2.4 Key features of graphsIB Maths: Analysis and Approaches SL: Subtopic test
10 questions, 27 marks
IB Maths: Analysis and Approaches SL
2.4 Key features of graphs
Total 27 marks
Name
Class
Date
- 1The function is defined by , for .(a)Write down the equation of the vertical asymptote of the graph of .[1 mark]
- A
- B
- C
- D
(b)Write down the equation of the horizontal asymptote of the graph of .[1 mark]- A
- B
- C
- D
(c)Find the coordinates of the points where the graph of meets the axes.[2 marks]Total for question 1: 4 marks
- 2The function is defined by , for . The point lies on the graph of .(a)Which other point must also lie on the graph of ?[1 mark]
- A
- B
- C
- D
(b)How many zeros does have?[1 mark]- A
- B
- C
- D
(c)Use technology to find the coordinates of the local maximum point of the graph of , and write down the range of .[2 marks]Total for question 2: 4 marks
- 3Two students are learning to touch-type. The typing speed, in words per minute, of the first student after weeks of practice is modelled by , for . The typing speed of the second student is modelled by , for .(a)Write down the value of and the equation of the horizontal asymptote of the graph of . Interpret the asymptote in context.[3 marks](b)Use technology to find the values of at which the two students type at the same speed. Hence state, with a reason, which student is faster after 10 weeks.[4 marks]
Total for question 3: 7 marks
- 4The side profile of a toy car track is modelled by , for , where is the height of the track above the floor, in cm, at a horizontal distance of cm from the start. A straight support rod runs from the start of the track, , to the end of the track, where .(a)(i) Show that .[6 marks]
(ii) Hence write down the zeros of and describe what happens to the track at .
(iii) Use technology to find the coordinates of the local maximum point of the graph of , and write down the range of .(b)(i) Show that the equation of the support rod is .[6 marks]
(ii) Use technology to find the coordinates of the other point, apart from the start, where the rod meets the track, for .
(iii) Find the greatest vertical distance between the track and the rod for .Total for question 4: 12 marks
End of questions