diffuseants Consider an experiment where ants are placed in a large glass tube of length L inches and are allowed to move freely in the tube. The glass tube is segmented into L one-inch sections and the numbers of ants in each segment are represented by a vector v. The example below shows an example of a 5-inch glass tube. v(1) v(2) v(5) After one minute, for any given segment, half the ants move to the segment on the left, and the other half move to the segment on the right. Half the ants in v(1) and v(L) move to the right and left, respectively; while the other half do not move. Write a function diffuseants(v) that takes a vector v and returns the number of ants in the segments of the glass tube after one minute. For simplicity, assume that the number of ants in a segment does not have to be a whole integer. >> disp( diffuseants ( [030] ) ) 1.5000 >> disp( diffuseants( 1.5000 [303] ) ) 1.5000 1.5000 3.0000 >> disp( diffuseants( [2 2 2 2] ) ) 2 2 >> disp( diffuseants ( [10 2 2 2 0] ) ) 6 6 2 1 1 2

Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
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diffuseants
Consider an experiment where ants are placed in a large glass tube of length L inches and are allowed to move freely in the tube. The glass tube is segmented into L one-inch sections and the numbers of ants in each segment
are represented by a vector v. The example below shows an example of a 5-inch glass tube.
v(1) v(2) v(3) v(4) v(5)
After one minute, for any given segment, half the ants move to the segment on the left, and the other half move to the segment on the right. Half the ants in v(1) and v(L) move to the right and left, respectively; while the
other half do not move. Write a function diffuseants(v) that takes a vector v and returns the number of ants in the segments of the glass tube after one minute. For simplicity, assume that the number of ants in a segment does
not have to be a whole integer.
>> disp( diffuseants( [030] ) )
1.5000
1.5000
>> disp( diffuseants( [303] ) )
1.5000
1.5000
3.0000
>> disp( diffuseants( [2 2 2 2] ) )
2
2
2
2
>> disp( diffuseants( [10 2 2 2 0] ) )
6
1
2
1
6
Transcribed Image Text:diffuseants Consider an experiment where ants are placed in a large glass tube of length L inches and are allowed to move freely in the tube. The glass tube is segmented into L one-inch sections and the numbers of ants in each segment are represented by a vector v. The example below shows an example of a 5-inch glass tube. v(1) v(2) v(3) v(4) v(5) After one minute, for any given segment, half the ants move to the segment on the left, and the other half move to the segment on the right. Half the ants in v(1) and v(L) move to the right and left, respectively; while the other half do not move. Write a function diffuseants(v) that takes a vector v and returns the number of ants in the segments of the glass tube after one minute. For simplicity, assume that the number of ants in a segment does not have to be a whole integer. >> disp( diffuseants( [030] ) ) 1.5000 1.5000 >> disp( diffuseants( [303] ) ) 1.5000 1.5000 3.0000 >> disp( diffuseants( [2 2 2 2] ) ) 2 2 2 2 >> disp( diffuseants( [10 2 2 2 0] ) ) 6 1 2 1 6
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