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vodka [1.7K]
3 years ago
12

What transformations are needed to change the parent cosine function to y=3cos(10(x-pi))?

Mathematics
1 answer:
juin [17]3 years ago
6 0

Answer:

The graph of y=cos(x) is:

*Stretched vertically by a factor of 3

*Compressed horizontally by a factor  \frac{1}{10}

*Moves horizontally \pi units to the rigth

The transformation is:

y=3f(10(x-\pi))

Step-by-step explanation:

If  the function y=cf(h(x+b))  represents the transformations made to the graph of y= f(x)  then, by definition:

If  0 then the graph is compressed vertically by a factor c.

If  |c| > 1 then the graph is stretched vertically by a factor c

If c  then the graph is reflected on the x axis.

If b> 0 The graph moves horizontally b units to the left

If b The graph moves horizontally b units to the rigth

If 0 the graph is stretched horizontally  by a factor \frac{1}{h}

If h> 1 the graph is compressed horizontally by a factor \frac{1}{h}

In this problem we have the function y=3cos(10(x-pi)) and our parent function is y = cos(x)

The transformation is:

y=3f(10(x-\pi))

Then c =3>1  and b =-\pi < 0 and h=10 > 1

Therefore the graph of y=cos(x) is:

Stretched vertically by a factor of 3.

Also as h=10 the graph is compressed horizontally by a factor  \frac{1}{10} .

Also, as b =-\pi < 0 The graph moves horizontally \pi units to the rigth

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a) Between 250 and 390 grams.

b) 99.7% of organs weigh between 215 gras and 425 grams.

c) 0.3% of organs weigh less than 215 grams or more than 425 grams.

d) 81.5% of organs weight between 250 grams and 355 grams.

Step-by-step explanation:

The Empirical Rule states that, for a normally distributed random variable:

68% of the measures are within 1 standard deviation of the mean.

95% of the measures are within 2 standard deviation of the mean.

99.7% of the measures are within 3 standard deviations of the mean.

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Mean = 320

Standard deviation = 35

a) About 95% of organs will be between what​ weights?

By the Empirical Rule, within 2 standard deviations of the mean.

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320 + 2*35 = 390

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(b) What percentage of organs weighs between 215 grams and 425 ​grams?

215 = 320 - 3*35

So 215 is three standard deviations below the mean.

425 = 320 + 3*35

So 425 is three standard deviations above the ean.

By the Empirical Rule, 99.7% of organs weigh between 215 gras and 425 grams.

​(c) What percentage of organs weighs less than 215 grams or more than 425 ​grams?

From b), 99.7% of organs weigh between 215 gras and 425 grams.

100 - 99.7 = 0.3

So 0.3% of organs weigh less than 215 grams or more than 425 grams.

(d) What percentage of organs weighs between 250 grams and 355 ​grams?

The normal distribution is symmetric, which means that 50% are below the mean and 50% are above.

250 = 320 - 2*35

So 250 is two standard deviations below the mean. 95% of the measures below the mean are between 250 and the mean.

355 = 320 + 35

So 355 is one standard deviation above the mean. 68% of the measures above the mean are within the mean and 355.

So

0.68*0.5 + 0.95*0.5 = 0.815

81.5% of organs weight between 250 grams and 355 grams.

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