Find the indefinite integral
Find the exact value for
Find the indefinite integral for
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Find the indefinite integral
Find the exact value for
Find the indefinite integral for
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Integrate
Find the definite integral
Find an expression for y given that
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Using a suitable substitution, show that
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Given that
use calculus to find the exact value of
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The diagram below shows a sketch of the curves with equations
and
Find the x-coordinates of the intersections of the two graphs.
Show that the area of the shaded region labelled R is given by
Use calculus to find the area of the shaded region labelled R.
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The diagram below shows the graphs of the line and the curve
Work out the x-coordinates of the points labelled P, Q and R.
Work out the area of the shaded region.
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Consider the function such that
Find
Find
Find
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Consider the function .
Find
Hence, find
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Let
Find given that .
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Consider the function f defined by , .
Find the coordinates of the points where the graph of intercepts the x-axis.
Hence calculate the area of the region enclosed by the graph of and the x-axis.
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Find the indefinite integral for
Find the indefinite integral for
Find an expression for y given that
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Find the exact value of
Find the definite integral
Find an expression for y given that
and also that when .
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Consider the function
Let
Find given that
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Use a suitable substitution to show that
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Using a suitable trigonometric identity, find the exact value of
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Work out the value of the following definite integral
giving your answer as an exact value.
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The diagram below shows a sketch of part of the curves with equations and .
The shaded region in the diagram is the area bounded by the two curves.
Show that the area of the shaded region is given by
Hence find the area of the shaded region.
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The diagram below shows a sketch of part of the curves with equations
and
The shaded region in the diagram is the area bounded by the two curves.
Work out the area of the region bounded by the positive x-axis, the negative y-axis and the graph of
Work out the area of the shaded region.
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Consider the function such that
and
Find
Find
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Consider the function f defined by
Calculate the area of the region enclosed by the graph of and the x-axis.
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Find the indefinite integral for
Find the indefinite integral for
Find an expression for y given that
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Find the exact value of
Find the definite integral
Find an expression for y given that
and also that when
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Use a suitable substitution to show that
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Let I be the definite integral defined by
where a, b and k are real constants such that and .
Show that
Hence find the exact values of
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Explain why
Use the result from part (a) to show that
Explain why the value of the integral found in part (b) is a positive number.
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The diagram below shows a sketch of part of the curves with equations and .
The shaded region in the diagram is the area bounded by the two curves.
By first showing that the area of the shaded region is given by
calculate the exact area of the shaded region
Explain why your answer to part (a) is not affected by the fact that the shaded region is partially above and partially below the x-axis.
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The diagram shows a sketch of part of the curves with equations and where a, b, c and d are constants with .
The x-coordinates of the points of intersection of the two curves are p, q and r, where Region S is the region enclosed by the two curves between and , while region T is the region enclosed by the two curves between and
The diagram below shows a sketch of part of the curve with equation
The curve intersects the x-axis at the points and, and region U is the region enclosed by the curve and the x-axis between and .
Given that the areas of regions S and U are equal, calculate the total area enclosed by the two curves in the first diagram. Be sure to provide a suitable justification for your answer.
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Find
Find
Given that and , find
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Show that
A function f is defined by
Let I be the definite integral defined by
where is a constant.
Determine the value of I, giving your answer in terms of a.
Hence, or otherwise, determine the value of a which maximises the value of I, and calculate the value of I when a takes that value.
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