></mxGeometry><mxCell as="parent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7f5c" ordering="1" parent="677ec6dd:13dc6ef6f4a:-7f5d" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="677ec6dd:13dc6ef6f4a:-7fd4" ordering="2" parent="677ec6dd:13dc6ef6f4a:-7fd8" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="56.0"/></ExplicitInputPort></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/></XcosDiagram> \ No newline at end of file
diff --git a/911/CH9/EX9.5.b/ex_9_5_b.pdf b/911/CH9/EX9.5.b/ex_9_5_b.pdf
new file mode 100644
index 000000000..4677030dd
--- /dev/null
+++ b/911/CH9/EX9.5.b/ex_9_5_b.pdf
Binary files differ
diff --git a/911/CH9/EX9.5.b/ex_9_5_b.sce b/911/CH9/EX9.5.b/ex_9_5_b.sce
new file mode 100644
index 000000000..2dc346d5a
--- /dev/null
+++ b/911/CH9/EX9.5.b/ex_9_5_b.sce
@@ -0,0 +1,86 @@
+//example 9.5(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+close
+c = [0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 ];
+//taking the values for a mod - counter
+q = [0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 ];
+a = [0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 ];
+b = [0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 ];
+y1=q;
+y2=a;
+y3=b;
+y11p =1;
+y22p =1;
+y33p =1;
+y44p =1;
+cp =1;
+yf1p =1;
+for i =1:17
+ // making arrays to draw the output
+if y1(i)==1 then
+for o =1:100
+y11 ( y11p )=1;
+y11p = y11p +1;
+end
+else
+for o =1:100
+y11 ( y11p )=0;
+y11p = y11p +1;
+end
+end
+if y2(i)==1 then
+for o =1:100
+y21 ( y22p )=1;
+y22p = y22p +1;
+end
+else
+for o =1:100
+y21 ( y22p )=0;
+y22p = y22p +1;
+end
+end
+if y3(i)==1 then
+for o =1:100
+y31 ( y33p )=1;
+y33p = y33p +1;
+end
+else
+for o =1:100
+y31 ( y33p )=0;
+y33p = y33p +1;
+end
+end
+if c(i)==1 then
+for o =1:100
+c1(cp) =1;
+cp=cp +1;
+end
+else
+for o =1:100
+c1(cp) =0;
+cp=cp +1;
+end
+end
+end
+z =[2 2];
+subplot (4 ,1 ,1);
+//ploting the output
+title ( ' Timing Diagram ' );
+plot (c1);
+plot (z);
+ylabel ( 'C ' );
+subplot (4 ,1 ,2);
+plot (y11);
+ylabel ( 'Q' );
+plot (z);
+subplot (4 ,1 ,3);
+plot (y21);
+ylabel ( 'A' );
+plot (z);
+subplot (4 ,1 ,4);
+plot (z);
+ylabel ( 'B ' );
+plot (y31); \ No newline at end of file
diff --git a/911/CH9/EX9.6/ex_9_6.pdf b/911/CH9/EX9.6/ex_9_6.pdf
new file mode 100644
index 000000000..f580c301f
--- /dev/null
+++ b/911/CH9/EX9.6/ex_9_6.pdf
Binary files differ
diff --git a/911/CH9/EX9.6/ex_9_6.sce b/911/CH9/EX9.6/ex_9_6.sce
new file mode 100644
index 000000000..0aeac7db4
--- /dev/null
+++ b/911/CH9/EX9.6/ex_9_6.sce
@@ -0,0 +1,6 @@
+//example 9.6//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('output after 34th clock pulse of A B C D E F G H are 0 0 1 0 1 1 0 0 respectively.') \ No newline at end of file
diff --git a/911/CH9/EX9.7.b/ex_9_7_b.pdf b/911/CH9/EX9.7.b/ex_9_7_b.pdf
new file mode 100644
index 000000000..d7798056c
--- /dev/null
+++ b/911/CH9/EX9.7.b/ex_9_7_b.pdf
Binary files differ
diff --git a/911/CH9/EX9.7.b/ex_9_7_b.sce b/911/CH9/EX9.7.b/ex_9_7_b.sce
new file mode 100644
index 000000000..15b3f5fbe
--- /dev/null
+++ b/911/CH9/EX9.7.b/ex_9_7_b.sce
@@ -0,0 +1,7 @@
+//example 9.7(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The presettable counter has been set as DOWN counter. After 6th pulse it will be set to 0000 state.')
+disp('Immediately after eigth state it will be set to 0100 state.') \ No newline at end of file
diff --git a/911/CH9/EX9.7/ex_9_7.pdf b/911/CH9/EX9.7/ex_9_7.pdf
new file mode 100644
index 000000000..3def5c2c5
--- /dev/null
+++ b/911/CH9/EX9.7/ex_9_7.pdf
Binary files differ
diff --git a/911/CH9/EX9.7/ex_9_7.sce b/911/CH9/EX9.7/ex_9_7.sce
new file mode 100644
index 000000000..99e9d3386
--- /dev/null
+++ b/911/CH9/EX9.7/ex_9_7.sce
@@ -0,0 +1,8 @@
+//exmaple 9.7(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=bin2dec('0110')
+//given initial state//
+disp(a,'Modulus of presettable counter in given condition is:') \ No newline at end of file
diff --git a/911/CH9/EX9.8/ex_9_8.xcos b/911/CH9/EX9.8/ex_9_8.xcos
new file mode 100644
index 000000000..b7d31960f
--- /dev/null
+++ b/911/CH9/EX9.8/ex_9_8.xcos
@@ -0,0 +1 @@
+<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="16c8344c:13f3668420b:-7fff"/><mxCell id="16c8344c:13f3668420b:-8000" parent="16c8344c:13f3668420b:-7fff"/><BasicBlock blockType="h" dependsOnU="1" id="16c8344c:13f3668420b:-7fba" interfaceFunctionName="JKFLIPFLOP" parent="16c8344c:13f3668420b:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="JKFLIPFLOP;mirror=true"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" value="contrib"/></ScilabString><Array scilabClass="ScilabTList"><ScilabString height="1" width="11"><data column="0" line="0" value="params"/><data column="1" line="0" value="wpar"/><data column="2" line="0" 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