GCSE Chemistry – Haber process
Learning Objectives
-I can describe the Haber process
-I can describe and explain the optimum conditions for the Haber process
Quiz Summary
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Question 1 of 36
1. Question
What is the product from the Haber process used for?
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Question 2 of 36
2. Question
Where can we get nitrogen gas from?
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Question 3 of 36
3. Question
Where can we get hydrogen gas from?
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Question 4 of 36
4. Question
What type of reaction is the Haber process?
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Question 5 of 36
5. Question
What type of gaseous reactants are needed to carry out the Haber process?
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Question 6 of 36
6. Question
What gas is needed to carry out the Haber process?
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Question 7 of 36
7. Question
What gas is needed to carry out the Haber process?
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Question 8 of 36
8. Question
Why is a catalyst used within the Haber process?
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Question 9 of 36
9. Question
What type of catalyst is needed for the Haber process?
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Question 10 of 36
10. Question
What temperature should the Haber process be carried out at?
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Question 11 of 36
11. Question
What pressure should the Haber process be carried out at?
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Question 12 of 36
12. Question
What does the Haber process produce?
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Question 13 of 36
13. Question
What type of reaction is the forward reaction of the Haber process?
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Question 14 of 36
14. Question
What is formed during the forward reaction of the Haber process?
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Question 15 of 36
15. Question
Write the forwards equation for the Haber process.
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Question 16 of 36
16. Question
What type of reaction is the backward reaction of the Haber process?
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Question 17 of 36
17. Question
What is formed during the backward reaction of the Haber process?
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Question 18 of 36
18. Question
What is formed during the backward reaction of the Haber process?
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Question 19 of 36
19. Question
Write the backwards equation for the Haber process.
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Question 20 of 36
20. Question
Write the reversible equation for the Haber process.
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Question 21 of 36
21. Question
If the temperature of the Haber process is increased, what will happen to the amount of ammonia formed?
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Question 22 of 36
22. Question
If the temperature of the Haber process is decreased, what will happen to the amount of ammonia formed?
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Question 23 of 36
23. Question
Which way will the position of equilibrium shift when the temperature of the Haber process is increased?
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Question 24 of 36
24. Question
Which way will the position of equilibrium shift when the temperature of the Haber process is increased?
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Question 25 of 36
25. Question
Which way will the position of equilibrium shift when the temperature of the Haber process is decreased?
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Question 26 of 36
26. Question
Which way will the position of equilibrium shift when the temperature of the Haber process is decreased?
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Question 27 of 36
27. Question
Although the amount of yield will be increased, why is it not useful to have the temperature of the Haber process too low?
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Question 28 of 36
28. Question
Although the amount of yield will be increased, why is it not useful to have the temperature of the Haber process too low?
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Question 29 of 36
29. Question
If the pressure of the Haber process is increased, what will happen to the amount of ammonia formed?
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Question 30 of 36
30. Question
If the pressure of the Haber process is decreased, what will happen to the amount of ammonia formed?
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Question 31 of 36
31. Question
Which way will the position of equilibrium shift when the pressure of the Haber process is increased?
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Question 32 of 36
32. Question
Which way will the position of equilibrium shift when the pressure of the Haber process is increased?
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Question 33 of 36
33. Question
Which way will the position of equilibrium shift when the pressure of the Haber process is decreased?
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Question 34 of 36
34. Question
Which way will the position of equilibrium shift when the pressure of the Haber process is decreased?
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Question 35 of 36
35. Question
Why will the position of equilibrium within the Haber process lead to the reaction increasing the amount of ammonia released when the overall pressure is increased?
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Question 36 of 36
36. Question
Why will the position of equilibrium within the Haber process lead to the reaction increasing the amount of ammonia released when the overall pressure is decreased?
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