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2024 VCE Maths Methods Mini Test 9
Adapted for Year 11. Unit 1 & 2.
Number of marks: 9
Reading time: 2 minutes
Writing time: 15 minutes
Section A – Calculator Allowed
Instructions
• Answer all questions in pencil on your Multiple-Choice Answer Sheet.
• Choose the response that is correct for the question.
• A correct answer scores 1; an incorrect answer scores 0.
• Marks will not be deducted for incorrect answers.
• No marks will be given if more than one answer is completed for any question.
• Unless otherwise indicated, the diagrams in this book are not drawn to scale.
Consider the algorithm below which prints the roots of the cubic polynomial \( f(x) = x^3 - 2x^2 - 9x + 18 \).
The algorithm prints in order:
- A. -3, 3, 2
- B. -3, 2, 3
- C. 3, 2, -3
- D. 3, -3, 2
Find the value of \( x \) which maximises the area of the trapezium shown below.
- A. 10
- B. 5\(\sqrt{2}\)
- C. 7
- D. \(\sqrt{10}\)
End of Section A
Section B – No Calculator
Instructions
• Answer all questions in the spaces provided.
• Write your responses in English.
• In questions where a numerical answer is required, an exact value must be given unless otherwise specified.
• In questions where more than one mark is available, appropriate working must be shown.
• Unless otherwise indicated, the diagrams in this book are not drawn to scale.
Let \( g : \mathbb{R} \rightarrow \mathbb{R}, \quad g(x) = \sqrt[3]{x - k}+ m, \quad \text{where } k \in \mathbb{R} \setminus \{0\} \text{ and } m \in \mathbb{R} \).
Let the point \( P \) be the y-intercept of the graph of \( y = g(x) \).
a. Find the coordinates of \( P \), in terms of \( k \) and \( m \). 1 mark
b. Find the gradient of \( g \) at \( P \), in terms of \( k \). 2 marks
c. Given that the graph of \( y = g(x) \) passes through the origin, express \( k \) in terms of \( m \). 1 mark
d. Let the point \( Q \) be a point different from the point \( P \), such that the gradient of \( g \) at points \( P \) and \( Q \) are equal.
Given that the graph of \( y = g(x) \) passes through the origin, find the coordinates of \( Q \) in terms of \( m \). 3 marks
End of examination questions
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