Skip to content
MathsGenie logo
Quick links
Open app

Course home

  1. A Level
  2. Maths OCR (MEI)
  3. Question bank

1.9.20 Integrate kx^n

EasyMedium
12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667
Question 5

The depth, hhh metres, of an underwater research drone exploring a lake is modelled by a function h(t)h(t)h(t), where t>0t > 0t>0 is the time in seconds after it passes a specific underwater marker.

The vertical acceleration of the drone is given by the equation

h′′(t)=10t3+12t2 h''(t) = \frac{10}{\sqrt{t^3}} + 12t^2 h′′(t)=t3​10​+12t2

A point P(1,5)P(1, 5)P(1,5) lies on the depth-time curve.

Given that the rate of change of depth h′(t)=−2h'(t) = -2h′(t)=−2 at point PPP,

a.

find the equation of the normal to the curve at PPP, writing your answer in the form h=mt+ch = mt + ch=mt+c, where mmm and ccc are constants,

[3]
b.

determine an expression for h(t)h(t)h(t).

[6]

1.9.20 Integrate kx^n Questions

  1. A Level
  2. /Maths
  3. /1.9.20 Integrate kx^n