Printable · GCSE Foundation · ages 14-16
Identities, equivalence and algebraic proof worksheet — GCSE Foundation
Fifteen questions on "identities, equivalence and algebraic proof" — DfE statement A6. Print it, or print three versions so neighbours cannot copy by letter; the key gives the letter for each version.
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Identities, equivalence and algebraic proof worksheet — GCSE Foundation
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- 1.Which expression is equivalent to 3(x + 4) − 2(x − 1)?
- 2.A student says that 5(x + 2) is equivalent to 5x + 2. Which statement explains why the student is wrong?
- 3.Which expression is equivalent to 7x − 3(2x − 6)?
- 4.An equation has exactly one value of x that makes it true, but an identity is true for every value of x. Which of these best explains why 3x + 5 = 20 is an equation rather than an identity?
- 5.A rectangular garden has width w metres and length (w + 3) metres. A gardener writes its perimeter as 2w + 3. Which statement corrects the gardener's mistake?
- 6.Which expression is equivalent to 0.5(4x + 6) − x?
- 7.Which of these equations is true for every value of x, making it an identity rather than an equation with just one solution?
- 8.A student is asked whether 3(x − 4) = 3x − 4 is an identity. Which statement gives the correct verdict and reason?
- 9.A student says 4(2x − 3) is equivalent to 8x − 3. Which statement gives the correct verdict and reason?
- 10.Which of these is an identity?
- 11.Which expression is equivalent to 3(2x − 5) + 4x?
- 12.A market stall's cost of hiring n tables is modelled by two formulas: Formula A: C = 3(2n + 5); Formula B: C = 6n + 15, where C is in pounds. A stallholder says the two formulas always give the same cost. Work out the cost given by each formula when n = 4, and use your results to decide whether the stallholder is correct.
- 13.Which expression is equivalent to 4(x − 2) + 10?
- 14.Two expressions are 6(x − 1) and 6x − 6. A student says these are equivalent for every value of x. Is the student correct?
- 15.Two expressions are 4(x + 3) and 4x + 3. A student checks whether they are equivalent by substituting x = 2. Which statement correctly interprets the result?
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