MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_01CC1B98.32A2C9D0" This document is a Single File Web Page, also known as a Web Archive file. If you are seeing this message, your browser or editor doesn't support Web Archive files. Please download a browser that supports Web Archive, such as Microsoft Internet Explorer. ------=_NextPart_01CC1B98.32A2C9D0 Content-Location: file:///C:/E87441CE/DATAANALYSISG.M..htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" DATA ANALYSIS

DATA ANALYSIS

 

DA1. Statisti= cs & society

DA2. Data col= lecting & sampling

DA3. Displayi= ng single data sets

DA4. Summary statistics

DA5. Interpre= ting sets of data

DA6. The norm= al distribution

DA7. correlation

 

Statistics-Some Common Terms

 =

“There are lies, damn lies and statistics.” (Mark Twain)

 

To illustrate the following terms we will consider the= case where a die (singular of dice) is rolled ten times with the results: 6, 1, = 2, 5, 6, 4, 3, 2, 1, 6.

 

The frequency= of a score is the number of times that score occurs.

The frequency of 6 in the above example is 3 because 6= occurs 3 times.

 

A frequency distribution table is a table showing the scores in order of size and a= lso the frequency of each score.

Score

Frequency=

1

2

2

2

3

1

4

1

5

1

6

3

 

The cumulative frequency of a score is the total of all scores equal to or less than t= hat score.

The cumulative frequency of 3 is 5 because there are 5 scores equal to 3 or less than 3. (1 occurs twice, 2 oc= curs twice, 3 occurs once. Total =3D 2+2+1 =3D 5)

 

The mode = is the score that occurs most often.

6 occurs 3 times. This is m= ore often than any other number. Mode =3D 6.

 

The mean (sometimes called the “arithmetic mean”) is the sum of all the scores divided by the number of scores.

6+1+2+5+6+4+3+2+1+6 =3D 36                &= nbsp;    Mean =3D 3.6

 

The median is the middle score. Half the scores are above the median and half are below the median. If there is an odd number of scores then the median is the middle score. If there is an even number of scores then there are two middle score= s. The median is the average of the two middle scores.

If we write the above scores in order we get 1,1,2,2,3,4,5,6,6,6

There are ten scores and =3D5 so put a stroke after the fifth score.

1,1,2,2,3/4,5,6,6,6

The number immediately to the left of the stroke is 3 = and the number immediately to the right of the stroke is 4. The mean of 3 and 4= is  =3D  =3D 3.5.

The median of the above numbers is  or 3.5.

 

The range is the difference between the highest and lowest score.

Range =3D highest score – lowest score.

Range =3D 6 – 1 =3D 5

Graphs & Statistics 1

 

1.   &n= bsp;     In a particular class there are 30 students. Of these, 15 have brown eyes, 10 = have blue       = eyes and the remainder have hazel eyes. Represent this information in a

   &nbs= p;        (a)        sector graph

   &nbs= p;        (b)        bar graph

   &nbs= p;        (c)        column graph

 

2.   &n= bsp;     There are 150 students in year 9 at East Mountains Girls High School. Of the= se, 50 play    softball for sport, 30 play netball, 30 attend aerobics, 20 play tennis, 10 play basketball      &n= bsp;   and 10, for medical reasons, do not play any sport at all.

   &nbs= p;        Represent this information on a

   &nbs= p;        (i)    =      pictogram

   &nbs= p;        (ii)        histogram

   &nbs= p;        (iii)       sector graph

   &nbs= p;        (iv)       bar graph

 

3.   &n= bsp;     A die (singular of dice) is rolled 20 times and the results are shown below.<= /p>

   &nbs= p;        1     6     5    1     2     4     3     6     2     1     3     1     4     2     2     6     4     1     5     3

   &nbs= p;        (a)        Draw a frequency distribution table of these results showing the number on the <= span style=3D'mso-tab-count:2'>        &= nbsp;        die, the tally, the frequency and the cumulative frequency.

   &nbs= p;        (b)        Determine the mode, median, mean and range of these numbers.

   &nbs= p;        (c)        Draw a column graph to represent these results.

 

4.   &n= bsp;     The maximum temperature (in degrees Celsius) on twenty consecutive days was

   &nbs= p;        20, 23, 20, 19, 17, 21, 17, 17, 18, 22, 24, 22, 21, 23, 19, 20, 19, 22, 21, 21<= /p>

   &nbs= p;        (a)        Draw a frequency distribution table of these results showing the temperature, th= e         &= nbsp;     tally, the frequency and the cumulative frequency.

   &nbs= p;        (b)        Determine the mode, median, mean and range of these temperatures.

 

5.   &n= bsp;     Zara and Laura were heating some water during a scien= ce experiment. Laura would call    <= /span>out the time at 1 minute intervals and Zara would r= ead a thermometer that was    &nbs= p;     immersed in the water and write down the temperature. A table of their results is sh= own         &= nbsp;  below.        &= nbsp;     

 

Time (minutes)

Temperature oC

 0

15

1

16

2

18

3

21

4

23

5

25

6

28

7

30

8

32

 

   &nbs= p;        Plot these results on a line graph and draw the line of best fit.

   &nbs= p;       

 

   &nbs= p;       

 

 

Graphs & Statistics 2

 

1.   &n= bsp;     In a particular class there are 28 students. Of these, 16 have brown eyes, 8 h= ave blue       &n= bsp; eyes and the remainder have hazel eyes. Represent this information in a

   &nbs= p;        (a)        sector graph

   &nbs= p;        (b)        bar graph

   &nbs= p;        (c)        column graph

 

2.   &n= bsp;     There are 140 students in year 8 at E. Stills High School. Of these, 50 play soccer for       sport, 25 p= lay softball, 20 play basketball, 25 play squash, 10 play tennis and 10,= for         = medical reasons, do not play any sport at all.

   &nbs= p;        Represent this information on a

   &nbs= p;        (i)    =      pictogram

   &nbs= p;        (ii)        histogram

   &nbs= p;        (iii)       sector graph

   &nbs= p;        (iv)       bar graph

 

3.   &n= bsp;     A die (singular of dice) is rolled 20 times and the results are shown below.<= /p>

   &nbs= p;        6     2     3    3=      4     1     6     1     3     2     5     5     4     6     3     6     2     1     5     3

   &nbs= p;        (a)        Draw a frequency distribution table of these results showing the number on the <= span style=3D'mso-tab-count:2'>        &= nbsp;        die, the tally, the frequency and the cumulative frequency.

   &nbs= p;        (b)        Determine the mode, median, mean and range of these numbers.

   &nbs= p;        (c)        Draw a column graph to represent these results.

 

4.   &n= bsp;     The maximum temperature (in degrees Celsius) on twenty consecutive days was

   &nbs= p;        28, 24, 30, 29, 21, 26, 28, 24, 23, 27, 31, 30, 31, 28, 28, 25, 24, 27, 27, 28<= /p>

   &nbs= p;        (a)        Draw a frequency distribution table of these results showing the temperature, th= e         &= nbsp;     tally, the frequency and the cumulative frequency.

   &nbs= p;        (b)        Determine the mode, median, mean and range of these temperatures.

 

5.   &n= bsp;     Zara and Laura were heating some water during a scien= ce experiment. Laura would call    <= /span>out the time at 1 minute intervals and Zara would r= ead a thermometer that was    &nbs= p;     immersed in the water and write down the temperature. A table of their results is sh= own         &= nbsp;  below.        &= nbsp;     

 

Time (minutes)

Temperature oC

 0

19

1

29

2

40

3

51

4

61

5

72

Time (minutes)

Temperature oC

6

82

7

91

8

99

9

98

10

100

11

99

 

   &nbs= p;        (a) Plot these results on a line graph.

   &nbs= p;        (b) Water boils at 100oC. What happens to the graph at this point?

 

   &nbs= p;            &= nbsp;      

 

Graphs & Statistics 3

 

1.   &n= bsp;     In a particular class there are 25 students. Of these, 14 have brown eyes, 6 h= ave blue       &n= bsp; eyes and the remainder have hazel eyes. Represent this information in a

   &nbs= p;        (a)        sector graph

   &nbs= p;        (b)        bar graph

   &nbs= p;        (c)        column graph

 

2.   &n= bsp;     There are 120 students in year 8 at Airport Grammar School. Of = these, 30 play soccer  &n= bsp;     for sport, 25 play netball, 25 play basketball, 20 play squash, 15 play tennis<= /span> and 5, for      &n= bsp;     medical reasons, do not play any sport at all.

   &nbs= p;        Represent this information on a

   &nbs= p;        (i)    =      pictogram

   &nbs= p;        (ii)        histogram

   &nbs= p;        (iii)       sector graph

   &nbs= p;        (iv)       bar graph

 

3.   &n= bsp;     A die (singular of dice) is rolled 20 times and the results are shown below.<= /p>

   &nbs= p;        1     3     6     4     4     5     3     2     3     5     3     2     4     6     1     6     2     1     5     6

   &nbs= p;        (a)        Draw a frequency distribution table of these results showing the number on the <= span style=3D'mso-tab-count:2'>        &= nbsp;        die, the tally, the frequency and the cumulative frequency.

   &nbs= p;        (b)        Determine the mode, median, mean and range of these numbers.

   &nbs= p;        (c)        Draw a column graph to represent these results.

 

4.   &n= bsp;     The maximum temperature (in degrees Celsius) on twenty consecutive days was

   &nbs= p;        32, 34, 28, 31, 37, 39, 36, 41, 40, 36, 30, 30, 28, 29, 34, 27, 33, 34, 37, 36<= /p>

   &nbs= p;        (a)        Draw a frequency distribution table of these results showing the temperature, th= e         &= nbsp;     tally, the frequency and the cumulative frequency.

   &nbs= p;        (b)        Determine the mode, median, mean and range of these temperatures.

 

5.   &n= bsp;     Isabella was doing a science experiment in which she checked the temperature inside = a      sealed glass jar = that contained a thermometer and had been left in direct sunlight. She   measured the temperature at 5 minute intervals and a table of her results is shown      below. 

Time (minutes)

Temperature oC

 0

28

5

32

10

36

15

39

20

42

25

45

Time (minutes)

Temperature oC

30

48

35

50

40

53

45

55

50

57

55

58

 

   &nbs= p;        (a) Plot these results on a line graph.

   &nbs= p;        (b) Why is it dangerous to leave children or animals in a car= that is parked in sunlight?

 

6.   &n= bsp;     David played cricket for house sport. His average batting score over 8 weeks (1 innings     per week)= was 9.5

   &nbs= p;        (a)        How many runs had David scored over the 8 weeks?

   &nbs= p;        (b)        How many runs must he score in the 9th week to bring his batting ave= rage up to       &= nbsp;          10?

 

Graphs & Statistics 1-Answers

Q.1. (a)

   &nbs= p;            &= nbsp;      

 

(b)

Hazel

5 students

Blue

10 students

Brown

15 students

 

(c)

   &nbs= p;            &= nbsp;      

 

Q.2.

   &nbs= p;        (i)   &= nbsp;           &nbs= p;            &= nbsp;           &nbs= p;            &= nbsp;           &nbs= p;            &= nbsp;           &nbs= p;  Legend: J =3D 5 students

   &nbs= p;            &= nbsp;       Softball:        &= nbsp; JJJJJJJJJJ

      Netball:           JJJJJJ

   &nbs= p;            &= nbsp;       Aerobics:         = JJJJJJ

   &nbs= p;            &= nbsp;       Tennis:        &= nbsp;    JJJJ

   &nbs= p;            &= nbsp;       Basketball:  JJ

   &nbs= p;            &= nbsp;       No Sport:      &= nbsp; JJ

   &nbs= p;       

 

 

 

(ii)

   &nbs= p;            &= nbsp;      

 

   &nbs= p;        (iii)

   &nbs= p;            &= nbsp;      

   &nbs= p;       

   &nbs= p;        (iv)

 

N

o

 

S

p

o

r

t

  10

B

a

s

k

e

t

b

a

l

l

   10

Tennis

20

Aerobics

30

Netball

30

Softball

50

Q.3.   =   (a)       

Number

Tally

Frequency

Cumulative

Frequency

1

||||

5

5

2

||||

4

9

3

|||

3

12

4

|||

3

15

5

||

2

17

6

|||

3

20

 

   &nbs= p;        (b)        Mode =3D 1 (Most common score)

   &nbs= p;            &= nbsp;       Median =3D 3 (The mean of the 10th & 11th score)

   &nbs= p;            &= nbsp;       Mean =3D 3.1 (Sum of scores ÷ number of scores)

   &nbs= p;            &= nbsp;       Range =3D 5 (Highest score – lowest score, 6 – 1)

 

   &nbs= p;        (c)

   &nbs= p;            &= nbsp;      

 

Q.4.   =   (a)       

Temperatu= re oC

Tally

Frequency=

Cumulativ= e

Frequency=

17

|||

3

3

18

|

1

4

19

|||

3

7

20

|||

3

10

21

||||

4

14

22

|||

3

17

23

||

2

19

24

|

1

20

 

      (b)        Mode =3D most common score = =3D 21oC

   &nbs= p;            &= nbsp;       Median =3D ½ (10th + 11th score) =3D ½ (20 + 2= 1) =3D 20.5oC

   &nbs= p;            &= nbsp;       Mean =3D Sum of scores/number of scores =3D 406/20 =3D 20.3oC

   &nbs= p;            &= nbsp;       Range =3D highest score – lowest score =3D 24 – 17 =3D 7oC=

Q.5.

   &nbs= p;            &= nbsp;      

 

     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Graphs & Statistics 2-Answers

 

Q.1. (a)

   &nbs= p;            &= nbsp;           &nbs= p;      

(b)   &= nbsp;   

Hazel

4

Blue

8

Brown

16

 

(c)   &= nbsp;           &nbs= p;   

 

   &nbs= p;            &= nbsp;           &nbs= p;      

 

Q.2.

   &nbs= p;        (i)   &= nbsp;           &nbs= p;            &= nbsp;           &nbs= p;            &= nbsp;           &nbs= p;            &= nbsp;           &nbs= p;  Legend: J =3D 5 students

   &nbs= p;            &= nbsp;       Soccer:        &= nbsp;   JJJJJJJJJJ

      Softball:        &= nbsp; JJJJJ

   &nbs= p;            &= nbsp;       Squash:        &= nbsp;   JJJJJ

   &nbs= p;            &= nbsp;       Basketball:      JJJJ

   &nbs= p;            &= nbsp;       Tennis:    JJ

   &nbs= p;            &= nbsp;       No Sport:      &= nbsp; JJ

 

   &nbs= p;        (ii)       

   &nbs= p;            &= nbsp;      

 

   &nbs= p;        (iii)

   &nbs= p;            &= nbsp;      

(iv)      

 

N

o

 

S

p

o

r

t

  10

T

e

n

n

i

s

   10

Basketball

20

Squash

25

Softball

25

Softball

50

 

 

 

Q.3. (a)

Number

Tally

Frequency=

Cumulative Frequency

1

|||

3

3

2

|||

3

6

3

||||

5

11

4

||

2

13

5

|||

3

16

6

||||

4

20

 

(b)    =             &nb= sp;   Mode =3D 6      &n= bsp; (most common score)

   &nbs= p;            &= nbsp;       Median =3D 3      = mean of 10th & 11th score   Both 10th & 11th score =3D 3

   &nbs= p;            &= nbsp;       Mean =3D Sum of scores/number of scores =3D 71/20 =3D 3.55

   &nbs= p;            &= nbsp;       Range =3D highest score – lowest score =3D 6 – 1 =3D 5

(c)

   &nbs= p;            &= nbsp;      

 

Q.4. (a)

Temperatu= re  OC

Tally

Frequency=

Cumulative Frequency

23

|

1

1

24

|||

3

4

25

|

1

5

26

|

1

6

27

|||

3

9

28

||||

5

14

29

|

1

15

30

||

2

17

31

|||

3

20

 

(b)   &= nbsp;    Mode =3D 28      Median =3D 28      &= nbsp;         Mean =3D 27.45     &nbs= p;        Range =3D 8

 

 

 

(c)

   &nbs= p;            &= nbsp;           &nbs= p;      

 

Graphs & Statistics 3-Answers

 

Q.1.(a).            =             <= /p>

   &nbs= p;            &= nbsp;      

 

(b)   &= nbsp;   

Brown Eyes

12 Students

Blue Eyes

9 Students

Hazel

3 stud.

 

 

 

 

 

 

 

 

(c)   &= nbsp;           &nbs= p;   

   &nbs= p;            &= nbsp;      

 

Q.2.

(i)            =             &nb= sp;            =             &nb= sp;            =             &nb= sp;      Legend: J =3D 5 students

   &nbs= p;            &= nbsp;       Soccer:        &= nbsp;   JJJJJJ

      Netball:           JJJJJ

   &nbs= p;            &= nbsp;       Basketball:      JJJJJ

   &nbs= p;            &= nbsp;       Squash:        &= nbsp;   JJJJ

   &nbs= p;            &= nbsp;       Tennis:    JJJ

   &nbs= p;            &= nbsp;       No Sport:      &= nbsp; J

 

(ii)    = ;            &n= bsp;  

   &nbs= p;            &= nbsp;      

 

 

 

 

 

(iii)

 

   &nbs= p;            &= nbsp;           &nbs= p;      

 

 (iv)   =   

No

 

S

p

o

r

t

  5

T

e

n

n

i

s

 

 15

Squash

20

Basketball

25

Netball

25

Soccer

30

 

 

 

 

 

 

 

 

 

 

 

Q.3. (a)

   &nbs= p;            &= nbsp;      

Number

Tally

Frequency=

Cumulative Frequency

1

|||

3

3

2

|||

3

6

3

||||

5

11

4

|||

3

14

5

||

2

16

6

||||

4

20

   &nbs= p;       

(b)    =             &nb= sp;   Mode =3D 3      &n= bsp; (most common score)

   &nbs= p;            &= nbsp;       Median =3D 3      = mean of 10th & 11th score   Both 10th & 11th score =3D 3

   &nbs= p;            &= nbsp;       Mean =3D Sum of scores/number of scores =3D 70/20 =3D 3.5

   &nbs= p;            &= nbsp;       Range =3D highest score – lowest score =3D 6 – 1 =3D 5

   &nbs= p;            &= nbsp;           &nbs= p;      

 

 

(c)    =             &nb= sp;            =   

   &nbs= p;            &= nbsp;      

 

Q.4. (a)  &n= bsp;        

Temperatu= re

(degrees = Celsius)

Tally

Frequency=

Cumulative Frequency

26

|

1

1

27

|

1

2

28

|

1

3

29

|

1

4

30

||

2

6

31

|

1

7

32

|

1

8

33

|

1

9

34

|||

3

12

35

|

1

13

36

||

2

15

37

||

2

17

38

&nbs= p;

0

17

39

|

1

18

40

|

1

19

41

|

1

20

 

(b)    =     Mode =3D 34      Median =3D 34      &= nbsp;         Mean =3D 33.45     &nbs= p;        Range =3D 41 – 26 =3D 15

 

Q.5. (a)

   &nbs= p;            &= nbsp;           &nbs= p;      

 

(b)   &= nbsp;    The temperature inside the car is higher than that outside due to the greenhouse effect.      In summer the temperature can reach over 70oC which would be fatal.=

 

Q.6.    = ; Number of runs scored over 8 weeks =3D 8 x 9.5 =3D 76 

   &nbs= p;        Number of runs required over 9 weeks for average of 10 =3D 10 x 9 =3D 90

   &nbs= p;        Number of runs needed in week 9 =3D 90 – 76 =3D 14

 

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