3. Suppose that you have a computational problem A, input to A can be transformed to the input to sorting problem in linear time. We solve the sorting problem, and the solution to the sorting problem is transformed back to the solution to the problem A (so we solve problem A) in linear time Since the lower bound to sorting problem is 2(n logn), lower bound to A is also 2(n logn). Is this argument correct? Give me your reason(s).

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
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3. Suppose that you have a computational problem A, input to A can be transformed to the input to
sorting problem in linear time. We solve the sorting problem, and the solution to the sorting
problem is transformed back to the solution to the problem A (so we solve problem A) in linear time
Since the lower bound to sorting problem is 2(nlogn), lower bound to A is also Q(n logn). Is
this argument correct? Give me your reason(s).
Transcribed Image Text:3. Suppose that you have a computational problem A, input to A can be transformed to the input to sorting problem in linear time. We solve the sorting problem, and the solution to the sorting problem is transformed back to the solution to the problem A (so we solve problem A) in linear time Since the lower bound to sorting problem is 2(nlogn), lower bound to A is also Q(n logn). Is this argument correct? Give me your reason(s).
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