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IB04 11_0580_02/5RP
© UCLES 2004 [Turn over
UNIVERSITY OF CAMBRIDGE INTERNATIONAL EXAMINATIONS
International General Certificate of Secondary Education
MATHEMATICS
Paper 2 (Extended) 0580/02 0581/02
Candidates answer on the Question Paper.
Additional Materials: Electronic calculator
Geometrical instruments October/November 2004
Mathematical tables (optional)
Tracing paper (optional) 1hour 30 minutes
READ THESE INSTRUCTIONS FIRST
Write your Centre number, candidate number and name on all the work you hand in.
Write in dark blue or black pen in the spaces provided on the Question Paper.
You may use a pencil for any diagrams or graphs.
Do not use staples, paper clips, highlighters, glue or correction fluid.
DO NOT WRITE IN THE BARCODE.
DO NOT WRITE IN THE GREY AREAS BETWEEN THE PAGES.
Answer all questions.
If working is needed for any question it must be shown below that question.
The number of marks is given in brackets [ ] at the end of each question or part question.
The total number of marks for this paper is 70.
Electronic calculators should be used.
If the degree of accuracy is not specified in the question, and if the answer is
not exact, give the answer to three significant figures. Given answers in
degrees to one decimal place.
For π , use either your calculator value or 3.142.
Candidate
Name
Centre
Number
Candidate
Number
*058002*
For Examiner's Use
w
w
w
.Xtrem
ePapers.com
2
© UCLES 2004 0580/02/O/N/04
For
Examiner's
Use
1 A pattern of numbers is shown below.
1
2
6
20
1
4
x
1
61 16
14
x
1
1
3
10
1
3
10
1
51 15
1
Write down the value of x.
Answer [1]
2 Calculate ( 333 + )3
giving your answer correct to 1 decimal place.
Answer [2]
3 From the list of numbers
7
22
, π , 14 , 16 , 27.4,
13
65
write down
(a) one integer,
Answer(a) [1]
(b) one irrational number.
Answer(b) [1]
4 Solve the inequality
1735 <− x .
Answer [2]
3
© UCLES 2004 0580/02/O/N/04 [Turn over
For
Examiner's
Use
5 Solve the equation
8
5
23
=
−x
.
Answer x = [2]
6
120
100
80
60
40
20
0
08 00 08 30 09 00 09 30
Distance from
Hilltown (km)
Time
The graph shows the distance, in kilometres, of a train from Hilltown.
Find the speed of the train in kilometres per hour at
(a) 08 30,
Answer(a) km/h [2]
(b) 09 00.
Answer(b) km/h [1]
4
© UCLES 2004 0580/02/O/N/04
For
Examiner's
Use
7 The air resistance (R) to a car is proportional to the square of its speed (v).
When R = 1800, v = 30.
Calculate R when v = 40.
Answer R = [3]
8 In 1997 the population of China was 1.24 × 109
.
In 2002 the population of China was 1.28 × 109
.
Calculate the percentage increase from 1997 to 2002.
Answer % [2]
9 8, 15, 22, 29, 36, ……..
A sequence of numbers is shown above.
(a) Find the 10th term of the sequence.
Answer(a) [1]
(b) Find the nth term of the sequence.
Answer(b) [1]
(c) Which term of the sequence is equal to 260?
Answer(c) [1]
5
© UCLES 2004 0580/02/O/N/04 [Turn over
For
Examiner's
Use
10 A mountain railway AB is of length 864m and rises at an angle of 12o
to the horizontal.
A train is 586m above sea level when it is at A.
Calculate the height above sea level of the train when it reaches B.
12o
864 m
A
B
NOT TO SCALE
Answer m [3]
11 = {40, 41, 42, 43, 44, 45, 46, 47, 48, 49}
A = {prime numbers}
B = {odd numbers}
(a) Place the 10 numbers in the correct places on the Venn diagram.
A
B
[2]
(b) State the value of )'(n AB ∩ .
Answer(b) [1]
12 Make c the subject of the formula
bc =− 53 .
Answer c = [3]
6
© UCLES 2004 0580/02/O/N/04
For
Examiner's
Use
13 A square has sides of length d metres.
This length is 120 metres, correct to the nearest 10 metres.
(a) Complete the statement in the answer space.
d <Answer(a) [1]
(b) Calculate the difference between the largest and the smallest possible areas of the square.
Answer(b) m2
[2]
14
321
_
1
_
2
_
3 0
5
4
3
2
1
_1
_
2
_3
_
4
_5
x
y
(a) Write down the coordinates of the points where the gradient of the curve is zero.
( , ) and ( , ) [2]Answer(a)
(b) Write down the range of values of x when the gradient of the curve is negative.
Answer(b) [1]
7
© UCLES 2004 0580/02/O/N/04 [Turn over
For
Examiner's
Use
15
A
B C
D
The diagram shows a quadrilateral ABCD.
(a) Draw the locus of points in the quadrilateral which are 5cm from A. [1]
(b) Using a straight edge and compasses only, draw the locus of all points inside the quadrilateral
which are equidistant from C and D.
Show all your construction lines. [2]
(c) Shade the region which contains points in the quadrilateral that are more than 5 cm from A and
nearer to D than to C.
[1]
16
NOT TO SCALE
ABCD is a cyclic quadrilateral.
The tangents at C and D meet at E.
Calculate the values of p, q and r.
Answer p = [1]
q = [1]
r = [2]
A
B
C
E
D
126o
75o
ro
po
qo
8
© UCLES 2004 0580/02/O/N/04
For
Examiner's
Use
17 Solve the equation
02242 =−+ xx .
Give your answers correct to 2 decimal places.
Show all your working.
or x =Answer x = [4]
18
C =
4
2
1
5 −
D =
5
2
1
4
−
(a) Write as a single matrix
(i) C 3− D,
Answer(a)(i)
[2]
(ii) CD.
Answer(a)(ii)
[2]
(b) Find C 1−
.
Answer(b)
[2]
9
© UCLES 2004 0580/02/O/N/04 [Turn over
For
Examiner's
Use
19
35 m 35 m
NOT TO SCALE
The diagram shows an athletics track with six lanes.
The distance around the inside of the inner lane is 400 metres.
The radius of each semicircular section of the inside of the inner lane is 35 metres.
(a) Calculate the total length of the two straight sections at the inside of the inner lane.
Answer(a) m [3]
(b) Each lane is one metre wide.
Calculate the difference in the distances around the outside of the outer lane and the inside of
the inner lane.
Answer(b) m [2]
10
© UCLES 2004 0580/02/O/N/04
For
Examiner's
Use
20 A gardener plants seeds from a packet of 25 seeds.
14 of the seeds will give red flowers and 11 will give yellow flowers.
The gardener chooses two seeds at random.
(a) Write the missing probabilities on the tree diagram below.
Red
Yellow
Red
Yellow
Second seedFirst seed
Red
Yellow
13
24
....
....
....
14
25
11
25
[2]
(b) What is the probability that the gardener chooses two seeds which will give
(i) two red flowers,
Answer(b)(i) [2]
(ii) two flowers of a different colour?
Answer(b)(ii) [2]
11
© UCLES 2004 0580/02/O/N/04
For
Examiner's
Use
21
1 2 3 4 5 6 7 8
8
7
6
5
4
3
2
1
x
y
A
0
(a) Using a scale of 1cm to represent 1 unit, draw the vectors
=
5
3
and =
0
4
on the grid above. [2]
(b) ABCD is a parallelogram.
Write down the coordinates of D.
( , ) [2]Answer(b)
(c) Calculate .
Answer(c) [2]
12
Every reasonable effort has been made to trace all copyright holders where the publishers (i.e. UCLES) are aware that third-party material has
been reproduced. The publishers would be pleased to hear from anyone whose rights they have unwittingly infringed.
University of Cambridge International Examinations is part of the University of Cambridge Local Examinations Syndicate (UCLES), which is itself a
department of the University of Cambridge.
0580/02/O/N/04
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0580_w04_qp_2

  • 1. This document consists of 11 printed pages and 1 blank page. IB04 11_0580_02/5RP © UCLES 2004 [Turn over UNIVERSITY OF CAMBRIDGE INTERNATIONAL EXAMINATIONS International General Certificate of Secondary Education MATHEMATICS Paper 2 (Extended) 0580/02 0581/02 Candidates answer on the Question Paper. Additional Materials: Electronic calculator Geometrical instruments October/November 2004 Mathematical tables (optional) Tracing paper (optional) 1hour 30 minutes READ THESE INSTRUCTIONS FIRST Write your Centre number, candidate number and name on all the work you hand in. Write in dark blue or black pen in the spaces provided on the Question Paper. You may use a pencil for any diagrams or graphs. Do not use staples, paper clips, highlighters, glue or correction fluid. DO NOT WRITE IN THE BARCODE. DO NOT WRITE IN THE GREY AREAS BETWEEN THE PAGES. Answer all questions. If working is needed for any question it must be shown below that question. The number of marks is given in brackets [ ] at the end of each question or part question. The total number of marks for this paper is 70. Electronic calculators should be used. If the degree of accuracy is not specified in the question, and if the answer is not exact, give the answer to three significant figures. Given answers in degrees to one decimal place. For π , use either your calculator value or 3.142. Candidate Name Centre Number Candidate Number *058002* For Examiner's Use w w w .Xtrem ePapers.com
  • 2. 2 © UCLES 2004 0580/02/O/N/04 For Examiner's Use 1 A pattern of numbers is shown below. 1 2 6 20 1 4 x 1 61 16 14 x 1 1 3 10 1 3 10 1 51 15 1 Write down the value of x. Answer [1] 2 Calculate ( 333 + )3 giving your answer correct to 1 decimal place. Answer [2] 3 From the list of numbers 7 22 , π , 14 , 16 , 27.4, 13 65 write down (a) one integer, Answer(a) [1] (b) one irrational number. Answer(b) [1] 4 Solve the inequality 1735 <− x . Answer [2]
  • 3. 3 © UCLES 2004 0580/02/O/N/04 [Turn over For Examiner's Use 5 Solve the equation 8 5 23 = −x . Answer x = [2] 6 120 100 80 60 40 20 0 08 00 08 30 09 00 09 30 Distance from Hilltown (km) Time The graph shows the distance, in kilometres, of a train from Hilltown. Find the speed of the train in kilometres per hour at (a) 08 30, Answer(a) km/h [2] (b) 09 00. Answer(b) km/h [1]
  • 4. 4 © UCLES 2004 0580/02/O/N/04 For Examiner's Use 7 The air resistance (R) to a car is proportional to the square of its speed (v). When R = 1800, v = 30. Calculate R when v = 40. Answer R = [3] 8 In 1997 the population of China was 1.24 × 109 . In 2002 the population of China was 1.28 × 109 . Calculate the percentage increase from 1997 to 2002. Answer % [2] 9 8, 15, 22, 29, 36, …….. A sequence of numbers is shown above. (a) Find the 10th term of the sequence. Answer(a) [1] (b) Find the nth term of the sequence. Answer(b) [1] (c) Which term of the sequence is equal to 260? Answer(c) [1]
  • 5. 5 © UCLES 2004 0580/02/O/N/04 [Turn over For Examiner's Use 10 A mountain railway AB is of length 864m and rises at an angle of 12o to the horizontal. A train is 586m above sea level when it is at A. Calculate the height above sea level of the train when it reaches B. 12o 864 m A B NOT TO SCALE Answer m [3] 11 = {40, 41, 42, 43, 44, 45, 46, 47, 48, 49} A = {prime numbers} B = {odd numbers} (a) Place the 10 numbers in the correct places on the Venn diagram. A B [2] (b) State the value of )'(n AB ∩ . Answer(b) [1] 12 Make c the subject of the formula bc =− 53 . Answer c = [3]
  • 6. 6 © UCLES 2004 0580/02/O/N/04 For Examiner's Use 13 A square has sides of length d metres. This length is 120 metres, correct to the nearest 10 metres. (a) Complete the statement in the answer space. d <Answer(a) [1] (b) Calculate the difference between the largest and the smallest possible areas of the square. Answer(b) m2 [2] 14 321 _ 1 _ 2 _ 3 0 5 4 3 2 1 _1 _ 2 _3 _ 4 _5 x y (a) Write down the coordinates of the points where the gradient of the curve is zero. ( , ) and ( , ) [2]Answer(a) (b) Write down the range of values of x when the gradient of the curve is negative. Answer(b) [1]
  • 7. 7 © UCLES 2004 0580/02/O/N/04 [Turn over For Examiner's Use 15 A B C D The diagram shows a quadrilateral ABCD. (a) Draw the locus of points in the quadrilateral which are 5cm from A. [1] (b) Using a straight edge and compasses only, draw the locus of all points inside the quadrilateral which are equidistant from C and D. Show all your construction lines. [2] (c) Shade the region which contains points in the quadrilateral that are more than 5 cm from A and nearer to D than to C. [1] 16 NOT TO SCALE ABCD is a cyclic quadrilateral. The tangents at C and D meet at E. Calculate the values of p, q and r. Answer p = [1] q = [1] r = [2] A B C E D 126o 75o ro po qo
  • 8. 8 © UCLES 2004 0580/02/O/N/04 For Examiner's Use 17 Solve the equation 02242 =−+ xx . Give your answers correct to 2 decimal places. Show all your working. or x =Answer x = [4] 18 C = 4 2 1 5 − D = 5 2 1 4 − (a) Write as a single matrix (i) C 3− D, Answer(a)(i) [2] (ii) CD. Answer(a)(ii) [2] (b) Find C 1− . Answer(b) [2]
  • 9. 9 © UCLES 2004 0580/02/O/N/04 [Turn over For Examiner's Use 19 35 m 35 m NOT TO SCALE The diagram shows an athletics track with six lanes. The distance around the inside of the inner lane is 400 metres. The radius of each semicircular section of the inside of the inner lane is 35 metres. (a) Calculate the total length of the two straight sections at the inside of the inner lane. Answer(a) m [3] (b) Each lane is one metre wide. Calculate the difference in the distances around the outside of the outer lane and the inside of the inner lane. Answer(b) m [2]
  • 10. 10 © UCLES 2004 0580/02/O/N/04 For Examiner's Use 20 A gardener plants seeds from a packet of 25 seeds. 14 of the seeds will give red flowers and 11 will give yellow flowers. The gardener chooses two seeds at random. (a) Write the missing probabilities on the tree diagram below. Red Yellow Red Yellow Second seedFirst seed Red Yellow 13 24 .... .... .... 14 25 11 25 [2] (b) What is the probability that the gardener chooses two seeds which will give (i) two red flowers, Answer(b)(i) [2] (ii) two flowers of a different colour? Answer(b)(ii) [2]
  • 11. 11 © UCLES 2004 0580/02/O/N/04 For Examiner's Use 21 1 2 3 4 5 6 7 8 8 7 6 5 4 3 2 1 x y A 0 (a) Using a scale of 1cm to represent 1 unit, draw the vectors = 5 3 and = 0 4 on the grid above. [2] (b) ABCD is a parallelogram. Write down the coordinates of D. ( , ) [2]Answer(b) (c) Calculate . Answer(c) [2]
  • 12. 12 Every reasonable effort has been made to trace all copyright holders where the publishers (i.e. UCLES) are aware that third-party material has been reproduced. The publishers would be pleased to hear from anyone whose rights they have unwittingly infringed. University of Cambridge International Examinations is part of the University of Cambridge Local Examinations Syndicate (UCLES), which is itself a department of the University of Cambridge. 0580/02/O/N/04 BLANK PAGE