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viktelen [127]
2 years ago
8

NEED HELP ASAP WILL MARK BRAINLIEST!

Mathematics
1 answer:
Yuliya22 [10]2 years ago
7 0

Answer:

 1.5

Explanation:

Given that:

  • \sf log_{b} (3) = 1.099
  • \sf log_{b} (5) = 1.609

While solving this problem, the above following is not required to use.

\rightarrow \sf log_b ([b^3])^{1/2}

<u>apply log rule</u>

\rightarrow \sf \dfrac{1}{2}\log _b\left(b^3\right)

\boxed{\sf \log _b\left(b^3\right)=3}

\rightarrow \sf \dfrac{1}{2}(3)

<u>distribute</u>

\rightarrow \sf \dfrac{3}{2} \quad or \quad 1.5

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Allushta [10]

Answer:

1.85x10^{19} attempts are required to find a matching pair if the digital fingerprint is 64 bits long.

3.40*10^{38} attempts are required to find a matching pair if the digital fingerprint is 128 bits long.

Step-by-step explanation:

Each bit has two options. So

How many attempts are required to find a matching pair if the digital fingerprint is 64 bits long?

So for each of the 64 bits, we have the following number of options.

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T = 2^{64} = 1.85x10^{19}

options.

So, 1.85x10^{19} attempts are required to find a matching pair if the digital fingerprint is 64 bits long.

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Using the same logic as the first question.

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8 0
4 years ago
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agasfer [191]

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Answer:

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Step-by-step explanation:

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