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Bunuel
Recently, scientists were able to sequence an individual's humane genome in just 4 weeks using a super fast modern computer. A computer manufactured just 2 years earlier would have taken 24 weeks to do the same amount of work.

For more targeted treatment of his cancer, Steve needs his human genome to be sequenced as soon as possible and scientists plan to use both the super fast modern computer and the 2 year-old computer to get the job done. Assuming both computers can tackle discrete components of the genome sequencing process, how many days should doctors expect to have the results of Steve's human genome sequencing project?

(A) 24
(B) 25
(C) 26
(D) 28
(E) 30



Total time taken by New computer: 4 weeks = 28 days.
Work done by this computer in one day: (1/28)


Total time taken by Older computer: 24 weeks = 24*7 days = 168 days.
Work done by this computer in one day: (1/(168)

Both computers together can do \(\frac{1}{28}\) + \(\frac{1}{168}\) work in one day

= \(\frac{6}{168}\) + \(\frac{1}{168}\)

= \(\frac{7}{168}\)

= \(\frac{1}{24}\) work in one day

Both computers will do full work in 24 days.


A is the answer.
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