(Road Network) The flow of traffic (in vehicles/hour) through a network of streets is shown below. 650 700 450 600 800 700 700 600 Traffic flow through a network of streets. (a) Set up and solve a system of linear equations to find z,, where i = 1,2, ...,6. (b) Assuming that each road can handle a maximum of 1000 vehicles/hour, suggest patterns that will ensure congestion-free traffic flow. (c) Suppose r6 = 0 (for repairs), find another feasible traffic flow pattern.

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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(Road Network) The flow of traffic (in vehicles/hour) through a network of streets is shown
below.
650
700
450
600
800
700
700
600
Traffic flow through a network of streets.
(a) Set up and solve a system of linear equations to find z,, where i = 1,2, ...,6.
(b) Assuming that each road can handle a maximum of 1000 vehicles/hour, suggest patterns
that will ensure congestion-free traffic flow.
(c) Suppose r6 =
0 (for repairs), find another feasible traffic flow pattern.
Transcribed Image Text:(Road Network) The flow of traffic (in vehicles/hour) through a network of streets is shown below. 650 700 450 600 800 700 700 600 Traffic flow through a network of streets. (a) Set up and solve a system of linear equations to find z,, where i = 1,2, ...,6. (b) Assuming that each road can handle a maximum of 1000 vehicles/hour, suggest patterns that will ensure congestion-free traffic flow. (c) Suppose r6 = 0 (for repairs), find another feasible traffic flow pattern.
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