Directly related questions
- EXM.1B.SL.TZ0.1aiii: The results calculated for the subsequent days are shown. Comment on the significance of the...
- EXM.1B.HL.TZ0.1aiii: The results calculated for the subsequent days are shown. Comment on the significance of the...
- EXM.1B.HL.TZ0.1aiii: The results calculated for the subsequent days are shown. Comment on the significance of the...
- EXM.1B.HL.TZ0.iii: The results calculated for the subsequent days are shown. Comment on the significance of the...
- EXM.1B.SL.TZ0.1aiii: The results calculated for the subsequent days are shown. Comment on the significance of the...
- EXM.1B.SL.TZ0.iii: The results calculated for the subsequent days are shown. Comment on the significance of the...
- EXM.1B.HL.TZ0.1bi: Suggest two flaws in the design that could have contributed to the random error in the...
- EXM.1B.SL.TZ0.1bi: Suggest two flaws in the design that could have contributed to the random error in the...
- EXM.1B.HL.TZ0.1bi: Suggest two flaws in the design that could have contributed to the random error in the...
- EXM.1B.HL.TZ0.i: Suggest two flaws in the design that could have contributed to the random error in the...
- EXM.1B.SL.TZ0.1bi: Suggest two flaws in the design that could have contributed to the random error in the...
- EXM.1B.SL.TZ0.i: Suggest two flaws in the design that could have contributed to the random error in the...
- EXM.1B.HL.TZ0.1bii: The student did not standardise the KMnO4 solution used for titration. Suggest what type of error...
- EXM.1B.SL.TZ0.1bii: The student did not standardise the KMnO4 solution used for titration. Suggest what type of error...
- EXM.1B.HL.TZ0.1bii: The student did not standardise the KMnO4 solution used for titration. Suggest what type of error...
- EXM.1B.HL.TZ0.ii: The student did not standardise the KMnO4 solution used for titration. Suggest what type of error...
- EXM.1B.SL.TZ0.1bii: The student did not standardise the KMnO4 solution used for titration. Suggest what type of error...
- EXM.1B.SL.TZ0.ii: The student did not standardise the KMnO4 solution used for titration. Suggest what type of error...
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EXM.1B.HL.TZ0.1cii:
Spinach contains a large amount of antioxidant compounds, including ascorbic acid and oxalic acid. Predict how this will affect the accuracy of the results, mentioning the type and direction of the error.
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EXM.1B.SL.TZ0.1cii:
Spinach contains a large amount of antioxidant compounds, including ascorbic acid and oxalic acid. Predict how this will affect the accuracy of the results, mentioning the type and direction of the error.
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EXM.1B.HL.TZ0.1cii:
Spinach contains a large amount of antioxidant compounds, including ascorbic acid and oxalic acid. Predict how this will affect the accuracy of the results, mentioning the type and direction of the error.
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EXM.1B.HL.TZ0.ii:
Spinach contains a large amount of antioxidant compounds, including ascorbic acid and oxalic acid. Predict how this will affect the accuracy of the results, mentioning the type and direction of the error.
-
EXM.1B.SL.TZ0.1cii:
Spinach contains a large amount of antioxidant compounds, including ascorbic acid and oxalic acid. Predict how this will affect the accuracy of the results, mentioning the type and direction of the error.
-
EXM.1B.SL.TZ0.ii:
Spinach contains a large amount of antioxidant compounds, including ascorbic acid and oxalic acid. Predict how this will affect the accuracy of the results, mentioning the type and direction of the error.
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19M.1A.SL.TZ1.18:
Which properties can be monitored to determine the rate of the reaction?
Fe (s) + CuSO4 (aq) → Cu (s) + FeSO4 (aq)
I. change in volume
II. change in temperature
III. change in colourA. I and II only
B. I and III only
C. II and III only
D. I, II and III
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19M.1A.SL.TZ1.18:
Which properties can be monitored to determine the rate of the reaction?
Fe (s) + CuSO4 (aq) → Cu (s) + FeSO4 (aq)
I. change in volume
II. change in temperature
III. change in colourA. I and II only
B. I and III only
C. II and III only
D. I, II and III
- 19M.1A.HL.TZ1.20: Which graph is obtained from a first order reaction?
- 19M.1A.HL.TZ1.20: Which graph is obtained from a first order reaction?
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19M.1A.SL.TZ1.16:
Which properties can be monitored to determine the rate of the reaction?
Fe (s) + CuSO4 (aq) → Cu (s) + FeSO4 (aq)
I. change in volume
II. change in temperature
III. change in colourA. I and II only
B. I and III only
C. II and III only
D. I, II and III
-
19M.1A.SL.TZ1.16:
Which properties can be monitored to determine the rate of the reaction?
Fe (s) + CuSO4 (aq) → Cu (s) + FeSO4 (aq)
I. change in volume
II. change in temperature
III. change in colourA. I and II only
B. I and III only
C. II and III only
D. I, II and III
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19M.1A.HL.TZ1.18:
Kc for 2N2O (g) 2N2 (g) + O2 (g) is 7.3 × 1034.
What is Kc for the following reaction, at the same temperature?
N2 (g) + O2 (g) N2O (g)
A. 7.3 × 1034
B.
C.
D.
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19M.1A.HL.TZ1.18:
Kc for 2N2O (g) 2N2 (g) + O2 (g) is 7.3 × 1034.
What is Kc for the following reaction, at the same temperature?
N2 (g) + O2 (g) N2O (g)
A. 7.3 × 1034
B.
C.
D.