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amm1812
4 years ago
13

What cross section when a cylinder is cut perpendicular to its base

Mathematics
1 answer:
Vika [28.1K]4 years ago
5 0

Answer:

triangle

Step-by-step explanation:

Cross sections perpendicular to the base and through the vertex will be triangles. Below, you can see a plane cutting through the pyramid, part of the pyramid removed, and the cross section. You could also take a slice parallel to the base. Cross sections parallel to the base will be hexagons

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A study of long-distance phone calls made from General Electric Corporate Headquarters in Fairfield, Connecticut, revealed the l
Ivenika [448]

Answer:

1. 0.4452; 2. 0.0548; 3. 0.0545; 4. 0.7254; 5. Time is about 5.68 minutes or more.

Step-by-step explanation:

We have a normal distribution with known parameters, that is, for the <em>population mean</em> and for the <em>population standard deviation</em>:

\\ \mu = 4.8\;minutes

\\ \sigma = 0.50\;minutes

For each of the questions, we have to transform either raw score to a z-score as a way to use the <em>cumulative standard normal distribution table</em> for consulting the probabilities values for each z-score.

\\ z-score = \frac{x - \mu}{\sigma}

We also need to have into account that the normal distribution is <em>symmetrical</em>, an indispensable property to calculate negative z-scores, that is, values below the population mean.

<h3>1. The probability that calls last between 4.8 and 5.6 minutes</h3>

The corresponding z-scores for 4.8 minutes and 5.6 minutes are respectively:

\\ z = \frac{x - \mu}{\sigma}

\\ z_{4.8} = \frac{4.8 - 4.8}{0.50} = 0

\\ z_{5.6} = \frac{5.6 - 4.8}{0.50} = 1.60

As we can see, the z-score for a raw value of 4.8 coincides with the population mean, thus the z-score = 0. The probability between 4.8 and 5.6 minutes is the resulting difference between these two values. As a result, consulting the associated probability for each z-score in the cumulative standard normal table, we have:

For  z = 0, P(z<0) = 0.50000.

For z = 1.60, P(z<1.60) = 0.94520

So, the probability that calls last between 4.8 and 5.6 minutes is:

P(4.8<x<5.6) = (z<1.60) - P(z<0) = 0.94520 - 0.50000 = 0.44520 = 0.4452 (four decimal places).

<h3>2. The probability that calls last more than 5.6 minutes</h3>

We already know from previous answer that the cumulative probability for a raw score = 5.6 minutes (that corresponds to a z-score = 1.60) is P(z<1.60) = 0.94520.

Thus, the probability for call that last more than 5.6 minutes is:

P(x>5.6) = P(z>1.60) = 1 - P(z<1.60) = 1 - 0.94520 = 0.0548 (four decimal places).

<h3>3. The probability that calls last between 5.6 and 6.5 minutes</h3>

We know the probability for 5.6 minutes from former answers (P(z<1.60) = 0.94520. We still need to consult the probability for 6.5 minutes, following the same procedure:

\\ z_{6.5} = \frac{6.5 - 4.8}{0.50}

\\ z_{6.5} = 3.40

This corresponds with a cumulative probability of P(z<3.40) = 0.99966.

So, the probability that calls last between 5.6 and 6.5 minutes is:

P(5.6<x<6.5) = P(z<3.40) - P(z<1.60) = 0.99966 - 0.94520 = 0.05446 or 0.0545 (rounding to four decimal places).

<h3>4. The probability that calls last between 4.5 and 6.5 minutes</h3>

We already know that probability for P(x<6.5) = P(z<3.40) = 0.99966.

For the probability of P(x<4.5), we can see that the value is slightly below the population mean (x = 4.8 minutes). The z-score is:

\\ z_{4.5} = \frac{4.5 - 4.8}{0.50} = -0.60

Since we have a negative value and the cumulative standard normal table only permits us consult positive values, that is, z = 0.60, we can find the probability for this z-score, and then subtract it from 1 to find the corresponding value for P(z<-0.60). Then

P(z<0.60) = 0.72575; P(z<-0.60) = 1 - P(z<0.60) = 1 - 0.72575 = 0.27425.

The probability that calls last between 4.5 and 6.5 minutes is:

P(4.5<x<6.5) = P(-0.60<z<3.40) = 0.99966 - 0.27425 = 0.72541 or 0.7254.

<h3>5. The length of the longest (in duration) 4 percent of the calls. What is this time?</h3>

In the cumulative standard normal table, we can consult the 1 - 0.04 = 0.96 probability that corresponds to a z-score. The value for z is approximately z = 1.75. Then, using the formula for z-scores:

\\ z = \frac{x - \mu}{\sigma}

\\ 1.75 = \frac{x - 4.8}{0.50}

\\ 1.75*0.50 = x - 4.8

\\ 1.75*0.50 + 4.8 = x

\\ x = 5.675 \approx 5.68

Then, the length of the longest (in duration) 4 percent of the calls is about 5.68 minutes or more.

The corresponding graphs can be seen below.

3 0
3 years ago
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The second & the last equations are nonlinear. The rest are linear.


Hope this satisfies your query! Have a good one :)
8 0
3 years ago
The shaded cube has a volume of 1 cubic unit. Cubes like this one will be used to completely fill a rectangular prism that has t
ycow [4]

Answer:

it also shows the same dimensions

as all Δ are of 90°

Step-by-step explanation:

plz follow mr

4 0
3 years ago
The width of a large, rectangle-shaped tree farm is 1.9 kilometers. The best length of the farm is 4.4 kilometers. What is the b
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To make estimates, we usually round the numbers the nearest integer.
Since 1.9 is closest to 2 than it is to 1, the nearest integer of 1.9 is 2.
Similarly, since 4.4 is closest to 4 than it is to 5, the nearest integer of 4.4 is 4.

Now, to estimate the area of the farm, we are going to multiply our two integers:
Estimated Area of the Farm= 2x4=8

Since 8 is between 4 and 10, we can conclude that the best estimate of the area of the farm is: between 4 and 10
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3 years ago
How many milliliters are equal to 4 liters
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Answer:

4,000 ml = 4 liters

Hope this helps!

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