The following diagram shows the graph of
Write down the value of
Find the value of
Given that , find the domain and range of .
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The following diagram shows the graph of
Write down the value of
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Find the value of
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Given that , find the domain and range of .
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The diameter of our moon is roughly 3.5 x 103 km. Honzos is a spherical moon in a nearby galaxy and its diameter is eight times larger than our moon's.
State the radius of Honzos, giving your answer in standard form.
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Approximately 75% of the surface of Honzos is available for cultivation.
The approximate surface area of Honzos that is available for cultivation can be expressed in the form , where and .
State the values of and .
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Students are arranged for a graduation photograph in rows which follows an arithmetic sequence. There are 20 students in the fourth row and 44 in the 10th row.
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Given there are 20 rows of students in the photograph, calculate how many students there are altogether.
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The heights, in metres, of a flock of 20 flamingos are recorded and shown below:
0.4 | 0.9 | 1.0 | 1.0 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 |
1.3 | 1.3 | 1.3 | 1.4 | 1.4 | 1.4 | 1.4 | 1.5 | 1.5 | 1.6 |
An outlier is an observation that falls either more than 1.5 x (interquartile range) above the upper quartile or less than 1.5 X (interquartile range) below the lower quartile.
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Using your answers to part (a), draw a box plot for the data.
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Let , where , , and .
Find the equation of the tangent of at .
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Prove that
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Hence solve where .
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where and . The line meets the graph of at exactly one point.
Show that .
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can be written in the form , where
Find the value of .
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can also be written in the form where
Find the values of and .
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By sketching the graph of , find the values of where the graph is both negative and decreasing.
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Find the area enclosed by and the -axis.
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Let where is a constant.
Given that , find the value of .
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Find
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Show that the graph of has exactly one minimum point and determine its -coordinate.
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Given that the -coordinate of the minimum point is -4, find the value of .
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Frank has a biased six-sided die.
The faces of the die are numbered 1 to 6.
Frank's score, , is the number which lands face up after his die is rolled.
The following table shows the probability distribution for .
1 | 2 | 3 | 4 | 5 | 6 | |
Frank plays the game twice and adds the scores together.
Find the probability Frank has a total score of 4, giving your answer as a fraction.
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Jenny has a different biased six-sided die.
On Jenny's die, the faces are numbered as multiples of 3.
Jenny's score, , is the number which lands face up after her die is rolled.
The following table shows the probability distribution for .
3 | 6 | 9 | 12 | 15 | 18 | |
It is given that the range of possible values for is .
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Frank and Jenny each roll their die once. The probability that Frank's score is at least as high as Jenny's is .
Find the value of
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