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IB Mathematics AI HL 2.2 Functions Question Bank

Practise IB Mathematics AI HL 2.2 by analysing advanced function models, regression, parameters, technology output and sensitivity in context.

Syllabus
First assessment 2021
Course
Mathematics: applications and interpretation HL
Level
HL

Exam points

  • Analyse parameterised, composite, inverse and piecewise functions with domain restrictions.
  • Use technology to fit, compare and validate advanced models, residuals, intersections and sensitivity.
  • Evaluate asymptotic, numerical and contextual behaviour while stating assumptions and limitations.

2.2 Functions - AHL content question 1

[Maximum number: 4]

Walkea Tree is a furniture store. They offer a 30 % discount on all chairs priced over 250 Canadian dollars (CAD).
A different furniture store, LuxeCraft, offer customers a reduction of 150 CAD on all chairs priced over 250 CAD .

Question (a)

(a)

Describe the meaning of (fg)(x)(f \circ g)(x), in context.

[ 2 ]

Question (b)

(b)

State, with justification, whether (fg)(x)(f \circ g)(x) or (gf)(x)(g \circ f)(x) is better for the customer when they buy a chair with an original price of 450 CAD .

[ 2 ]

2.2 Functions - AHL content question 2

[Maximum number: 3]

The function f is defined by f(x)=4ln(2x3)f(x)=4 \ln (2 x-3), where x>32x>\frac{3}{2}.
The graph of y=f(x) is obtained from the graph of y=lnxy=\ln x by a sequence of three transformations.

Describe fully these transformations, including the order in which they occur.

2.2 Functions - AHL content question 3

[Maximum number: 15]

George is researching the growth in the number of electric vehicles (EVs) in the European Union in order to investigate some of the difficulties that might arise if the target of banning sales of all petrol and diesel cars in 2035 is to be met.
George begins his research by predicting how many electric vehicles (EVs) will be in the European Union in 2035.
The number of EVs in the European Union, N, measured in millions, is shown in the following table. The time t is measured in years from the beginning of 2016 where tRt \in \mathbb{R}.

Table for Question 2.2 Functions - AHL content question 3 — IB Maths AI HL

George models this data set using the logistic function N=3101+CektN=\frac{310}{1+C \mathrm{e}^{-k t}}, where C,kR+C, k \in \mathbb{R}^{+}.

Question (a)

(a)

In context, explain the significance of 310 in George's logistic function.

[ 1 ]

Question (b)

(b)

Use the value of N at t=1 to show that C=1549ekC=1549 \mathrm{e}^{k}.

[ 2 ]

Question (c)

(c)

Use the value of N at t=7 to find a second expression for C.

[ 3 ]

Question (d)

(d)

Use your answers to part (b) to find a value for

[ 3 ]

Question (i)

(i)

k\quad k.

[ 2 ]

Question (ii)

(ii)

C.

George uses his model to predict values of N at the end of the years 2017 to 2021. These values are shown in the following table, correct to one decimal place.

Table for Question (ii) — IB Maths AI HL
[ 1 ]

Question (e)

(e)

Calculate the value of a correct to one decimal place.

[ 2 ]

Question (f)

(f)

Use the model to predict the number of EVs in the European Union at the end of 2035.

One of the main difficulties in meeting the European Union's target is the provision of sufficient public charging points.

The European Union estimates that 80 % of car owners will be able to charge their cars at home and the remaining 20 % will require public charging points. It is planned to have one public charging point for every 10 cars that require them.

[ 2 ]

Question (g)

(g)

Use George's model to find an expression for the total number of public charging points required at time t.

At the end of 2020 there were 0.22 million public charging points in the European Union and at the end of 2022 there were 0.54 million.

[ 2 ]
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