Let .
For the graph of , find the equation of:
the vertical asymptote
Find .
Write down the equation of the vertical asymptote to the graph of
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Let .
For the graph of , find the equation of:
the vertical asymptote
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Find .
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Write down the equation of the vertical asymptote to the graph of
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Consider , for , where .
and are the equations of the asymptotes of the graph of . Point lies on the graph.
Find the values of and .
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Consider the function defined by , , .
Write down the value of .
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Write down the equation of the horizontal asymptote to the graph of .
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Show that , where and are constants to be determined.
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Sketch the graph of .
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Let , for .
For the graph of , find the coordinates of
the -intercept
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For the graph of , find the equation of
the vertical asymptote
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Consider the function defined by , , .
Find the coordinates of the points where the graph of intersects the coordinate axes.
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Express as partial fractions.
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Hence find the equation of the horizontal asymptote to the graph of .
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Consider the function , ,
Find the coordinates of the points where the graph of intersects the
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Write down the equations of
to the graph of .
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By considering the value of for large positive and large negative values of , sketch the graph of . Be sure to indicate clearly the points of intersection with the coordinate axes, as well as any asymptotes.
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Consider the function , , .
Find the coordinates of the points where the graph of intersects the
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Write down the equation of the vertical asymptote to the graph of .
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How did you do?
Sketch the graph of . Be sure to indicate clearly the points of intersection with the coordinate axes, as well as any asymptotes.
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Let be a function defined by , , .
Write down
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Show that can be written in the form , where , and are constants to be determined.
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Use an algebraic method to show that the graph of does not cross the -axis.
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Sketch the graph of and hence write down the range of the function .
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Let , for
The line is a vertical asymptote of the graph of .
Write down the value of .
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The graph of passes through the point .
Find the value of .
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Find .
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Consider , where .
and are the equations of the asymptotes of the graph of . Point lies on the graph.
Find the values of and .
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Sketch the graph of .
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Let , for
The line is a vertical asymptote of the graph of .
Write down the value of
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The graph of passes through the point .
Find the value of .
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Find
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Consider the function defined by , for
Find the coordinates where the graph of intersects the coordinate axes.
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How did you do?
Sketch the graph of .
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The graph of a function is shown below. The equations of the asymptotes are and The graph crosses the coordinate axes at the points and .
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Write down the value of .
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Consider the function
Find the coordinates where the graph of crosses the
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Find the equation of the oblique asymptote of the graph of , giving the answer in the form where .
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Sketch the graph of . Clearly indicate the asymptotes and give coordinates of the points where the graph intersects the axes.
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Consider the function defined by where . The lines and are vertical asymptotes of the graph of as shown below. The graph crosses through the points and .
Find the values of and .
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The graph of a function is shown below. The equations of the asymptotes are and . The graph crosses the -axis at .
The function can be written as , where
Find the values of and .
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Find the exact coordinates of the points where crosses the -axis.
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Given that has no real solutions where , find the set of possible values of . Give the bounds correct to 2 decimal places.
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Consider the function , for .
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Consider the function , for .
Prove that is an even function.
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The graph of a function is shown below. The graph crosses the -axis at the point A and the -axis at point B. The asymptotes intersect at the point C. The area of the triangle is 3.
Find an equation for in the form , where .
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Let the function be defined by , where is a positive constant.
Write down the value of .
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Sketch the graph of . State the equations of the asymptotes and give the coordinates of the intersections with the coordinate axes in terms of .
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Given that the graph of intersects the line given by , find the set of possible values of a.
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Consider the function defined by The graph of is shown below. The graph has a maximum point at A and a minimum point at B.
Show that is defined for all .
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How did you do?
Hence, find the coordinates of A and B.
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Consider the function defined by , where and are positive constants and .
In the case that and are distinct:
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Sketch the graph of in that case that:
Clearly indicate where the graph crosses the coordinate axes and any asymptotes or discontinuities.
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Sketch the graph of the function be defined by Clearly indicate the coordinates where the graph intersects the axes and state the equation of any asymptotes.
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Sketch the graph of the function defined by Clearly indicate the coordinates where the graph intersects the axes and state the equation of any asymptotes.
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The graph of a function is shown below. The graph crosses the -axis at the points and . The graph crosses the -axis at . The equation of the vertical asymptote is .
The function can be written in the form , where
Given that , find the values of and .
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Hence find the equation of the oblique asymptote.
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Consider the function defined by , where . The line is the only vertical asymptote of the graph of as shown below. The graph crosses through the points and where is a positive constant. The line is a tangent to the graph of at the point .
Find the values of and .
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Find the coordinates of .
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Consider the function
Solve
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Show that , where and are constants to be found.
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Using the answer to part (b), sketch the graph of . Clearly indicate the coordinates of the points where the graph intersects the axes and state the equations of any asymptotes.
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The diagram below shows the graphs of two linear functions and and a quadratic function .
Sketch the graph of . Clearly indicate where the graph intersects the -axis and the location of any vertical asymptotes.
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Sketch the graph of . Clearly indicate where the graph intersects the -axis and the location of any vertical asymptotes.
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