(c) Just by looking carefully at the graph, find a Hamilton circuit in the graph that has lower total weight than any of the circuits found in part (a). Select the correct choice below and fill in the answer box to complete your choice. (Simplify your answer.) OA. A-B-C-D-E-A, with a total weight of OB. D-C-B-E-A→D, with a total weight of OC. BA→E→C→D→B, with a total weight of
(c) Just by looking carefully at the graph, find a Hamilton circuit in the graph that has lower total weight than any of the circuits found in part (a). Select the correct choice below and fill in the answer box to complete your choice. (Simplify your answer.) OA. A-B-C-D-E-A, with a total weight of OB. D-C-B-E-A→D, with a total weight of OC. BA→E→C→D→B, with a total weight of
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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
Transcribed Image Text:Refer to the accompanying graph. Complete parts (a) through (c) in order.
B
A. The circuit that started at A.
B. The circuit that started at B.
C. The circuit that started at C.
D. The circuit that started at D.
E. The circuit that started at E.
13
16
66
2/ 14
53
5
7
9
E
12
D
Starting at A, the circuit is A-C-D-E-B→A and the total weight is 88.
Starting at B, the circuit is B-C-A→E→D→B and the total weight is 102.
Starting at C, the circuit is C-A-E→D→B-C and the total weight is 102.
Starting at D, the circuit is D→C-A-E-B→D and the total weight is 135.
Starting at E, the circuit is E→C-A→DB→E and the total weight is 142.
(Simplify your answers.)
(b) Which of the circuits found in part (a) gives the best solution to the problem of finding a minimum Hamilton circuit for the graph? Select all that apply.

Transcribed Image Text:(c) Just by looking carefully at the graph, find a Hamilton circuit in the graph that has lower total weight than any of the circuits found in part (a). Select the correct choice below
and fill in the answer box to complete your choice.
(Simplify your answer.)
OA. A-B-C-D-E-A, with a total weight of
OB. D-C-B-E-A-D, with a total weight of
OC. B→A→E→C→D→B, with a total weight of
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