Solve the traveling salesperson problem for the graph below by finding the total weight of all Hamilton circuits. Then determine which circuit has the smallest total weight. (Hint: There are 24 circuits in total for this graph. Half of them are the same, but traveled in reverse order. This means you only need to consider 12 unique circuits.) 2 4 3 b 8 $9 160 10 С

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Chapter2: Second-order Linear Odes
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Solve the traveling salesperson problem for the graph below by finding the total weight of all Hamilton
circuits. Then determine which circuit has the smallest total weight.
(Hint: There are 24 circuits in total for this graph. Half of them are the same, but traveled in reverse
order. This means you only need to consider 12 unique circuits.)
Path
The path with the minimum weight is:
2
4
3 b
8
$9
6
10
C
Weight
Transcribed Image Text:Solve the traveling salesperson problem for the graph below by finding the total weight of all Hamilton circuits. Then determine which circuit has the smallest total weight. (Hint: There are 24 circuits in total for this graph. Half of them are the same, but traveled in reverse order. This means you only need to consider 12 unique circuits.) Path The path with the minimum weight is: 2 4 3 b 8 $9 6 10 C Weight
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