SlideShare a Scribd company logo
15 £1,000,000 (100 Bonuses)
14 £500,000 (80 Bonuses)
13 £250,000 (60 Bonuses)
12 £125,000 (50 Bonuses)
11 £64,000 (40 Bonuses)
10 £32,000 (30 Bonuses)
9 £16,000 (25 Bonuses)
8 £8,000 (20 Bonuses)
7 £4,000 (15 Bonuses)
6 £2,000 (10 Bonuses)
5 £1,000 (5 Bonus)
4 £500 (4 Bonus)
3 £300 (3 Bonus)
2 £200 (2 Bonus)
1 £100 (1 Bonus)
The test for ammonia gas involves ……..
damp red litmus
Sulphuric acid Sodium Hydroxide
damp blue litmus
The test for ammonia gas involves ……..
Sulphuric acid Sodium Hydroxide
damp blue litmus
damp red litmus
The test for ammonia gas involves ……..
Sulphuric acid Sodium Hydroxide
damp blue litmus
damp red litmus
The test for ammonia gas involves ……..
Sulphuric acid Sodium Hydroxide
damp blue litmus
damp red litmus
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7 £4,000
6 £2,000
5 £1,000
4 £500
3 £300
2 £200
1  £100
It is too unreactive
Why can’t most plant absorb Nitrogen directly
from the air?
It is too reactive
It is too stable They do not want to
Why can’t most plant absorb Nitrogen directly
from the air?
It is too unreactive It is too reactive
It is too stable They do not want to
Why can’t most plant absorb Nitrogen directly
from the air?
It is too unreactive It is too reactive
It is too stable They do not want to
Why can’t most plant absorb Nitrogen directly
from the air?
It is too unreactive It is too reactive
It is too stable They do not want to
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7 £4,000
6 £2,000
5 £1,000
4 £500
3 £300
2  £200
1  £100
Nitrogen
Which of the following is not a raw material
used in the Haber Process?
Air
Natural gas
Steam
Which of the following is not a raw material
used in the Haber Process?
Natural gas Air
Steam Nitrogen
Which of the following is not a raw material
used in the Haber Process?
Natural gas Air
Steam Nitrogen
Which of the following is not a raw material
used in the Haber Process?
Natural gas Air
Steam Nitrogen
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7 £4,000
6 £2,000
5 £1,000
4 £500
3  £300
2  £200
1  £100
an acid
We can produce ammonia salts by reacting ammonia
with ………..
an alkali
a salt a catalyst
We can produce ammonia salts by reacting ammonia
with ………..
an acid
a salt
an alkali
a catalyst
We can produce ammonia salts by reacting ammonia
with ………..
an acid
a salt
an alkali
a catalyst
We can produce ammonia salts by reacting ammonia
with ………..
an acid
a salt
an alkali
a catalyst
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7 £4,000
6 £2,000
5 £1,000
4  £500
3  £300
2  £200
1  £100
nitrates
Eutrophication occurs due to the leaching of ………..
sulphates
phosphates
potassium
Eutrophication occurs due to the leaching of ………..
phosphates sulphates
potassium nitrates
Eutrophication occurs due to the leaching of ………..
phosphates sulphates
potassium nitrates
Eutrophication occurs due to the leaching of ………..
phosphates sulphates
potassium nitrates
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7 £4,000
6 £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
three
How many ways are there for Nitrogen fixing to occur?
one two
four
How many ways are there for Nitrogen fixing to occur?
one two
three four
How many ways are there for Nitrogen fixing to occur?
one two
three four
How many ways are there for Nitrogen fixing to occur?
one two
three four
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7 £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
Iron
The catalyst used in the Haber Process is ……….
Ammonia
Vanadium oxide
Platinum and Rhodium
The catalyst used in the Haber Process is ……….
Vanadium oxide
Platinum and Rhodium
Ammonia
Iron
The catalyst used in the Haber Process is ……….
Vanadium oxide
Platinum and Rhodium
Ammonia
Iron
The catalyst used in the Haber Process is ……….
Vanadium oxide
Platinum and Rhodium
Ammonia
Iron
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8 £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
NO3
All nitrates have the symbol ……..
HNO3
NH3 Ni
All nitrates have the symbol ……..
NO3
NH3
HNO3
Ni
All nitrates have the symbol ……..
NO3
NH3
HNO3
Ni
All nitrates have the symbol ……..
NO3
NH3
HNO3
Ni
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9 £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
200°C
The Haber process usually occurs at ……..
450 °C
650 °C 0 °C
The Haber process usually occurs at ……..
200°C 450 °C
650 °C 0 °C
The Haber process usually occurs at ……..
200°C 450 °C
650 °C 0 °C
The Haber process usually occurs at ……..
200°C 450 °C
650 °C 0 °C
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10 £32,000
9  £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
Phosphorous
Which element do plants need for the growth of roots
and for ripening fruit?
Potassium
Nitrogen
Ammonia
Which element do plants need for the growth of roots
and for ripening fruit?
Nitrogen
Ammonia
Phosphorous
Potassium
Which element do plants need for the growth of roots
and for ripening fruit?
Nitrogen
Ammonia
Phosphorous
Potassium
Which element do plants need for the growth of roots
and for ripening fruit?
Nitrogen
Ammonia
Phosphorous
Potassium
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11 £64,000
10  £32,000
9  £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
Vanadium oxide
The catalyst needed for the production of Sulphuric
Acid is ………
Platinum and Rhodium
Iron
Ammonia
The catalyst needed for the production of Sulphuric
Acid is ………
Ammonia
Vanadium oxide
Iron
Platinum and Rhodium
The catalyst needed for the production of Sulphuric
Acid is ………
Ammonia
Vanadium oxide
Iron
Platinum and Rhodium
The catalyst needed for the production of Sulphuric
Acid is ………
Ammonia
Vanadium oxide
Iron
Platinum and Rhodium
15 £1,000,000
14 £500,000
13 £250,000
12 £125,000
11  £64,000
10  £32,000
9  £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
Sulphuric acid
Which of the following is not used in the testing for
Nitric ions?
aluminium
Sodium Hydroxide
red litmus
Which of the following is not used in the testing for
Nitric ions?
Sodium Hydroxide
red litmus
Sulphuric acid
aluminium
Which of the following is not used in the testing for
Nitric ions?
Sodium Hydroxide
red litmus
Sulphuric acid
aluminium
Which of the following is not used in the testing for
Nitric ions?
Sodium Hydroxide
red litmus
Sulphuric acid
aluminium
15 £1,000,000
14 £500,000
13 £250,000
12  £125,000
11  £64,000
10  £32,000
9  £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
200 atmospheres
The Haber Process usually occurs at a pressure
of …………….
400 atmospheres
100 atmospheres
1 atmosphere
The Haber Process usually occurs at a pressure
of …………….
100 atmospheres
1 atmosphere
400 atmospheres
200 atmospheres
The Haber Process usually occurs at a pressure
of …………….
100 atmospheres
1 atmosphere
400 atmospheres
200 atmospheres
The Haber Process usually occurs at a pressure
of …………….
100 atmospheres
1 atmosphere
400 atmospheres
200 atmospheres
15 £1,000,000
14 £500,000
13  £250,000
12  £125,000
11  £64,000
10  £32,000
9  £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
Platinum and Rhodium
The catalyst needed to produce Nitric Acid is ……..
Vanadium oxide
Iron Ammonia
The catalyst needed to produce Nitric Acid is ……..
Vanadium oxide
Iron
Platinum and Rhodium
Ammonia
The catalyst needed to produce Nitric Acid is ……..
Vanadium oxide
Iron
Platinum and Rhodium
Ammonia
The catalyst needed to produce Nitric Acid is ……..
Vanadium oxide
Iron
Platinum and Rhodium
Ammonia
15 £1,000,000
14  £500,000
13  £250,000
12  £125,000
11  £64,000
10  £32,000
9  £16,000
8  £8,000
7  £4,000
6  £2,000
5  £1,000
4  £500
3  £300
2  £200
1  £100
A, B and C
Ms Sykes is ……………..
Very nice A wonderful person
A great teacher
Ms Sykes is ……………..
Very nice A wonderful person
A great teacher A, B and C
Ms Sykes is ……………..
Very nice A wonderful person
A great teacher A, B and C
Ms Sykes is ……………..
Very nice A wonderful person
A great teacher A, B and C
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource

More Related Content

More from ScienceShare.co.uk

ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk
 

More from ScienceShare.co.uk (20)

ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 
ScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared ResourceScienceShare.co.uk Shared Resource
ScienceShare.co.uk Shared Resource
 

ScienceShare.co.uk Shared Resource

  • 1.
  • 2. 15 £1,000,000 (100 Bonuses) 14 £500,000 (80 Bonuses) 13 £250,000 (60 Bonuses) 12 £125,000 (50 Bonuses) 11 £64,000 (40 Bonuses) 10 £32,000 (30 Bonuses) 9 £16,000 (25 Bonuses) 8 £8,000 (20 Bonuses) 7 £4,000 (15 Bonuses) 6 £2,000 (10 Bonuses) 5 £1,000 (5 Bonus) 4 £500 (4 Bonus) 3 £300 (3 Bonus) 2 £200 (2 Bonus) 1 £100 (1 Bonus)
  • 3. The test for ammonia gas involves …….. damp red litmus Sulphuric acid Sodium Hydroxide damp blue litmus
  • 4. The test for ammonia gas involves …….. Sulphuric acid Sodium Hydroxide damp blue litmus damp red litmus
  • 5. The test for ammonia gas involves …….. Sulphuric acid Sodium Hydroxide damp blue litmus damp red litmus
  • 6. The test for ammonia gas involves …….. Sulphuric acid Sodium Hydroxide damp blue litmus damp red litmus
  • 7. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7 £4,000 6 £2,000 5 £1,000 4 £500 3 £300 2 £200 1  £100
  • 8. It is too unreactive Why can’t most plant absorb Nitrogen directly from the air? It is too reactive It is too stable They do not want to
  • 9. Why can’t most plant absorb Nitrogen directly from the air? It is too unreactive It is too reactive It is too stable They do not want to
  • 10. Why can’t most plant absorb Nitrogen directly from the air? It is too unreactive It is too reactive It is too stable They do not want to
  • 11. Why can’t most plant absorb Nitrogen directly from the air? It is too unreactive It is too reactive It is too stable They do not want to
  • 12. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7 £4,000 6 £2,000 5 £1,000 4 £500 3 £300 2  £200 1  £100
  • 13. Nitrogen Which of the following is not a raw material used in the Haber Process? Air Natural gas Steam
  • 14. Which of the following is not a raw material used in the Haber Process? Natural gas Air Steam Nitrogen
  • 15. Which of the following is not a raw material used in the Haber Process? Natural gas Air Steam Nitrogen
  • 16. Which of the following is not a raw material used in the Haber Process? Natural gas Air Steam Nitrogen
  • 17. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7 £4,000 6 £2,000 5 £1,000 4 £500 3  £300 2  £200 1  £100
  • 18. an acid We can produce ammonia salts by reacting ammonia with ……….. an alkali a salt a catalyst
  • 19. We can produce ammonia salts by reacting ammonia with ……….. an acid a salt an alkali a catalyst
  • 20. We can produce ammonia salts by reacting ammonia with ……….. an acid a salt an alkali a catalyst
  • 21. We can produce ammonia salts by reacting ammonia with ……….. an acid a salt an alkali a catalyst
  • 22. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7 £4,000 6 £2,000 5 £1,000 4  £500 3  £300 2  £200 1  £100
  • 23. nitrates Eutrophication occurs due to the leaching of ……….. sulphates phosphates potassium
  • 24. Eutrophication occurs due to the leaching of ……….. phosphates sulphates potassium nitrates
  • 25. Eutrophication occurs due to the leaching of ……….. phosphates sulphates potassium nitrates
  • 26. Eutrophication occurs due to the leaching of ……….. phosphates sulphates potassium nitrates
  • 27. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7 £4,000 6 £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 28. three How many ways are there for Nitrogen fixing to occur? one two four
  • 29. How many ways are there for Nitrogen fixing to occur? one two three four
  • 30. How many ways are there for Nitrogen fixing to occur? one two three four
  • 31. How many ways are there for Nitrogen fixing to occur? one two three four
  • 32. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7 £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 33. Iron The catalyst used in the Haber Process is ………. Ammonia Vanadium oxide Platinum and Rhodium
  • 34. The catalyst used in the Haber Process is ………. Vanadium oxide Platinum and Rhodium Ammonia Iron
  • 35. The catalyst used in the Haber Process is ………. Vanadium oxide Platinum and Rhodium Ammonia Iron
  • 36. The catalyst used in the Haber Process is ………. Vanadium oxide Platinum and Rhodium Ammonia Iron
  • 37. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8 £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 38. NO3 All nitrates have the symbol …….. HNO3 NH3 Ni
  • 39. All nitrates have the symbol …….. NO3 NH3 HNO3 Ni
  • 40. All nitrates have the symbol …….. NO3 NH3 HNO3 Ni
  • 41. All nitrates have the symbol …….. NO3 NH3 HNO3 Ni
  • 42. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9 £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 43. 200°C The Haber process usually occurs at …….. 450 °C 650 °C 0 °C
  • 44. The Haber process usually occurs at …….. 200°C 450 °C 650 °C 0 °C
  • 45. The Haber process usually occurs at …….. 200°C 450 °C 650 °C 0 °C
  • 46. The Haber process usually occurs at …….. 200°C 450 °C 650 °C 0 °C
  • 47. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10 £32,000 9  £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 48. Phosphorous Which element do plants need for the growth of roots and for ripening fruit? Potassium Nitrogen Ammonia
  • 49. Which element do plants need for the growth of roots and for ripening fruit? Nitrogen Ammonia Phosphorous Potassium
  • 50. Which element do plants need for the growth of roots and for ripening fruit? Nitrogen Ammonia Phosphorous Potassium
  • 51. Which element do plants need for the growth of roots and for ripening fruit? Nitrogen Ammonia Phosphorous Potassium
  • 52. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11 £64,000 10  £32,000 9  £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 53. Vanadium oxide The catalyst needed for the production of Sulphuric Acid is ……… Platinum and Rhodium Iron Ammonia
  • 54. The catalyst needed for the production of Sulphuric Acid is ……… Ammonia Vanadium oxide Iron Platinum and Rhodium
  • 55. The catalyst needed for the production of Sulphuric Acid is ……… Ammonia Vanadium oxide Iron Platinum and Rhodium
  • 56. The catalyst needed for the production of Sulphuric Acid is ……… Ammonia Vanadium oxide Iron Platinum and Rhodium
  • 57. 15 £1,000,000 14 £500,000 13 £250,000 12 £125,000 11  £64,000 10  £32,000 9  £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 58. Sulphuric acid Which of the following is not used in the testing for Nitric ions? aluminium Sodium Hydroxide red litmus
  • 59. Which of the following is not used in the testing for Nitric ions? Sodium Hydroxide red litmus Sulphuric acid aluminium
  • 60. Which of the following is not used in the testing for Nitric ions? Sodium Hydroxide red litmus Sulphuric acid aluminium
  • 61. Which of the following is not used in the testing for Nitric ions? Sodium Hydroxide red litmus Sulphuric acid aluminium
  • 62. 15 £1,000,000 14 £500,000 13 £250,000 12  £125,000 11  £64,000 10  £32,000 9  £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 63. 200 atmospheres The Haber Process usually occurs at a pressure of ……………. 400 atmospheres 100 atmospheres 1 atmosphere
  • 64. The Haber Process usually occurs at a pressure of ……………. 100 atmospheres 1 atmosphere 400 atmospheres 200 atmospheres
  • 65. The Haber Process usually occurs at a pressure of ……………. 100 atmospheres 1 atmosphere 400 atmospheres 200 atmospheres
  • 66. The Haber Process usually occurs at a pressure of ……………. 100 atmospheres 1 atmosphere 400 atmospheres 200 atmospheres
  • 67. 15 £1,000,000 14 £500,000 13  £250,000 12  £125,000 11  £64,000 10  £32,000 9  £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 68. Platinum and Rhodium The catalyst needed to produce Nitric Acid is …….. Vanadium oxide Iron Ammonia
  • 69. The catalyst needed to produce Nitric Acid is …….. Vanadium oxide Iron Platinum and Rhodium Ammonia
  • 70. The catalyst needed to produce Nitric Acid is …….. Vanadium oxide Iron Platinum and Rhodium Ammonia
  • 71. The catalyst needed to produce Nitric Acid is …….. Vanadium oxide Iron Platinum and Rhodium Ammonia
  • 72. 15 £1,000,000 14  £500,000 13  £250,000 12  £125,000 11  £64,000 10  £32,000 9  £16,000 8  £8,000 7  £4,000 6  £2,000 5  £1,000 4  £500 3  £300 2  £200 1  £100
  • 73. A, B and C Ms Sykes is …………….. Very nice A wonderful person A great teacher
  • 74. Ms Sykes is …………….. Very nice A wonderful person A great teacher A, B and C
  • 75. Ms Sykes is …………….. Very nice A wonderful person A great teacher A, B and C
  • 76. Ms Sykes is …………….. Very nice A wonderful person A great teacher A, B and C