To investigate the fluid mechanics of swimming, twenty swimmers each swam a specified distance in a water-filled pool and in a pool where the water was thickened with food grade guar gum to syrup-like consistency. Velocity, in meters per second, was recorded and the results are given in the table below. Swimmer ⒸH₁: Hd = 0 H₂H<0 Hoi Hd = 0 H₂: Hd>0 1 O Ho: Hd <0 H₂: Hg = 0 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 Velocity (m/s) Water Guar Syrup 0.90 0.92 1.00 1.10 1.20 1.25 1.25 1.30 1.35 1.40 1.40 1.50 1.65 1.70 1.75 1.80 1.80 1.85 1.90 1.95 0.93 0.97 0.95 1.14 1.23 1.23 1.27 1.30 1.34 1.42 1.44 1.53 1.59 1.70 1.80 1.77 1.84 1.86 1.89 The researchers concluded that swimming in guar syrup does not change mean swimming speed. Are the given data consistent with this conclusion? Carry out a hypothesis test using a 0.01 signi level. (Use = #water #guar syrup) State the appropriate null and alternative hypotheses. ⒸH₁: Hd = 0 H₂H0 1.95 Hoi Hd #0 H₂: H₂=0 Find the test statistic. (Round your answer to two decimal places.) Use technology to find the P-value. (Round your answer to four decimal places.) P-value = State the conclusion in the problem context. O we fail to reject Ho. The data provide convincing evidence that swimming in guar syrup changes mean swimming speed. O we fail to reject Ho. The data do not provide convincing evidence that swimming in guar syrup changes mean swimming speed. O we reject Ho. The data do not provide convincing evidence that swimming in guar syrup changes mean swimming speed. O We reject Ho. The data provide convincing evidence that swimming in guar syrup changes mean swimming speed.
To investigate the fluid mechanics of swimming, twenty swimmers each swam a specified distance in a water-filled pool and in a pool where the water was thickened with food grade guar gum to syrup-like consistency. Velocity, in meters per second, was recorded and the results are given in the table below. Swimmer ⒸH₁: Hd = 0 H₂H<0 Hoi Hd = 0 H₂: Hd>0 1 O Ho: Hd <0 H₂: Hg = 0 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 Velocity (m/s) Water Guar Syrup 0.90 0.92 1.00 1.10 1.20 1.25 1.25 1.30 1.35 1.40 1.40 1.50 1.65 1.70 1.75 1.80 1.80 1.85 1.90 1.95 0.93 0.97 0.95 1.14 1.23 1.23 1.27 1.30 1.34 1.42 1.44 1.53 1.59 1.70 1.80 1.77 1.84 1.86 1.89 The researchers concluded that swimming in guar syrup does not change mean swimming speed. Are the given data consistent with this conclusion? Carry out a hypothesis test using a 0.01 signi level. (Use = #water #guar syrup) State the appropriate null and alternative hypotheses. ⒸH₁: Hd = 0 H₂H0 1.95 Hoi Hd #0 H₂: H₂=0 Find the test statistic. (Round your answer to two decimal places.) Use technology to find the P-value. (Round your answer to four decimal places.) P-value = State the conclusion in the problem context. O we fail to reject Ho. The data provide convincing evidence that swimming in guar syrup changes mean swimming speed. O we fail to reject Ho. The data do not provide convincing evidence that swimming in guar syrup changes mean swimming speed. O we reject Ho. The data do not provide convincing evidence that swimming in guar syrup changes mean swimming speed. O We reject Ho. The data provide convincing evidence that swimming in guar syrup changes mean swimming speed.
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
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