Heip A certain company's executives want to experiment with redesigning its restaurants so that the customers form one line leading to four registers to place orders, rather than four lines leading to four separate registers. They redesign 20 randomly selected restaurants with the single line. In addition, they randomly select 20 restaurants with the four-line configuration to participate in the study. At each restaurant, an employee monitors the wait time (in minutes) of randomly selected patrons. The data are shown in the accompanying table. Note that normal probability plots indicate that the data are normally distributed. Complete parts (a) and (b). Click the icon to view the data table. (a) Is the variability in wait time in the single line less than that for the multiple lines at the a= 0.05 level of significance? Use the P-value approach to perform the test. Let o, represent the population standard deviation for the wait time in the single line and o, represent the population standard deviation for the wait time in the multiple lines. State the null and alternative hypotheses for this test. Ho: 01 02 H: 01 02 Use technology to find the P-value for this test. The P-value is (Round to three decimal places as needed.)

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what is the P value for this test?
Round to three decimal places as needed.
 
make a statement regarding the null hypothesis and draw a conclusion for this test.
Heip
A certain company's executives want to experiment with redesigning its restaurants so that the customers form one line leading to four registers to place orders, rather
than four lines leading to four separate registers. They redesign 20 randomly selected restaurants with the single line. In addition, they randomly select 20 restaurants
with the four-line configuration to participate in the study At each restaurant, an employee monitors the wait time (in minutes) of randomly selected patrons. The data
are shown in the accompanying table. Note that normal probability plots indicate that the data are normally distributed. Complete parts (a) and (b).
Click the icon to view the data table.
%3D
(a) Is the variability in wait time in the single line less than that for the multiple lines at the a= 0.05 level of significance? Use the P-value approach to perform the test.
Let o, represent the population standard deviation for the wait time in the single line and o, represent the population standard deviation for the wait time in the multiple
lines. State the null and altermative hypotheses for this test.
Ho 01
02
H1 01
02
Use technology to find the P value for this test.
The P-value is
(Round to three decimal places as needed.)
Transcribed Image Text:Heip A certain company's executives want to experiment with redesigning its restaurants so that the customers form one line leading to four registers to place orders, rather than four lines leading to four separate registers. They redesign 20 randomly selected restaurants with the single line. In addition, they randomly select 20 restaurants with the four-line configuration to participate in the study At each restaurant, an employee monitors the wait time (in minutes) of randomly selected patrons. The data are shown in the accompanying table. Note that normal probability plots indicate that the data are normally distributed. Complete parts (a) and (b). Click the icon to view the data table. %3D (a) Is the variability in wait time in the single line less than that for the multiple lines at the a= 0.05 level of significance? Use the P-value approach to perform the test. Let o, represent the population standard deviation for the wait time in the single line and o, represent the population standard deviation for the wait time in the multiple lines. State the null and altermative hypotheses for this test. Ho 01 02 H1 01 02 Use technology to find the P value for this test. The P-value is (Round to three decimal places as needed.)
A certain company's executives want to experiment with redesigning its restaurants so that the customers form one line leading to four registers to place orders, rather
than four lines leading to four separate registers. They redesign 20 randomly selected restaurants with the single line. In addition, they randomly select 20 restaurants
with the four-line configuration to participate in the study. At each restaurant, an employee monitors the wait time (in minutes) of randomly selected patrons. The data
are shown in the accompanying table. Note that normal probability plots indicate that the data are normally distributed. Complete parts (a) and (b).
EE Click the icon to view the data table.
(a) Is the variability in wait time in th
e? Use the P-value approach to perform the test.
Wait Times
Let o, represent the population star
lines. State the null and alternative
standard deviation for the wait time in the multiple
Ho 01
02
%3D
Full data set O
02
Multiple Lines
1.6
2.9
Single Line
1.2
2.1
1.7
2.8
1.3
4.6
Use technology to find the P-value f
2.8
2.0
2.3
1.8
2.1
2.4
3.0
3.7
2.9
2.9
The P-value is
2.0
2.3
1.9
2.9
4.5
2.6
(Round to three decimal places as r
2.7
2.0
2.9
2.3
1.4
1.3
2.0
2.7
2.8
1.1
3.1
1.8
2.0
3.2
2.3
0.9
Transcribed Image Text:A certain company's executives want to experiment with redesigning its restaurants so that the customers form one line leading to four registers to place orders, rather than four lines leading to four separate registers. They redesign 20 randomly selected restaurants with the single line. In addition, they randomly select 20 restaurants with the four-line configuration to participate in the study. At each restaurant, an employee monitors the wait time (in minutes) of randomly selected patrons. The data are shown in the accompanying table. Note that normal probability plots indicate that the data are normally distributed. Complete parts (a) and (b). EE Click the icon to view the data table. (a) Is the variability in wait time in th e? Use the P-value approach to perform the test. Wait Times Let o, represent the population star lines. State the null and alternative standard deviation for the wait time in the multiple Ho 01 02 %3D Full data set O 02 Multiple Lines 1.6 2.9 Single Line 1.2 2.1 1.7 2.8 1.3 4.6 Use technology to find the P-value f 2.8 2.0 2.3 1.8 2.1 2.4 3.0 3.7 2.9 2.9 The P-value is 2.0 2.3 1.9 2.9 4.5 2.6 (Round to three decimal places as r 2.7 2.0 2.9 2.3 1.4 1.3 2.0 2.7 2.8 1.1 3.1 1.8 2.0 3.2 2.3 0.9
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