(i) Differentiate tan x + In x.
(ii) Use the product rule to differentiate ex cosx.
(iii) Use the quotient rule to differentiate
(iv) Use the chain rule to differentiate
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Exam code: 9709
(i) Differentiate tan x + In x.
(ii) Use the product rule to differentiate ex cosx.
(iii) Use the quotient rule to differentiate
(iv) Use the chain rule to differentiate
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A curve has the equation y = 5e-2x
Find an expression for
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Find for
(i) y = sin(3x2),
(ii) y = 2 In(x3).
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The curve with equation y = passes through the point with coordinates (-3, 1).
(i) Find an expression for
(iii) Find the equation of the tangent to the curve at the point (-3, 1).
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Differentiate (x3 - 2x) Inx with respect to x.
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Differentiate ex cos 2x with respect to x.
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Differentiate with respect to x.
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Differentiate with respect to x.
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Write down when
(i) y = sec 5x,
(ii) y = cosec 3x.
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The function f(x) is defined as
f(x) = (x2 - 4x + 4) In(x), x >0
Show that the graph of y = f(x) intercepts the x-axis at the points (1, 0) and (2, 0).
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Find
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Hence find the equation of the tangent at the point (1, 0), giving your answer in the form ax +by+c=0, where a, and c are integers to be found.
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(i) Differentiate 4 cos x - 3 sin x
(ii) Use the product rule to differentiate ex In x
(iii) Use the quotient rule to differentiate
(iv) Use the chain rule to differentiate cos(x2 - 7x + 1)
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A curve has the equation y = e -3x + Inx, x> 0.
Find the gradient of the normal to the curve at the point (1, e-3), giving your answer correct to 3 decimal places.
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Find for each of the following:
y = cos(x2 - 3x + 7) + sin(ex)
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y = In (2x3)
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Find the equation of the tangent to the curve y = at the point (-2, 1),
giving your answer in the form ax + by + c = 0, where a, b and c are integers.
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Differentiate with respect to x, simplifying your answers as far as possible:
(4 cos x - 3 sin x)e 3x-5
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(x3 - 4x2 + 7) In x
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Differentiate with respect to x.
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Show that if y = cosec 2x, then
= - 2 cosec 2x cot 2x
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Hence find the gradient of the tangent to the curve y = cosec 2x at the point with coordinates
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The diagram below shows part of the graph of y = f(x), where f(x) is the function
defined by
f(x) = (x2 - 1) In (x+ 3), ×>-3
Points A, B and C are the three places where the graph intercepts the x-axis.
Find f'(x).
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Show that the coordinates of point A are (-2, 0).
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Find the equation of the tangent to the curve at point A.
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Use an appropriate method to differentiate each of the following.
(i) sin 2x - e7x
(ii) x2 In x
(iii)
(iv) In(tan x)
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A curve has the equation y = e-3x + In x, x > 0
Show that the equation of the tangent to the curve at the point with x-coordinate 1 is
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For y = In(axn), where a > 0 is a real number and n ≥ 1 is an integer, show that
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Find the gradient of the normal to the curve y = 5 cos(ex - ) at the point with x-coordinate 0. Give your answer correct to 3 decimal places.
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Differentiate with respect to x, simplifying your answers as far as possible:
(2 sin 3х - cos 3x)e6-×
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(x2-x)2 In 5x
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By writing у = as y = f(x)[g(x)]-1 and then using the product and chain rules,
show that
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Given that x = sec 7y,
Find in terms of y
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Hence find in terms of x.
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The diagram below shows part of the graph of y = f(x), where f(x) is the function defined by
Point A is a maximum point on the graph.
Show that the x-coordinate of A is a solution to the equation
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Use an appropriate method to differentiate each of the following.
(i)
(ii) (x2 + 2x - 8) cos(3- x)
(iii)
(iv)
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A curve has the equation y = 3x + 2-x.
Show that the gradient of the normal to the curve at the point
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Show that the derivative y = 4-×4 is
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Hence find the equation of the tangent to the curve at the point (1,), giving your answer in the form y = ax + b, where a and b are to be given as exact values.
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Differentiate with respect to x, simplifying your answers where possible:
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The diagram below shows the graph of y = f(x), where f(x) is the function defined by
The points A and B are maximum and minimum points, respectively.
Find the range of f(x), giving your answer correct to 3 decimal places.
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