The Association of Business Executives Certificate



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questions

(d)


Q3 (a)
(b)
(c)
150 ÷ 0.006038 × 0.98 = 24,347.00 Yen.

6 tonnes per hectare × £170 per tonne = £1,020 per hectare


£1,020 per hectare


––––––––––––––– = 6.71 tonnes per hectare £152 per tonne

(i)




2,000 – 1,700

× 100 = 17.65%




1,700
















(ii)

2,000 ×

100 – 17.65

= £1,647













100







Since £57.80 is 85% of the original price, then 57.80 × 100 = £68.00
















































85




(i)






1000 × 8 × 9

= £720


































100




























































8.2

8
















1000 ×

1

+










– 1000 = £878.53





























































100

















































































0.683




96













1000 ×

1

+







– 1000 = £922.16


































100




































































































  1. £922.16 – £720.00 = £202.16



















i




5




(d)

750 ×

1+










= 1, 264




100






















1+ i = 1.11

100



i = 11%









i




5

1, 264




i

= 1.6850.2




1+







=

1+






















100

750

100







i = 1.11 – 1× 100



(e) (i)

17,250 × 0.75 × 0.925 = £8,526.87







£8,527




(ii)




17, 250.00 – 8,526.87

×

100

= 50.6%




























17, 250.00

1

























(17, 250.00 × 0.75) – 8,526.87







100







(iii)




÷ 5

×

= 5.11%



















17, 250.00













1










































[Turn over



15 IQM0608



Q4 (a)

(i)

If p = 12:

q = 175 – (6 × 12)

q = 175

– 72

q =103 units







(ii)

q = 175 – 6p

6p = 175 – q




175

– q

1










p = ––––––

p = 29.17 – – q






















6

6







(iii)

If q = 40 units

p = 29.17

1

× 40)

p = 29.17 – 6.67p = £22.50







– (–
















6
















(b)

(i)

2(4x – 9) = 42

8x – 18

= 42

8x = 42 + 18




x = 7.5







  1. x 2 – 8x + 15 = 0, using factorisation

(x – 5)(x – 3) = 0 x = 3, 5



  1. 4x 2 + 9x – 8 = 0




q =

–9 ± 92

(

4

× 4 × –8

)

q =

–9 ± 209



















× 4













2







8






= –9 ± 14.46 q

8



q = 0.68 or – 2.93






















(c) 5x – 3y = 2




30x – 18y = 12




(x6)




6x + 7y = 13




30x + 35y = 65




(x5)
















–53y = –53







y = 1




substituting (y = 1) in

5x – 3y = 2







5x – 3 = 2x = 1


































6x + 7y = 13













5x – 3y = 2
















4




























3




























2




























1




point of



















intersection
















0



















–3

–2

–1

0

1

2

3



















–1
















–2


–3

–4


–5



IQM0608 16

(i)




Co-ordinates of intersection with the


































x-axis

y-axis






















5x – 3y = 2

(0.4, 0)

(0, –0.7)







6x + 7y = 13

(2.2, 0)

(0, 1.9)




















  1. The two lines intersect at (1, 1)

Q5 (a)

male 0/5


male 1/6


female 5/5


male 2/7


male 1/5


female 5/6


female 4/5


male 1/5


male 2/6


female 4/5


female 5/7

male 2/5


female 4/6


female 3/5





  1. = 5/7 × 4/6 × 3/5 = 2/7




= /

× /

× /

Probability




= 0




2 7

1 6

0 5







= /

× /

× /

= 1/21




2 7

1 6

5 5




= 2/7 × 5/6 × 1/5

= 1/21







= /

× /

× /

= 4/21




2

7

5

6

4

5




= /

× /

× /

= 1/21




5

7

2

6

1

5







= /

× /

× /

= 4/21




5 7

2 6

4 5




= 5/7 × 4/6 × 2/5

= 4/21





= 5/7 × 4/6 × 3/5

= 2/7







  1. = (2/7 × 1/6 × 5/5) + (2/7 × 5/6 × 1/5) + (5/7 × 2/6 × 1/5)




    • 1/21 + 1/21 + 1/21




    • 1/7




  1. = (2/7 × 1/6 × 5/5) + (2/7 × 5/6 × 1/5) + (2/7 × 5/6 × 4/5) + (5/7 × 2/6 × 1/5) + (5/7 × 2/6 × 4/5) + (5/7 × 4/6 × 2/5)




    • 1/21 + 1/21 + 4/21 + 1/21 + 4/21 + 4/21




    • 5/7




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