Use technology to find the P-value for the hypothesis test
described below.
The claim is that for 12 AM body temperatures, the mean is muless
than98.6degreesF. The sample size is nequals5 and the test
statistic is tequalsnegative 1.043.
P-value= __
(Round to three decimal places as needed.)
Use technology to find the P-value for the hypothesis test described below. The claim is that...
Use technology to find the P-value for the hypothesis test described below. The claim is that for 12 AM body temperatures, the mean is p > 98.6°F. The sample size is n = 4 and the test statistic is t= 2.676. P-value = (Round to three decimal places as needed.)
Use technology to find the P-value for the hypothesis test described below. The claim is that for 12 AM body temperatures, the mean is h> 98.6°F. The sample size is n = 7 and the test statistic is t= 1.768. P-value = (Round to three decimal places as needed.)
Use technology to find the P-value for the hypothesis test described below. The claim is that for 12 AM body temperatures, the mean is μ>98.6°F. The sample size is n=9 and the test statistic is t=2.657. P-value= (Round to three decimal places as needed.)
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Use technology to find the P-value for the hypothesis test described below. The claim is that for a smartphone carrier's data speeds at airports, the mean is μ = 12 Mbps. The sample size is n = 14 and the test statistic is t = 2.311. What is the p-value? (round to three decimal places as needed).
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Use technology to find the P-value for the hypothesis test described below. The claim is that for a smartphone carrier's data speeds at a rports, the mean is μ = 19.00 Mbps. The sample size is n-21 and the test statistic IS仁1.041 P-value-L」(Round to three decimal places as needed.)