1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips were recorded by the driver. 24 19 21 27 20 17 17 32 22 26 18 13 23 30 10 13 18 22 34 16 18 23 15 19 28 25 25 20 17 15 10 11 12 13 14 09 08 07 06 05

Mathematics For Machine Technology
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ISBN:9781337798310
Author:Peterson, John.
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Chapter29: Tolerance, Clearance, And Interference
Section: Chapter Questions
Problem 16A: Spacers are manufactured to the mean dimension and tolerance shown in Figure 29-12. An inspector...
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1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips
were recorded by the driver.
24
19
21
27
20
17
17
32
22
26
18
13
23
30
10
13
18
22
34
16
18
23
15
19
28
25
25
20
17
15
10
11
12
13
14
09
08
07
06
05
c) From the graphs in question (b (iii and iv)), read off: -
i)
What percentage of trips were between 25 and 30 km long?
ii)
What percentage of trips were under 25 km?
ii)
What percentage of trips were 22 km or more?
iv)
Below which distance were 55% of the trips made?
v)
Above which distance were 20% of the trips made?
d) From the frequency distribution table:
i)
Pearson's coefficient of skewness.
i)
Bowley's coefficient of skewness.
e) From ungrouped data above Plot the stem and leaf. Show the diagram
f) From ungrouped data above, draw Box and Wisker & From an examination of
the fence find Outliers, extreme values and interpret. Show all calculations
Transcribed Image Text:1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips were recorded by the driver. 24 19 21 27 20 17 17 32 22 26 18 13 23 30 10 13 18 22 34 16 18 23 15 19 28 25 25 20 17 15 10 11 12 13 14 09 08 07 06 05 c) From the graphs in question (b (iii and iv)), read off: - i) What percentage of trips were between 25 and 30 km long? ii) What percentage of trips were under 25 km? ii) What percentage of trips were 22 km or more? iv) Below which distance were 55% of the trips made? v) Above which distance were 20% of the trips made? d) From the frequency distribution table: i) Pearson's coefficient of skewness. i) Bowley's coefficient of skewness. e) From ungrouped data above Plot the stem and leaf. Show the diagram f) From ungrouped data above, draw Box and Wisker & From an examination of the fence find Outliers, extreme values and interpret. Show all calculations
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Transcribed Image Text:1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips were recorded by the driver. 24 19 21 27 20 17 17 32 22 26 18 13 23 30 10 13 18 22 34 16 18 23 15 19 28 25 25 20 17 15 10 11 12 13 14 09 08 07 06 05 c) From the graphs in question (b (iii and iv)), read off: - i) What percentage of trips were between 25 and 30 km long? ii) What percentage of trips were under 25 km? ii) What percentage of trips were 22 km or more? iv) Below which distance were 55% of the trips made? v) Above which distance were 20% of the trips made? d) From the frequency distribution table: i) Pearson's coefficient of skewness. i) Bowley's coefficient of skewness. e) From ungrouped data above Plot the stem and leaf. Show the diagram f) From ungrouped data above, draw Box and Wisker & From an examination of the fence find Outliers, extreme values and interpret. Show all calculations. 

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Follow-up Question

Transcribed Image Text:1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips were recorded by the driver. 24 19 21 27 20 17 17 32 22 26 18 13 23 30 10 13 18 22 34 16 18 23 15 19 28 25 25 20 17 15 10 11 12 13 14 09 08 07 06 05 c) From the graphs in question (b (iii and iv)), read off: - i) What percentage of trips were between 25 and 30 km long? ii) What percentage of trips were under 25 km? ii) What percentage of trips were 22 km or more? iv) Below which distance were 55% of the trips made? v) Above which distance were 20% of the trips made? d) From the frequency distribution table: i) Pearson's coefficient of skewness. i) Bowley's coefficient of skewness. e) From ungrouped data above Plot the stem and leaf. Show the diagram f) From ungrouped data above, draw Box and Wisker & From an examination of the fence find Outliers, extreme values and interpret. Show all calculations. 

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Follow-up Question

Person's coefficient of skewness

 

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Follow-up Question

From ungrouped dat above draw box and whisker and from an examinetion of tge fence find outlier extreme values and intepret

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Follow-up Question
AM
in
O76%
DI 03:38
bartleby.com/questions-an
36
Q SEARCH & ASK
A CHAT
ν MΑΤΗ
1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips
were recorded by the driver.
24
19
21
27
20
17
17
32
22
26
18
13
23
30
10
13
18
22
34
16
18
23
15
19
28
25
25
20
17
15
10
11
12
13
14
09
08
07
06
05
a) Using this equation 2* 2 n, to prepare the following:
i)
An absolute frequency distribution. Show the table
i) A relative frequency distribution. Show the table
Estimate the mean, median and modal level of the trips made
i)
iv) Estimate the variance.
Transcribed Image Text:
1. The distance travelled (in
kilometres) by a courier service motorcycle on 40 trips
were recorded by the driver. 24 19 21 27 20 17 17 32 22
Transcribed Image Text:AM in O76% DI 03:38 bartleby.com/questions-an 36 Q SEARCH & ASK A CHAT ν MΑΤΗ 1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips were recorded by the driver. 24 19 21 27 20 17 17 32 22 26 18 13 23 30 10 13 18 22 34 16 18 23 15 19 28 25 25 20 17 15 10 11 12 13 14 09 08 07 06 05 a) Using this equation 2* 2 n, to prepare the following: i) An absolute frequency distribution. Show the table i) A relative frequency distribution. Show the table Estimate the mean, median and modal level of the trips made i) iv) Estimate the variance. Transcribed Image Text: 1. The distance travelled (in kilometres) by a courier service motorcycle on 40 trips were recorded by the driver. 24 19 21 27 20 17 17 32 22
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Follow-up Question

BELOW WHICH DISTANCE WERE 55% OF THE TRIPS MADE

 

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Peterson, John.
Publisher:
Cengage Learning,