Lesson 5.3.1
5.3.1 Percentage error, percentage yield and atom economy Quiz: Pearson Edexcel Chemistry, Unit 5
20 questions
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Lesson 5.3.1, Percentage error, percentage yield and atom economy: 20 multiple choice questions for the Pearson Edexcel Chemistry (9CH0), Unit 5: Formulae, Equations and Amounts of Substance, written with Revision Ninja.
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The 20 questions
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What is the percentage yield of a reaction?
- The mass of the reactants divided by the mass of the product, multiplied by 100 to give the percentage
- The theoretical mass divided by the actual mass of the product, multiplied by 100 to give a percentage value
- The moles of product divided by the moles of reactant, multiplied by 1000 to give the yield in per mille
- The actual mass or moles of product divided by the theoretical mass or moles, multiplied by 100
-
A reaction has a theoretical yield of 8.0 g and produces 6.0 g. What is the percentage yield?
- 75%
- 133%
- 80%
- 60%
-
A volume of 25.0 cm3 is measured with an uncertainty of plus or minus 0.05 cm3. What is the percentage uncertainty?
- 0.2%
- 0.05%
- 2%
- 0.02%
-
A mass of 0.50 g is measured to plus or minus 0.01 g. What is the percentage uncertainty?
- 0.02%
- 2%
- 0.2%
- 5%
-
How can the percentage uncertainty in a titre be reduced?
- Use a larger titre volume with the same burette, since the absolute uncertainty stays about the same
- Use a smaller titre volume with the same burette, since the reading is then more precise and easier to read
- Use a balance instead of a burette, since a balance gives a more precise volume for the titration result
- Use a more concentrated indicator, which changes colour more sharply and so reduces the uncertainty in the titre
-
How can random errors in an experiment be reduced?
- Use a different method for each measurement
- Repeat measurements and calculate a mean
- Ignore results that differ from the mean
- Calibrate the balance against a known mass
-
Which is an example of systematic error?
- A balance that reads 0.02 g too high on every measurement
- A volume read at different points on the meniscus
- A reading taken from a slightly different angle each time
- A temperature that fluctuates randomly during an experiment
-
Which factor is the most likely reason for a percentage yield below 100%?
- The balance was zeroed correctly before each weighing, which means the masses recorded are accurate
- The reaction produced more product than expected because the reagents were more pure than the calculation assumed
- Some product is lost during transfer or purification
- The reaction used an excess of one reagent, which always makes the yield exceed the theoretical value
-
What does atom economy measure?
- The mass of waste produced per gram of product, which is calculated from the mass of the product
- The speed at which the reactants are used up during the course of the reaction in the flask
- The proportion of reactant atoms that end up in the desired product
- The percentage of the reaction that has reached equilibrium at the end of the experiment in the flask
-
A reaction theoretically gives 0.50 mol of product and actually gives 0.40 mol. What is the percentage yield?
- 125%
- 40%
- 20%
- 80%
-
10.0 g of calcium carbonate is heated and gives 4.0 g of calcium oxide. What is the percentage yield? (CaCO3 = 100, CaO = 56)
- 56%
- 40%
- 100%
- 71%
-
A student measures a titre of 24.50 cm3, but the true value is 25.00 cm3. What is the percentage error?
- 24.5%
- 0.5%
- 4.0%
- 2.0%
-
A two-step synthesis has yields of 80% and 65%. What is the overall percentage yield?
- 65%
- 145%
- 72.5%
- 52%
-
Which change most reduces the percentage uncertainty in a mass measurement?
- Measuring the mass twice and adding the results
- Using a larger mass with the same balance
- Using a smaller mass with the same balance
- Using a glass beaker instead of a weighing boat
-
A student's calculated yield is over 100%. Which is the most likely reason?
- All reactants were used up with no loss at any stage of the process, which gives the maximum possible yield
- The reaction went to completion exactly, so the yield was calculated correctly and should be exactly 100 percent
- The balance was zeroed correctly before each weighing, so the masses should be accurate and give the right answer
- The product is impure, for example containing water or solvent
-
Explain why atom economy matters even when the percentage yield is 100%.
- A reaction with 100% yield always has an atom economy of 100%, so the two measures always give the same value
- Atom economy only applies to reactions that do not produce a gas, so it is irrelevant to most reactions
- A reaction with 100% yield can still produce many by-products, so most reactant atoms are wasted
- A 100% yield means no waste can be produced, so the atom economy must also be 100% for the reaction
-
Explain the difference between random and systematic error.
- Random errors always shift results in one direction, while systematic errors vary unpredictably from one reading to the next
- Random errors vary unpredictably and are reduced by repeats; systematic errors shift all results one way and need calibration
- Systematic errors are caused only by human mistakes, and random errors arise from the apparatus alone
- Both types of error are reduced by taking more readings, because every error averages out to zero in the end
-
A set of results agrees closely with each other but differs from the accepted value. What does this suggest?
- An error in the balance reading only, because the balance is the only instrument that could be wrong
- Random error only, because the results agree closely with one another, which shows that the errors are random
- A systematic error, because the results are precise but not accurate
- No error at all, because the results are consistent with one another and so must be accurate and correct
-
A 2-step synthesis has an overall yield of 50%. The first step has a yield of 100%. What is the yield of the second step?
- 100%
- 50%
- 150%
- 25%
-
Which expression defines percentage uncertainty?
- (absolute uncertainty x measured value) / 100
- (measured value / absolute uncertainty) x 100
- (measured value - absolute uncertainty) / 100
- (absolute uncertainty / measured value) x 100
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