We assume the linear relation between a program's consumed clock cycles and its number of elements. We have two implementations for the same functionality. We know that: (a) implementation A satisfies the equation C = 6*E+ 124, where C is the clock cycles and E is the number of elements; (b) implementation B consumes 95 cycles when it has 10 elements and consumes 185 when it has 20 elements. Which implementation is faster?

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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We assume the linear relation between a program's consumed clock cycles and its number of
elements. We have two implementations for the same functionality. We know that: (a)
implementation A satisfies the equation C = 6*E+ 124, where C is the clock cycles and E is the number
of elements; (b) implementation B consumes 95 cycles when it has 10 elements and consumes 185
when it has 20 elements. Which implementation is faster?
O it depends
Implementation A
They are equally fast
O Implementation B
Transcribed Image Text:We assume the linear relation between a program's consumed clock cycles and its number of elements. We have two implementations for the same functionality. We know that: (a) implementation A satisfies the equation C = 6*E+ 124, where C is the clock cycles and E is the number of elements; (b) implementation B consumes 95 cycles when it has 10 elements and consumes 185 when it has 20 elements. Which implementation is faster? O it depends Implementation A They are equally fast O Implementation B
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