The table below lists leading digits of 317 inter-arrival Internet traffic times for a computer, along with the frequencies of leading digits expected with Benford's law. When using these data to test for goodness-of-fit with the distribution described by Benford's law, identify the null and alternative hypotheses. Leading Digit Benford's Law 1 2 3 4 5 30.1% 17.6% 12.5% 9.7 % 7.9% 6 7 9 6.7% 5.8% 5.1% 4.6% 8 Leading Digits of Inter-Arrival 76 62 29 33 19 27 28 21 22 Traffic Times Choose the correct answer below. OA. Ho: At least one of the proportions is different from the others. H₁: P₁ = 0.301 and p2 = 0.176 and p3=0.125 and... and pg = 0.046 OB. Ho: P₁ = 0.301 and p2 =0.176 and p=0.125 and ... and p = 0.046 H₁: At least one of the proportions is not equal to the given claimed value. OC. Ho: P₁ = 0.301 and p2 = 0.176 and p3=0.125 and ... and pg = 0.046 H₁: At least one of the proportions is different from the others. OD. Ho: At least one of the proportions is not equal to the given claimed value. H₁: P₁ =0.301 and p2 =0.176 and p3=0.125 and ... and pg = 0.046 O E. Ho: P₁ = 0.301 and p2 = 0.176 and p = 0.125 and ... and pg = 0.046 H₁: None of the proportions are equal to the given claimed value. OF. H₁: None of the proportions are equal to the given claimed value. H₁: P₁ =0.301 and p2 =0.176 and p3=0.125 and... and pg = 0.046

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The table below lists leading digits of 317 inter-arrival Internet traffic times for a computer, along with the frequencies of leading digits expected with Benford's law. When using these data to test for goodness-of-fit with the distribution described by Benford's law, identify the null
and alternative hypotheses.
Leading Digit
Benford's Law
1
2 3
4
5
30.1% 17.6% 12.5% 9.7 % 7.9%
6 7
9
6.7% 5.8% 5.1% 4.6%
8
Leading Digits
of Inter-Arrival
76
62
29
33
19
27
28
21
22
Traffic Times
Choose the correct answer below.
OA. Ho: At least one of the proportions is different from the others.
H₁: P₁ = 0.301 and p2 = 0.176 and p3=0.125 and... and pg = 0.046
OB. Ho: P₁ = 0.301 and p2 =0.176 and p=0.125 and ... and p = 0.046
H₁: At least one of the proportions is not equal to the given claimed value.
OC. Ho: P₁ = 0.301 and p2 = 0.176 and p3=0.125 and ... and pg = 0.046
H₁: At least one of the proportions is different from the others.
OD. Ho: At least one of the proportions is not equal to the given claimed value.
H₁: P₁ =0.301 and p2 =0.176 and p3=0.125 and ... and pg = 0.046
O E. Ho: P₁ = 0.301 and p2 = 0.176 and p = 0.125 and ... and pg = 0.046
H₁: None of the proportions are equal to the given claimed value.
OF. H₁: None of the proportions are equal to the given claimed value.
H₁: P₁ =0.301 and p2 =0.176 and p3=0.125 and... and pg = 0.046
Transcribed Image Text:The table below lists leading digits of 317 inter-arrival Internet traffic times for a computer, along with the frequencies of leading digits expected with Benford's law. When using these data to test for goodness-of-fit with the distribution described by Benford's law, identify the null and alternative hypotheses. Leading Digit Benford's Law 1 2 3 4 5 30.1% 17.6% 12.5% 9.7 % 7.9% 6 7 9 6.7% 5.8% 5.1% 4.6% 8 Leading Digits of Inter-Arrival 76 62 29 33 19 27 28 21 22 Traffic Times Choose the correct answer below. OA. Ho: At least one of the proportions is different from the others. H₁: P₁ = 0.301 and p2 = 0.176 and p3=0.125 and... and pg = 0.046 OB. Ho: P₁ = 0.301 and p2 =0.176 and p=0.125 and ... and p = 0.046 H₁: At least one of the proportions is not equal to the given claimed value. OC. Ho: P₁ = 0.301 and p2 = 0.176 and p3=0.125 and ... and pg = 0.046 H₁: At least one of the proportions is different from the others. OD. Ho: At least one of the proportions is not equal to the given claimed value. H₁: P₁ =0.301 and p2 =0.176 and p3=0.125 and ... and pg = 0.046 O E. Ho: P₁ = 0.301 and p2 = 0.176 and p = 0.125 and ... and pg = 0.046 H₁: None of the proportions are equal to the given claimed value. OF. H₁: None of the proportions are equal to the given claimed value. H₁: P₁ =0.301 and p2 =0.176 and p3=0.125 and... and pg = 0.046
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