Write down the exact value of cos .
Write down the exact value of cos .
Use your calculator to find the exact value of cos .
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Write down the exact value of cos .
Write down the exact value of cos .
Use your calculator to find the exact value of cos .
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Express sin in terms of sin and sin .
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Hence show that
sin
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Starting with the identity
sinsin cos sin cos
And using the substitution , show that sin sin cos .
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Hence show the exact value of sin .
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Use an appropriate identity to find sin in terms of sines and cosines of and .
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Hence show that sin cos sin sin cos .
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Solve the following equations in the given intervals.
sin
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cos
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Show that
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Show that
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Show that , where and are constants with and .
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Write down the maximum value of .
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Sketch the graph of for .
Label the points at which the graph intersects the coordinate axes.
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Use the difference of two squares to show that
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Hence solve the equation
for .
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Prove by a counter-example that sinsin sin is not true in general.
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Express tan in terms of tan and tan
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Hence show that tan.
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Starting with the identity
coscos cos sin sin
and using the substitution , show that cos cos2 sin2
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Hence, or otherwise, show that cos sin2 .
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Using an appropriate trigonometric identity, show that
where and are constants.
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Hence show that .
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Use appropriate double angle formulae to solve the following equations in the given intervals.
cos2 sin2
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Show that
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Show that , where and are constants.
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Hence solve the equation cos sin for .
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Using the identities
sin sin cos sin cos and
cos sin2
show that sin sin sin3
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Hence, or otherwise, solve the equation
sin sin3
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Show that can be written in the form where and .
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Sketch the graph of sin cos for .
Label any points where the graph intercepts the coordinate axes.
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Show that cosec cosec sec .
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If , then
sinsinsinsin sin sin sin
By using a suitable counter-example with , prove that sinsin sin is not true in general.
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Express cos in terms of cosines and sines of 315° and 30°.
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Hence show that cos.
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Show that
sin sin cos
(You may use the identity sin sin cos cos sin .)
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Show that cos sin can be written in the form cos, where and are constants with and .
Give in the form where is an integer, and give correct to three significant figures.
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Solve the equation
sin sin
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Solve the equation
cos sin2
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Show that
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Show that can be written as , where to three significant figures.
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Hence solve the equation
sin cos
giving your answers correct to 3 significant figures.
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By letting , use the identity for to derive an expression for in terms of tan .
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Hence, or otherwise, solve the equation
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Sketch the graph of for .
Be sure to label any points where the graph intercepts the coordinate axes, and state the coordinates of any maximum and minimum points.
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Show that
cot tan sec2
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Prove that is not true in general.
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Use the identities and to show that
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Hence show that .
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Show that
State clearly any trigonometric identities you use to show this result.
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Given that , where and are positive constants, is to be written in the form , find expressions for:
in terms of and
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Solve the equation
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Solve the equation
tan tan
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Show that
tan tan sec
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Show that can be written in the form where , and radians correct to three significant figures.
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Use your result from part (a), and the properties of the sine and cosine functions, to solve the equation
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Use an identity for cos to derive an identity for cos , in terms of cos .
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Hence, or otherwise, solve the equation
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The diagram below shows two right-angled triangles.
Angles and have been labelled.
Given that , find the exact values of sin ,cos and tan .
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Explain briefly why is not a solution to the equation .
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