Edexcel GCSE Maths

Topic Questions

Cumulative Frequency & Box Plots

1a
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2 marks

Some girls did a sponsored swim to raise money for charity.
The table shows information about the amounts of money (£) the girls raised.

Least amount of money (£) 10
Greatest amount of money (£) 45
Median 25
Lower quartile 16
Upper quartile 42

On the grid, draw a box plot for the information in the table.

q1-easy-6-4-cumulative-frequency-edexcel-gcse-maths
1b
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2 marks

Some boys also did the sponsored swim.
The box plot shows information about the amounts of money (£) the boys raised.

q1b-easy-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the amounts of money the girls raised with the amounts of money the boys raised.

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2a
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2 marks

Sameena recorded the times, in minutes, some girls took to do a jigsaw puzzle.
Sameena used her results to work out the information in this table.

  Minutes
Shortest time 18
Lower quartile 25
Median 29
Upper quartile 33
Longest time 44

On the grid, draw a box plot to show the information in the table.

q2a-easy-6-4-cumulative-frequency-edexcel-gcse-maths
2b
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2 marks

The box plot below shows information about the times, in minutes, some boys took to do the same jigsaw puzzle.

q2b-easy-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the distributions of the girls' times and the boys' times.

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3a
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3 marks

The table shows information about the heights, in cm, of a group of Year 11 girls.

  height (cm)
least height 154
median 165
lower quartile 161
interquartile range 7
range 20

Draw a box plot for this information.

q3a-easy-6-4-cumulative-frequency-edexcel-gcse-maths
3b
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2 marks

The box plot below shows information about the heights, in cm, of a group of Year 7 girls.

q3b-easy-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the distribution of heights of the Year 7 girls with the distribution of heights  of the Year 11 girls.

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4a
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3 marks

The table gives some information about the heights of 80 girls.

Least height 133 cm
Greatest height 170 cm
Lower quartile 145 cm
Upper quartile 157 cm
Median 151 cm



Draw a box plot to represent this information.

q4a-easy-6-4-cumulative-frequency-edexcel-gcse-maths
4b
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2 marks

Work out an estimate for the number of these girls with a height between 133 cm and 157 cm.

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5a
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1 mark

The table shows information about the speeds of space 100 spacelorries.

Speed (bold italic s) in km/h Frequency
0 less than s less-than or slanted equal to 20 2
20 less than s less-than or slanted equal to 40 9
40 less than s less-than or slanted equal to 60 23
60 less than s less-than or slanted equal to 80 31
80 less than s less-than or slanted equal to 100 27
100 less than s less-than or slanted equal to 120 8

Complete the cumulative frequency table for this information.

Speed (bold italic s) in km/h Cumulative frequency
0 less than s less-than or slanted equal to 20 2
0 less than s less-than or slanted equal to 40  
0 less than s less-than or slanted equal to 60  
0 less than s less-than or slanted equal to 80  
0 less than s less-than or slanted equal to 100  
0 less than s less-than or slanted equal to 120  
5b
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2 marks

On the grid, draw a cumulative frequency graph for your table.

q5a-easy-6-4-cumulative-frequency-edexcel-gcse-maths

5c
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2 marks

Find an estimate for the number of lorries with a speed of more than space 90 spacekm/h.

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6a
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2 marks

There arespace 200 spaceworkers at a factory.
The cumulative frequency table gives information about their ages.

Age (bold italic a years) Cumulative frequency
0 less than a less-than or slanted equal to 20 25
0 less than a less-than or slanted equal to 30 70
0 less than a less-than or slanted equal to 40 138
0 less than a less-than or slanted equal to 50 175
0 less than a less-than or slanted equal to 60 186
0 less than a less-than or slanted equal to 70 194
0 less than a less-than or slanted equal to 80 200

On the grid, draw a cumulative frequency graph for this information.

nov-2014-1ma1-1h-q16

6b
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2 marks

Graham says,
   "10% of workers at the factory are older than 65"

Is Graham correct?
You must show how you get your answer.

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7a
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1 mark

Sue works for a company that delivers parcels.

One day the company delivered space 80 spaceparcels.
The table shows information about the weights, in kg, of these parcels.

Weight ( bold italic w kg) Frequency
0 less than w less-than or slanted equal to 1 19
1 less than w less-than or slanted equal to 2 17
2 less than w less-than or slanted equal to 3 15
3 less than w less-than or slanted equal to 4 12
4 less than w less-than or slanted equal to 5 10
5 less than w less-than or slanted equal to 6 7

Complete the cumulative frequency table.

Weight ( bold italic w kg) Cumulative frequency
0 less than w less-than or slanted equal to 1  
0 less than w less-than or slanted equal to 2  
0 less than w less-than or slanted equal to 3  
0 less than w less-than or slanted equal to 4  
0 less than w less-than or slanted equal to 5  
0 less than w less-than or slanted equal to 6  
7b
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2 marks

On the grid opposite, draw a cumulative frequency graph for your table.

PLKM_EeP_q7b-easy-6-4-cumulative-frequency-edexcel-gcse-maths

7c
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3 marks

Sue says,

   "75 % of the parcels weigh less than 3.4 kg."

Is Sue correct?
You must show how you get your answer.

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8a
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1 mark

The table gives information about the marks gained by some students in an exam.

Mark (bold italic m) Frequency
0 less than m less-than or slanted equal to 20 40
20 less than m less-than or slanted equal to 40 70
40 less than m less-than or slanted equal to 60 60
60 less than m less-than or slanted equal to 80 15
80 less than m less-than or slanted equal to 100 10
100 less than m less-than or slanted equal to 120 5

Complete the cumulative frequency table for this information.

Mark (bold italic m) Cumulative frequency
0 less than m less-than or slanted equal to 20  
0 less than m less-than or slanted equal to 40  
0 less than m less-than or slanted equal to 60  
0 less than m less-than or slanted equal to 80  
0 less than m less-than or slanted equal to 100  
0 less than m less-than or slanted equal to 120  
8b
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2 marks

On the grid, draw a cumulative frequency graph for your table.

fP8vbTAQ_q8c-easy-6-4-cumulative-frequency-edexcel-gcse-maths

8c
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2 marks

Use your graph to find an estimate for the number of students who gained a mark of more than 54.

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9
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2 marks

The cumulative frequency graph shows some information about the heights, in cm, of 60 students.

vzb~QiEm_q9-easy-6-4-cumulative-frequency-edexcel-gcse-maths

Work out an estimate for the number of these students with a height greater than 160 cm.

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10a
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1 mark

The cumulative frequency graph shows information about the weights of 60 apples.

L~Se3n4d_q10a-easy-6-4-cumulative-frequency-edexcel-gcse-maths

Use the graph to find an estimate for the median weight.

10b
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2 marks

Use the graph to find an estimate for the interquartile range of the weights.

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11a
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1 mark

The grouped frequency table gives information about the times, in minutes, that 80 office workers take to get to work. 

Time (bold italic t minutes) Frequency
0 less than t less-than or slanted equal to 20 5
20 less than t less-than or slanted equal to 40 30
40 less than t less-than or slanted equal to 60 20
60 less than t less-than or slanted equal to 80 15
80 less than t less-than or slanted equal to 100 8
100 less than t less-than or slanted equal to 120 2

Complete the cumulative frequency table.

Time (bold italic t minutes) Cumulative frequency
0 less than t less-than or slanted equal to 20  
0 less than t less-than or slanted equal to 40  
0 less than t less-than or slanted equal to 60  
0 less than t less-than or slanted equal to 80  
0 less than t less-than or slanted equal to 100  
0 less than t less-than or slanted equal to 120  
11b
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2 marks

On the grid, draw the cumulative frequency graph for this information.

q11b-easy-6-4-cumulative-frequency-edexcel-gcse-maths

11c
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3 marks

Use your graph to find an estimate for the percentage of these office workers who take more than 90 minutes to get to work.

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12a
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1 mark

The frequency table gives information about the ages of the 80 people in a train carriage.

Age (bold italic a bold spaceyears) Frequency
0 space less than space a space less-than or slanted equal to space 20 9
20 space less than space a space less-than or slanted equal to space 30 19
30 space less than space a space less-than or slanted equal to space 40 17
40 space less than space a space less-than or slanted equal to space 50 18
50 space less than space a space less-than or slanted equal to space 60 13
60 space less than space a space less-than or slanted equal to space 70 4

Complete the cumulative frequency table.

Age (bold italic a years) Cumulative frequency
0 space less than space a space less-than or slanted equal to space 20  
0 space less than space a space less-than or slanted equal to space 30  
0 space less than space a space less-than or slanted equal to space 40  
0 space less than space a space less-than or slanted equal to space 50  
0 space less than space a space less-than or slanted equal to space 60  
0 space less than space a space less-than or slanted equal to space 70  

12b
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2 marks

On the grid, draw a cumulative frequency graph for your table.

q11b-paper1hr-nov2020-edexcel-igcse-maths

12c
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2 marks

Use your graph to find an estimate for the median age of the people in the train carriage.

........................................... years

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13
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1 mark

Here is a box plot.

q16-paper2h-june2017-aqa-gcse-maths

Circle the median value.

28 35 24 22

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1
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4 marks

Tom recorded the times, in seconds, some boys took to complete an obstacle course.
He drew this box plot for his results.

q1-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

Tom also recorded the times some girls took to complete the obstacle course.

Here are the times, in seconds, for the girls.

99 101 103 106 108 109 110 110 111 112
113 114 115 115 117 120 124 125 132  

Compare the distribution of the times for the boys with the distribution of the times for the girls.

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2a
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3 marks

Ben played 15 games of basketball.
Here are the points he scored in each game.

17 18 18 18 19 20 20 22 23 23 23 26 27 28 28

Draw a box plot for this information.

q2-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

2b
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2 marks

Sam plays in the same 15 games of basketball.

The median number of points Sam scored is 23
The interquartile range of these points is 12
The range of these points is 20

Who is more consistent at scoring points, Sam or Ben?
You must give a reason for your answer.

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3a
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3 marks

Here are the times, in seconds, that 15 people waited to be served at Rose's garden centre.

5 9 11 14 15 20 22 25 27 27 28 30 32 35 44

On the grid, draw a box plot for this information.

q3a-hrd-6-4-cumulative-frequency-edexcel-gcse-maths
3b
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2 marks

The box plot below shows the distribution of the times that people waited to be served at Green's garden centre.

q3b-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the distribution of the times that people waited at Rose's garden centre and the distribution of the times that people waited at Green's garden centre.

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4a
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1 mark

Harry grows tomatoes.
This year he put his tomato plants into two groups, group A and group B.

Harry gave fertiliser to the tomato plants in group A.
He did not give fertiliser to the tomato plants in group B.

Harry weighed 60 tomatoes from group A.
The cumulative frequency graph shows some information about these weights.

q4a-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

Use the graph to find an estimate for the median weight.

4b
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3 marks

The 60 tomatoes from group A
   had a minimum weight of 153 grams
   and a maximum weight of 186 grams.

Use this information and the cumulative frequency graph to draw a box plot for the 60 tomatoes from group A.

q4b-hrd-6-4-cumulative-frequency-edexcel-gcse-maths
4c
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2 marks

Harry did not give fertiliser to the tomato plants in group B.

Harry weighed 60 tomatoes from group B.
He drew this box plot for his results.

q4c-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the distribution of the weights of the tomatoes from group A with the distribution of the weights of the tomatoes from group B.

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5a
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1 mark

The cumulative frequency graph shows information about the times 80 swimmers take to swim 50 metres.

q5a-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

Use the graph to find an estimate for the median time.

5b
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3 marks

A swimmer has to swim 50 metres in 60 seconds or less to qualify for the swimming team.

The team captain says,

   "More than 25% of swimmers have qualified for the swimming team."

Is the team captain right?
You must show how you got your answer.

5c
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3 marks

For these 80 swimmers

   the least time taken was 28 seconds
   and the greatest time taken was 96 seconds.

Use the cumulative frequency graph and the information above to draw a box plot for the times taken by the swimmers.

q5c-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

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6a
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2 marks

The cumulative frequency graphs show information about the times taken by 100 male runners and by 100 female runners to finish the London marathon. 

q6-hrd-6-4-cumulative-frequency-edexcel-gcse-maths

A male runner is chosen at random.

Find an estimate for the probability that this runner took less than 4 hours to finish the London marathon.

6b
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4 marks

Use medians and interquartile ranges to compare the distribution of the times taken by the male runners with the distribution of the times taken by the female runners.

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7
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3 marks

A group of 60 students each sat an algebra test and a geometry test.
Each test was marked out of 110

The cumulative frequency graph gives information about the marks gained by the 60 students in the algebra test.

q14-4ma1-2hr-qp-jan22-paper2-igcse-maths

To be awarded a grade A in the algebra test, a student had to gain a mark greater than 64

Two students are to be selected at random from the 60 students in the group.

Use the graph to find an estimate for the probability that both of these students were awarded a grade A in the algebra test.

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8
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3 marks

The cumulative frequency graph gives information about the weights, in grams, of 90 bags of sweets.

q11-4ma1-1h-qp-jan21-paper1-igcse-maths

Roberto sells the bags of sweets to raise money for charity.
Bags with a weight greater than grams are labelled large bags and sold for 3.75 euros each bag.

The total amount of money he receives by selling all the large bags is 93.75 euros.

Find the value of d.

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9
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3 marks

A total of 80 national and international runners took part in a race.
The cumulative frequency graph gives information about the times, in minutes, they took for the race.

q12-4ma1-1h-qp-jan20-paper1-igcse-maths

60% of the national runners took 50 minutes or less for the race.
No international runner took 50 minutes or less for the race.

Work out an estimate for the number of national runners who took part in the race.

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10
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3 marks

The cumulative frequency graph shows information about the length, in minutes, of each of 80 films.

q10-paper1h-june2018-edexcel-igcse-maths

Clare says,

“More than 35% of these films are over 120 minutes long.”

Is Clare correct?
Give a reason for your answer.

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11a
Sme Calculator
1 mark

A group of 60 students each sat an algebra test and a geometry test.
Each test was marked out of 110.

The cumulative frequency graph gives information about the marks gained by the 60 students in the algebra test.

q14-4ma1-2hr-qp-jan22-paper2-igcse-maths

Use the graph to find an estimate for the median mark in the algebra test.

11b
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1 mark

Use the graph to find an estimate for the number of students who gained 58 marks or less in the algebra test.

11c
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2 marks

Use the graph to find an estimate for the interquartile range of the marks gained in the algebra test.

11d
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1 mark

The interquartile range of the marks gained in the geometry test is 9.

Luis says

“The students’ marks are more spread out in the algebra test than in the
geometry test.”

Is Luis correct?
Give a reason for your answer.

11e
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3 marks

To be awarded a grade A in the algebra test, a student had to gain a mark greater than 64.

Two students are to be selected at random from the 60 students in the group.

Use the graph to find an estimate for the probability that both of these students were awarded a grade A in the algebra test.

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12a
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2 marks

The cumulative frequency table gives information about the distance, in kilometres, that each of 80 workers travel from home to work at Office A.

Distance travelled (d km) Cumulative frequency
0 space less than space d space less-than or slanted equal to space 5 17
0 space less than space d space less-than or slanted equal to 10 32
0 space less than space d space less-than or slanted equal to space 15 57
0 space less than space d space less-than or slanted equal to space 20 70
0 space less than space d space less-than or slanted equal to space 25 76
0 space less than space d space less-than or slanted equal to space 30 80


On the grid below, draw a cumulative frequency graph for the information in the table.

q12a-4ma1-2h-qp-june21-paper2-igcse-maths

12b
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1 mark

Use your graph to find an estimate for the median distance travelled.

....................................................... km

12c
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2 marks

Use your graph to find an estimate for the interquartile range of the distances travelled.

....................................................... km

12d
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2 marks

For Office B, the median distance workers travel from home to work is 15 km and the interquartile range is 5 km.

Use the information above to compare the distances that workers at Office A and workers at Office B travel from home to work.
Write down two comparisons.

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13a
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1 mark

The cumulative frequency graph gives information about the waiting times, in minutes, of people with appointments at Hospital A.

q12-4ma1-1hr-qp-jan20-paper1-igcse-maths

Use the graph to find an estimate of the median waiting time at Hospital A.


.........................minutes
13b
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2 marks
Use the graph to find an estimate of the interquartile range of the waiting times at Hospital A.


............................... minutes
13c
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2 marks

At a different hospital, Hospital B, the median waiting time is 28 minutes and the interquartile range of the waiting times is 19 minutes.

Compare the waiting times at Hospital A with the waiting times at Hospital B.

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14a
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2 marks

The cumulative frequency graph shows information about the length, in minutes, of each of 80 films.

q10-paper1h-june2018-edexcel-igcse-maths

Use the graph to find an estimate for the interquartile range.

....................................................... minutes

14b
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3 marks

Clare says,

“More than 35% of these films are over 120 minutes long.”

Is Clare correct?
Give a reason for your answer.

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15a
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2 marks

The cumulative frequency graph represents the masses of 40 necklaces.

q16-paper-1h-nov-2021-aqa-gcse-maths

A jeweller buys every necklace with mass greater than 21 grams.

Use the graph to estimate how many she buys.

15b
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3 marks

The lowest mass was 3 grams.

The highest mass was 28 grams.

Draw a box plot to represent the data.

q16b-paper-1h-nov-2021-aqa-gcse-maths

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16a
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1 mark

The cumulative frequency graph shows information about the masses of 200 apples.

q17-paper-2h-nov-2020-aqa-gcse-maths

Estimate the median mass.

................................grams

16b
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3 marks

Apples with mass 90 grams or less cost 32p each.

Apples with mass more than 90 grams cost 39p each.
Estimate the total cost of the 200 apples.

£...................................

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17a
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3 marks

Here is some information about the miles per gallon of 60 cars.

Miles per gallon, bold italic x Frequency
40 space less than space x space less-than or slanted equal to space 50 6
50 space less than space x space less-than or slanted equal to space 60 16
60 space less than space x space less-than or slanted equal to space 70 28
70 space less than space x space less-than or slanted equal to space 80 10

Draw a cumulative frequency graph.

q22a-paper1h-nov2017-aqa-gcse-maths

17b
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2 marks

Use the graph to work out the interquartile range.

...........................miles per gallon

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18a
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3 marks

Here is some information about the marks of 60 students in a test.

Mark, Frequency
40 less than m less than 50 9
50 space less than space m space less-than or slanted equal to space 60 16
60 space less than space m space less-than or slanted equal to space 70 20
70 space less than space m space less-than or slanted equal to space 80 8
80 space less than space m space less-than or slanted equal to space 90 7


On the grid, draw a cumulative frequency graph.

q19a-paper1h-june2017-aqa-gcse-maths

18b
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2 marks

Use your graph to estimate the lowest mark of the top 20% of students.

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19a
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1 mark

The cumulative frequency graph summarises the annual salary, p (£ thousands), of the 60 workers in a factory.

q12-paper4-nov2019-ocr-gcse-maths

Use the graph to estimate the median annual salary.

£ ...................................... thousands

19b
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2 marks

Complete this cumulative frequency table.

Annual salary, p
(£ thousands)
Cumulative
frequency
p space less-than or slanted equal to space 10  
p space less-than or slanted equal to space 20  
p space less-than or slanted equal to space 30  
p space less-than or slanted equal to space 50  
p space less-than or slanted equal to space 80  

19c
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5 marks

Use the information in the cumulative frequency table to calculate an estimate of the mean annual salary.

£ ...................................... thousands

19d
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1 mark

Explain why your estimate of the median is more reliable than your estimate of the mean.

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20
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3 marks

The cumulative frequency graph shows the distribution of the heights of members of a rowing club.

q13a-paper4-june2019-ocr-gcse-maths

Calculate the percentage of the members who are at least 180 cm tall.

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21
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3 marks

The cumulative frequency graph shows information about the marks scored by a group of 80 students in a test.

q15-paper5-nov2018-ocr-gcse-maths

The ratio of the number of students passing the test compared to failing the test is 4 : 1.
Find the minimum mark needed to pass the test.

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22a
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3 marks

Iqrah carries out a survey of 200 families in the north of England on their weekly spending on food.

The cumulative frequency diagram summarises the results.

q15-paper5-nov2017-ocr-gcse-maths

Find

i)
the median,

£ ................. [1]

ii)
the interquartile range.

£ ................. [2]

22b
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2 marks

Iqrah says

   15% of these families spent over £120.

Is her statement correct?
State the evidence you have used in making your decision.

22c
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4 marks

In a survey of 200 families in the south of England, the median weekly amount spent on food was £84 and the interquartile range was £28.

Make two comparisons between the weekly amounts spent on food in the north of England and the south of England.
State the evidence you have used in making your comparisons.

1 .................... [2]

2 .................... [2]

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1a
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2 marks

The students in a class kept a record of the amount of time, in minutes, they spent doing homework last week.

The table shows information about the amount of time the girls spent doing homework last week.

  Minutes
Least amount of time 60
Range 230
Median 170
Lower quartile 100
Upper quartile 220

On the grid, draw a box plot for the information in the table.

q1-medium-6-4-cumulative-frequency-edexcel-gcse-maths

1b
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2 marks

The box plot below shows information about the amount of time the boys spent doing homework last week.

q1b-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the amount of time the girls spent doing homework with the amount of time the boys spent doing homework.

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2a
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2 marks

Colin took a sample of 80 football players.

He recorded the total distance, in kilometres, each player ran in the first half of their matches on Saturday.

Colin drew this box plot for his results.

q2a-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Work out the interquartile range.

2b
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2 marks

There were 80 players in Colin's sample.

Work out the number of players who ran a distance of more than 5.6 km.

2c
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2 marks

Colin also recorded the total distance each player ran in the second half of their matches.

He drew the box plot below for this information.

q2c-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the distribution of the distances run in the first half with the distribution of the distances run in the second half.

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3a
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1 mark

The box plot shows information about the number of countries competing in each Winter Olympic Games since 1948.

q3a-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Write down the median.

3b
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2 marks

Work out the interquartile range.

3c
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2 marks

The table below shows information about the number of countries competing in each Summer Olympic Games since 1948.

  Smallest Lower quartile Median Upper quartile Largest
Number of countries 59 83 121 199 204

Compare the two distributions.

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4a
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3 marks

The box plots give information about the wages of a group of 16 year old workers and a group of 18 year old workers.

q4a-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the distribution of the wages of the 16 year old workers with the distribution of the wages of the 18 year old workers.

4b
Sme Calculator
2 marks

There are 200 workers who are 16 years old.

Work out an estimate for the number of these workers whose wages are £130 or more.

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5
Sme Calculator
3 marks

Some students were asked how many times they each used their mobile phones last week.

The box plots give information about the male students' answers and about the female students' answers.

q5-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Compare the two distributions represented by the box plots.

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6a
Sme Calculator
2 marks

The box plot shows information about the distribution of the amounts of money spent by some male students on their holidays.

q6a-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Work out the interquartile range for the amounts of money spent by these male students.

6b
Sme Calculator
2 marks

The table below shows information about the distribution of the amounts of money spent by some female students on their holidays.

  Smallest Lower quartile Median Upper quartile Largest
Money spent (£) 60 180 300 350 650

On the grid above, draw a box plot for the information in the table.

6c
Sme Calculator
1 mark

Chris says,
   "The box plots show that the female students spent more money than the male students."

Is Chris correct?
Give a reason for your answer.

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7a
Sme Calculator
1 mark

Charlotte grows some potatoes.

The table shows information about the weights of her potatoes.

 Weight (bold italic w grams)  Frequency
100 less than w less-than or slanted equal to 120 5
120 less than w less-than or slanted equal to 140 25
140 less than w less-than or slanted equal to 160 30
160 less than w less-than or slanted equal to 180 15
180 less than w less-than or slanted equal to 200 5

Complete the cumulative frequency table.

 Weight (bold italic w grams) Cumulative frequency
100 less than w less-than or slanted equal to 120  
100 less than w less-than or slanted equal to 140  
100 less than w less-than or slanted equal to 160  
100 less than w less-than or slanted equal to 180  
100 less than w less-than or slanted equal to 200  
7b
Sme Calculator
2 marks

On the grid opposite, draw a cumulative frequency graph for your table.

x_jTmCoZ_q7b-medium-6-4-cumulative-frequency-edexcel-gcse-maths

7c
Sme Calculator
2 marks

Use your graph to find an estimate for the interquartile range.

7d
Sme Calculator
3 marks

Use your graph to find an estimate for the percentage of Charlotte's potatoes with a weight less than 150 grams.

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8a
Sme Calculator
3 marks

The table below shows information about the heights of 60 students.

Height (bold italic x cm) Number of students
140 less than x less-than or slanted equal to 150 4
150 less than x less-than or slanted equal to 160 5
160 less than x less-than or slanted equal to 170 16
170 less than x less-than or slanted equal to 180 27
180 less than x less-than or slanted equal to 190 5
190 less than x less-than or slanted equal to 200 3

On the grid opposite, draw a cumulative frequency graph for the information in the table.

8b
Sme Calculator
3 marks

TUVVKr2T_q8b-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Find an estimate

i)
for the median,
[2]
ii)
for the interquartile range.
[1]

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9a
Sme Calculator
1 mark

The grouped frequency table shows information about the weekly wages of 80 factory workers.

Weekly wage(bold £ bold italic x) Frequency
100 less than x less-than or slanted equal to 200 8
200 less than x less-than or slanted equal to 300 15
300 less than x less-than or slanted equal to 400 30
400 less than x less-than or slanted equal to 500 17
500 less than x less-than or slanted equal to 600 7
600 less than x less-than or slanted equal to 700 3

Complete the cumulative frequency table.

Weekly wage(bold £ bold italic x) Cumulative frequency
100 less than x less-than or slanted equal to 200  
100 less than x less-than or slanted equal to 300  
100 less than x less-than or slanted equal to 400  
100 less than x less-than or slanted equal to 500  
100 less than x less-than or slanted equal to 600  
100 less than x less-than or slanted equal to 700  
9b
Sme Calculator
2 marks

On the grid opposite, draw a cumulative frequency graph for your table.

q9b-medium-6-4-cumulative-frequency-edexcel-gcse-maths

9c
Sme Calculator
2 marks

Use your graph to find an estimate for the interquartile range.

9d
Sme Calculator
2 marks

Use your graph to find an estimate for the number of workers with a weekly wage of more than £530.

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10a
Sme Calculator
1 mark

The table shows information about the times taken by 100 people in a fun run.

Time ( bold italic t minutes) Frequency
20 less than t less-than or slanted equal to 30 4
30 less than t less-than or slanted equal to 40 16
40 less than t less-than or slanted equal to 50 36
50 less than t less-than or slanted equal to 60 24
60 less than t less-than or slanted equal to 70 14
70 less than t less-than or slanted equal to 80 6

Complete the cumulative frequency table for this information.

Time ( bold italic t minutes) Cumulative frequency
20 less than t less-than or slanted equal to 30  
20 less than t less-than or slanted equal to 40  
20 less than t less-than or slanted equal to 50  
20 less than t less-than or slanted equal to 60  
20 less than t less-than or slanted equal to 70  
20 less than t less-than or slanted equal to 80  
10b
Sme Calculator
2 marks

On the grid, draw a cumulative frequency graph for your table.

q10b-medium-6-4-cumulative-frequency-edexcel-gcse-maths

10c
Sme Calculator
1 mark

Use your graph to find an estimate for the median time.

10d
Sme Calculator
2 marks

Use your graph to find an estimate for the number of people who took longer than space 63 spaceminutes.

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11a
Sme Calculator
1 mark

The cumulative frequency graph shows information about the weights of 60 potatoes.

q11a-medium-6-4-cumulative-frequency-edexcel-gcse-maths

Use the graph to find an estimate for the median weight.

11b
Sme Calculator
1 mark

Jamil says,
   "80 - 40 = 40 so the range of the weights is 40 g."

Is Jamil correct?
You must give a reason for your answer.

11c
Sme Calculator
2 marks

Show that less than 25% of the potatoes have a weight greater than 65 g.

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12a
Sme Calculator
2 marks

The cumulative frequency table shows the marks some students got in a test.

Mark (bold italic m) Cumulative frequency
0 less than m less-than or slanted equal to 10 8
0 less than m less-than or slanted equal to 20 23
0 less than m less-than or slanted equal to 30 48
0 less than m less-than or slanted equal to 40 65
0 less than m less-than or slanted equal to 50 74
0 less than m less-than or slanted equal to 60 80

On the grid, plot a cumulative frequency graph for this information.

q12a-medium-6-4-cumulative-frequency-edexcel-gcse-maths
12b
Sme Calculator
1 mark

Find the median mark.

12c
Sme Calculator
3 marks

Students either pass the test or fail the test.
The pass mark is set so that 3 times as many students fail the test as pass the test.

Find an estimate for the lowest possible pass mark.

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13a
Sme Calculator
1 mark

The table gives information about the times, in minutes, taken by 80 customers to do their shopping in a supermarket.

Time taken (t minutes) Frequency
0 less than t less-than or slanted equal to 10 7
10 less than t less-than or slanted equal to 20 26
20 less than t less-than or slanted equal to 30 24
30 less than t less-than or slanted equal to 40 14
40 less than t less-than or slanted equal to 50 7
50 less than t less-than or slanted equal to 60 2

Complete the cumulative frequency table.

Time taken (t minutes) Cumulative frequency
0 less than t less-than or slanted equal to 10  
0 less than t less-than or slanted equal to 20  
0 less than t less-than or slanted equal to 30  
0 less than t less-than or slanted equal to 40  
0 less than t less-than or slanted equal to 50  
0 less than t less-than or slanted equal to 60  

13b
Sme Calculator
2 marks

On the grid, draw a cumulative frequency graph for your table.

q12-january-2022-1h-edexcel-igcse-maths

13c
Sme Calculator
1 mark

Use your graph to find an estimate for the median time taken.


.................................... minutes

13d
Sme Calculator
2 marks

One of the 80 customers is chosen at random.

Use your graph to find an estimate for the probability that the time taken by this customer was more than 42 minutes.

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14a
Sme Calculator
2 marks

The cumulative frequency graph gives information about the weights, in grams, of 90 bags of sweets.

q11-4ma1-1h-qp-jan21-paper1-igcse-maths

Find an estimate for the median of the weights of these bags of sweets.

...................................................... grams

14b
Sme Calculator
3 marks

Roberto sells the bags of sweets to raise money for charity.
Bags with a weight greater than d grams are labelled large bags and sold for 3.75 euros each bag.

The total amount of money he receives by selling all the large bags is 93.75 euros.

Find the value of d.

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15a
Sme Calculator
1 mark

The manager of a call centre asked the 120 people, who rang the call centre last week, how long they each waited before their call was answered.

The table gives information about their replies.

Time waited (t minutes) Frequency
0 space less than space t space less-than or slanted equal to space 5 8
5 space less than space t space less-than or slanted equal to space 10 15
10 space less than space t space less-than or slanted equal to space 15 17
15 space less than space t space less-than or slanted equal to space 20 28
20 space less than space t space less-than or slanted equal to space 25 33
25 space less than space t space less-than or slanted equal to space 30 19


Complete the cumulative frequency table.

Time waited (t minutes) Cumulative Frequency
0 space less than space t space less-than or slanted equal to space 5  
0 space less than space t space less-than or slanted equal to space 10  
0 space less than space t space less-than or slanted equal to space 15  
0 space less than space t space less-than or slanted equal to space 20  
0 space less than space t space less-than or slanted equal to space 25  
0 space less than space t space less-than or slanted equal to space 30  

15b
Sme Calculator
2 marks

On the grid, draw a cumulative frequency graph for your table.

q11b-4ma1-1hr-qp-jan21-paper1-igcse-maths

15c
Sme Calculator
1 mark

Use your graph to find an estimate for the median of the times waited.

...................................................... minutes

15d
Sme Calculator
2 marks

Using your graph, find an estimate for the percentage of the 120 people who said that they waited longer than 23 minutes before their call was answered.
Show your working clearly.

......................................................%

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16a
Sme Calculator
1 mark

The table gives information about the times taken by 90 runners to complete a 10 km race.

Time (t minutes) Frequency
25 space less than space t space less-than or slanted equal to space 35 12
35 space less than space t space less-than or slanted equal to space 45 24
45 space less than space t space less-than or slanted equal to space 55 28
55 space less than space t space less-than or slanted equal to space 65 12
65 space less than space t space less-than or slanted equal to space 75 10
75 space less than space t space less-than or slanted equal to space 85 4

Complete the cumulative frequency table.

Time (t minutes) Cumulative frequency
25 space less than space t space less-than or slanted equal to space 35 12
25 space less than space t space less-than or slanted equal to space 45  
25 space less than space t space less-than or slanted equal to space 55  
25 space less than space t space less-than or slanted equal to space 65  
25 space less than space t space less-than or slanted equal to space 75  
25 space less than space t space less-than or slanted equal to space 85  

16b
Sme Calculator
2 marks

On the grid below, draw a cumulative frequency graph for your table.

q11b-4ma1-1h-qp-nov21-paper1-igcse-maths

16c
Sme Calculator
2 marks

Any runner who completed the race in a time T minutes such that 42 space less than space T space less-than or slanted equal to space 52 minutes was awarded a silver medal.

Use your graph to find an estimate for the number of runners who were awarded a silver medal.

....................................................... runners

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17a
Sme Calculator
3 marks

The times that 48 trains left a station on Monday were recorded.

The cumulative frequency graph gives information about the numbers of minutes the trains were delayed, correct to the nearest minute.

screen-shot-2023-01-25-at-8-08-35-pmThe shortest delay was 0 minutes.
The longest delay was 42 minutes.

On the grid below, draw a box plot for the information about the delays on Monday.

screen-shot-2023-01-25-at-8-09-54-pm

17b
Sme Calculator
2 marks

48 trains left the station on Tuesday.

The box plot below gives information about the delays on Tuesday.

gcse-edexcel-2018-nov-p3-q4b

Compare the distribution of the delays on Monday with the distribution of the delays on Tuesday.

......................................................................................................................

......................................................................................................................

17c
Sme Calculator
1 mark

Mary says,

“ The longest delay on Tuesday was 33 minutes.
This means that there must be some delays of between 25 minutes and 30 minutes.”

Is Mary right?

You must give a reason for your answer.

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