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AlladinOne [14]
3 years ago
8

Can someone please help?​

Mathematics
2 answers:
Whitepunk [10]3 years ago
8 0
It says after 600 minutes so after 300 minute it will double to 2 million then after 300 minutes it will be 4 million

Tomtit [17]3 years ago
3 0

Answer:

2,000,000

Step-by-step explanation:

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Consider the population of all 1-gal cans of dusty rose paint manufactured by a particular paint company. Suppose that a normal
Ahat [919]

Answer:

A) 0.5000; B) 0.9772; C) 0.9772; D) 0.8185; E) 0.9932; F) 1.0000

Step-by-step explanation:

For each of these, we will use a z score.  The formula for a z score is:

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

A) Our X is 5, our mean is 5 and our standard deviation is 0.2:

z = (5-5)/(0.2) = 0/0.2 = 0

Using a z table, the value to the left of this, less than, is 0.5000; this means the area to the right of this, greater than, is 1-0.5000 = 0.5000.

B) Our X is 5.4, the mean is 5 and the standard deviation is 0.2:

z = (5.4-5)/0.2 = 0.4/0.2 = 2

Using a z table, the value to the left of this, less than, is 0.9772.

C) The probability for this will be the same as for B; there is no distinction between "less than" and "less than or equal to" in z tables.

D) We find the z score for each of the endpoints of this interval, find the probabilities and subtract them:

z = (4.6-5)/0.2 = -0.4/0.2 = -2; the probability is 0.0228.

z = (5.2-5)/0.2 = 0.2/0.2 = 1; the probability is 0.8413.

The area between them is 0.8413-0.0228 = 0.8185.

E) X is 4.5, the mean is 5 and the standard deviation is 0.2:

z = (4.5-5)/0.2 = -0.5/0.2 = -2.5; the probability less than this is 0.0062.  This means the probability greater than this is 1-0.0062 = 0.9938.

F) X is 4, the mean is 5 and the standard deviation is 0.2:

z = (4-5)/0.2 = -1/0.2 = -5.  Everything in the z table is larger than this, so the probability is 1.000.

4 0
3 years ago
Please help me!!!!!!!!!!!!!!!!!!!!!!​
Sloan [31]

Answer:

Step-by-step explanation:

f(x)=3(2^x)+6 so

f(3)=3(2^3)+6

f(3)=3(8)+6

f(3)=24+6

f(3)=30

4 0
3 years ago
The weight of an organ in adult males has a​ bell-shaped distribution with a mean of 330 grams and a standard deviation of 15 gr
wolverine [178]

Answer: a) (315,345) b) 99.7%, c) 0.14%, d) 97.36%

Step-by-step explanation:

Since we have given that

Mean = 330 grams

Standard deviation = 15 grams

(a) About 68​% of organs will be between what​ weights? ​

We will use 68-95-99.7 rule, it is empirical.

as we know that

P(\mu-\sigma\leq X\leq \mu +\sigma)\approx 0.6827

So,

\mu -\sigma=330-15=315\\\\\mu+\sigma=330+15=345

So,the 68% of the data falls within three standard deviation or will be between (315 grams and 345 grams)

(b) What percentage of organs weighs between 285 grams and 375 ​grams?

\mu+3\sigma=330+3\times 15=330+45=375\\\\\mu-3\sigma=330-3\times 15=330-45=285

so, 99.7 % of organs weighs between 285 grams and 315 grams, because the these two values are within one standard deviation of the mean.

(c) What percentage of organs weighs less than 285 grams or more than 375 ​grams? ​

Since it is 3 standard deviation below the mean and 3 standard deviations above the mean.

so, it becomes

1-0.9973=0.0027\\\\\dfrac{0.0027}{2}=0.00135\\\\So,0.00135\times 100=0.135\%=0.14\%

Since 285 grams is 3 standard deviation below the mean(=330 grams) and 375 grams is 3 standard deviation above the mean(=330 grams).

So 0.14% data is lies below the 285 grams and 0.14% data is lies above the 375 grams.

(d) What percentage of organs weighs between 300 grams and 375 ​grams?

\mu-2\sigma=330-2\times 15=330-30=300\\\\\mu+3\sigma=330+3\times 15=330+45=375

So, 300 grams is 2 standard deviation below the mean i.e. 330 grams and 375 grams is 3 standard deviation above the mean i.e. 330 grams.

so, percentage of organs weighs would be

100-2.5-0.14=97.36\%

Hence, a) (315,345) b) 99.7%, c) 0.14%, d) 97.36%.

4 0
3 years ago
Read 2 more answers
Find the opposite and reciprocal of 1.2 *
den301095 [7]

Answer:

Dtidgjxjgसमदफछघबथधम छधढधदबम

6 0
4 years ago
Consider a game in which players draw playing cards one at a time from a standard 52-card deck. If a player draws a face card (a
aev [14]

Answer:

Expected value of drawing a card in this game on the first turn = 6

Step-by-step explanation:

Given - Consider a game in which players draw playing cards one at a time from a standard 52-card deck. If a player draws a face card (a jack, a queen, or a king), the player is awarded 16 points. Any other card drawn earns the player 3 points.

To find -  What is the expected value of drawing a card in this game on the first turn?

Formula used -

Expected value, E[x] = ∑ x p(x)

where p(x) is the probability

Proof -

Total cards in a standard deck = 52

Total face cards = 12 (a jack, a queen, or a king)

Other cards = 40

Now,

Probability of getting a face card = \frac{12}{52}

Probability of getting a other card = \frac{40}{52}

So,

Expected value, E[x] = ∑ x p(x)

                                  = (16)(\frac{12}{52}) + (3)(\frac{40}{52})

                                  = \frac{192}{52} + \frac{120}{52}

                                  = \frac{312}{52}

                                  = 6

∴ we get

Expected value of drawing a card in this game on the first turn = 6

So,

The correct option is - B. 6 points

4 0
3 years ago
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