Example: If A = [3, 2, 5, 1] and B = [5,7, 2, 9], we can re-order A to [1,2,3, 5] and B to [2, 5, 7,9] to achieve 4 · (1+3+4+4) = 3, i=1 which you can also check is the miimum value.

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Problem 2. You are given two arrays of positive integers A[1 : n] and B[1 : n]. The goal is to re-order the
arrays A and B so that the average difference between entries of A and B with the same index, after the
re-ordering, is minimized. In other words, we want to change the orders of numbers in A and B, so that
1
EIA[i] – B[i]|
is minimized.
Design an O(n log n) time greedy algorithm for this problem.
Example: If A = [3, 2, 5, 1] and B =
[5, 7, 2, 9], we can re-order A to [1, 2, 3, 5] and B to [2,5, 7, 9] to achieve
4
1
1
EIA|1] – B[i]|
· (1+3+4+4) = 3,
4
4
i=1
which you can also check is the minimum value.
Transcribed Image Text:Problem 2. You are given two arrays of positive integers A[1 : n] and B[1 : n]. The goal is to re-order the arrays A and B so that the average difference between entries of A and B with the same index, after the re-ordering, is minimized. In other words, we want to change the orders of numbers in A and B, so that 1 EIA[i] – B[i]| is minimized. Design an O(n log n) time greedy algorithm for this problem. Example: If A = [3, 2, 5, 1] and B = [5, 7, 2, 9], we can re-order A to [1, 2, 3, 5] and B to [2,5, 7, 9] to achieve 4 1 1 EIA|1] – B[i]| · (1+3+4+4) = 3, 4 4 i=1 which you can also check is the minimum value.
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