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1.12 I: Numerical methods (A-level only)

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Question 41

f(x)=ln⁡(x+4)−x+1f(x) = \ln(x+4) - x + 1f(x)=ln(x+4)−x+1

a.

Show that the equation f(x)=0f(x) = 0f(x)=0 can be written in the form x=ln⁡(x+4)+1x = \ln(x+4) + 1x=ln(x+4)+1

[3]
b.

Use the iteration formula xn+1=ln⁡(xn+4)+1x_{n+1} = \ln(x_n + 4) + 1xn+1​=ln(xn​+4)+1 with x0=2.5x_0 = 2.5x0​=2.5 to find, to 3 decimal places, the values of x1x_1x1​, x2 x_2\,x2​ and x3x_3x3​.

[3]
c.

By choosing a suitable interval, prove that α=2.937\alpha = 2.937α=2.937 to 3 decimal places.

[3]

1.12 I: Numerical methods (A-level only) Questions

  1. A Level
  2. /Maths
  3. /1.12 I: Numerical methods (A-level only)

Practise AQA A Level Maths 1.12 I: Numerical methods (A-level only) with exam-style questions for A Level Maths. 107 questions covering 1.12.1 Locating roots by change of sign (A-level only), 1.12.2 Iterative methods and Newton-Raphson (A-level only), 1.12.3 Numerical integration (A-level only), and 1.12.4 Numerical methods in context (A-level only), matched to the AQA A Level Maths (7357) specification and written in Paper 1, Paper 2 and Paper 3 style. Every question includes a full worked solution and mark scheme, so you can see where marks are awarded rather than just whether you got the answer right.

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