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1.10 G: Differentiation

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Question 57

An aerodynamic profile for a glider wing is designed to be symmetric about the chord line (the xxx-axis). The upper boundary of the wing's cross-section is modelled by the parametric equations:

x=−1.5t2 x = -1.5t^2 x=−1.5t2 y=15t−0.75t2 y = 15t - 0.75t^2 y=15t−0.75t2

for 0≤t≤200 \le t \le 200≤t≤20, where xxx and yyy are measured in millimetres.

a.

Determine the total length of the glider wing along the xxx-axis.

[2]
bi.

Obtain an expression for dydx\frac{dy}{dx}dxdy​ in terms of ttt.

[3]
bii.

Hence, prove that the maximum thickness (total width) of the wing is exactly one-quarter of its total length.

[4]
Markscheme

1.10 G: Differentiation Questions

  1. A Level
  2. /Maths
  3. /1.10 G: Differentiation

375 exam-style questions on AQA A Level Maths 1.10 G: Differentiation, covering 1.10.1 The derivative and second derivative, 1.10.2 Differentiating standard functions, 1.10.3 Applications of differentiation, 1.10.4 Product, quotient and chain rules (A-level only), 1.10.5 Implicit and parametric differentiation (A-level only), and 1.10.6 Constructing differential equations (A-level only). Each one has a worked solution and a mark scheme showing where the marks go.

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