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maxonik [38]
2 years ago
5

For the data set represented on the box plot, which region contains the most dispersed data?

Mathematics
1 answer:
iogann1982 [59]2 years ago
6 0

The region that contains the most dispersed data is between the upper quartile and the median.

<h3>Which region contains the most dispersed data?</h3>

A box plot is used to study the distribution and level of a set of scores. The box plot consists of whiskers which measure the minimum and maximum numbers.

On the box, the first line to the left represents the lower quartile. The next line on the box represents the median. The third line on the box represents the upper quartile.  

  • Difference between the lower quartile and the median : 300 - 275 = 25
  • Difference between the upper quartile and the median : 340 - 300  = 40
  • Difference between the upper quartile and the maximum : 355 - 340 = 15
  • Difference between the minimum and the lower quartile : 275 - 250 = 25

Please find attached the box plot. To learn more about box plots, please check: brainly.com/question/27215146

#SPJ1

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5 0
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How many times longer is the wavelength of a sound wave with a frequency of 20 waves per second than the wavelength of a sound w
sergejj [24]

The sound wave with a <u>frequency of 20</u> waves/sec is 800 longer than the wavelength of a sound wave with a <u>frequency of 16,000</u> waves/sec

<h3>Calculating wavelength </h3>

From the question, we are to determine how many times longer is the first sound wave compared to the second sound water

Using the formula,

v = fλ

∴ λ = v/f

Where v is the velocity

f is the frequency

and λ is the wavelength

For the first wave

f = 20 waves/sec

Then,

λ₁ = v/20

For the second wave

f = 16,000 waves/sec

λ₂ = v/16000

Then,

The factor by which the first sound wave is longer than the second sound wave is

λ₁/ λ₂ = (v/20) ÷( v/16000)

= (v/20) × 16000/v)

= 16000/20

= 800

Hence, the sound wave with a <u>frequency of 20</u> waves/sec is 800 longer than the wavelength of a sound wave with a <u>frequency of 16,000</u> waves/sec

Learn more on Calculating wavelength here: brainly.com/question/16396485

#SPJ1

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Please help on this question for me!
Gnoma [55]

Answer:

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