9.3-6. One of Speedy Airlines' flights is about to take off from Seattle for a nonstop flight to London. There is some flexibility in choosing the precise route to be taken, depending upon weather conditions. The following network depicts the possible routes under consideration, where SE and LN are Seattle and London, respectively, and the other nodes represent various intermediate locations. bont ko nglasd 3.5 3.4 D. 4.6 3.4 3.6 3.2 B 3.3 3.6 4.7 -(LN SE 3.8 4.2 3.5 3.4 F The winds along each arc greatly affect the flying time (and so the fuel consumption). Based on current meteorological reports, d the flying times (in hours) for this particular flight are shown next to the arcs. Because the fuel consumed is so expensive, the man- agement of Speedy Airlines has established a policy of choosing the route that minimizes the total flight time. (a) What plays the role of "distances" in interpreting this problem m. to be a shortest-path problem? (b) Use the algorithm described in Sec. 9.3 to solve this shortest- path problem. dal for this problem.

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9.3-6. One of Speedy Airlines' flights is about to take off from
Seattle for a nonstop flight to London. There is some flexibility
in choosing the precise route to be taken, depending upon weather
conditions. The following network depicts the possible routes
under consideration, where SE and LN are Seattle and London,
respectively, and the other nodes represent various intermediate
locations.
to nglo
gnhun
bas
3.5
3.4
colu
4.6
3.4
3.6 3.2
B
3.3
4.7
E
3.6
LN
SE
4.2
3.8
3.5 3.4
F
The winds along each arc greatly affect the flying time (and so
the fuel consumption). Based on current meteorological reports,
d
the flying times (in hours) for this particular flight are shown next
to the arcs. Because the fuel consumed is so expensive, the man-
agement of Speedy Airlines has established a policy of choosing
S.
the route that minimizes the total flight time.
(a) What plays the role of "distances" in interpreting this problem
n.
t-
to be a shortest-path problem?
(b) Use the algorithm described in Sec. 9.3 to solve this shortest-
path problem.
anhaat model for this problem.
Transcribed Image Text:9.3-6. One of Speedy Airlines' flights is about to take off from Seattle for a nonstop flight to London. There is some flexibility in choosing the precise route to be taken, depending upon weather conditions. The following network depicts the possible routes under consideration, where SE and LN are Seattle and London, respectively, and the other nodes represent various intermediate locations. to nglo gnhun bas 3.5 3.4 colu 4.6 3.4 3.6 3.2 B 3.3 4.7 E 3.6 LN SE 4.2 3.8 3.5 3.4 F The winds along each arc greatly affect the flying time (and so the fuel consumption). Based on current meteorological reports, d the flying times (in hours) for this particular flight are shown next to the arcs. Because the fuel consumed is so expensive, the man- agement of Speedy Airlines has established a policy of choosing S. the route that minimizes the total flight time. (a) What plays the role of "distances" in interpreting this problem n. t- to be a shortest-path problem? (b) Use the algorithm described in Sec. 9.3 to solve this shortest- path problem. anhaat model for this problem.
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