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MCS,PHD
Argosy University/ Phoniex University/
Nov-2005 - Oct-2011
Professor
Phoniex University
Oct-2001 - Nov-2016
A metropolitan area lies along the two banks of a river – or the two shores of a bay as in the SF Bay Area. This body of water is W km wide and L km long. Studies show that F carsÂ
will travel across the water each day if bridges with enough capacity are constructed to carry theÂ
traffic. We estimate that the daily interest society must pay on the bonds issued to pay for aÂ
bridge with a capacity to carry f cars per day is C = (a + bf)W dollars per day. We also assumeÂ
that the origins and destinations of the F trips are uniformly and independently distributed alongÂ
the two shores and that everyone uses the bridge that involves the shortest detour. These detoursÂ
cost commuters . dollars per vehicle-km, including time wasted and out of pocket expenses. LetÂ
n be the number of bridges constructed between the two shores (and note that bridges cannot beÂ
constructed at the northern or southern edge of the metropolitan area).Â
Assume that the n bridges are equidistant, that a trip requires a detour if its origin and destination are between the same two consecutive bridges or between a bridge and theÂ
northern or southern edge of the metropolitan area, and that the average length of a detourÂ
is 1/3 of the separation between bridges, L/(n+1).
Write a formula for the number of bridges thatÂ
minimizes the sum of the construction and detour costs. (This is not necessarily theÂ
solution that society would choose based on the political process, but it should be a roughÂ
approximation.)
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