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scoundrel [369]
3 years ago
5

Can someone PLEASE help!!!!!

Mathematics
1 answer:
jeyben [28]3 years ago
6 0
Try photomath its an app that does your homework for u. I wouldn't know what do do without it
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Please help how do I do this ??
AleksAgata [21]
For 10 here is the answer and for 9 i’ll reply to my comment

3 0
3 years ago
The price of a stock decreased by $20\%$ in 2001, and then decreased by $20\%$ in 2002. What percent increase in 2003 will resto
Whitepunk [10]
2001—80/100 x
2002— 64/100 x
now we need to get x from 64/100 x
5 0
3 years ago
Find ln 0.985 using a calculator and round to four decimal places.
uysha [10]

Answer:

-0.1511

Step-by-step explanation:

ln(0.985) is about -0.151136, which, rounded to four decimal places, is -0.1511. Hope this helps!

6 0
3 years ago
Read 2 more answers
JAYDEN HELP PLZ !!!!!!Select from the drop-down menu to correctly complete the statement about the given figures.
Anna11 [10]
They are similar. I don't remember what it is called but it is 100% ALWAYS true that the angles of a triangle must add up to 180 degrees. Always. If you have two angles, that are 60 degrees, the other must always be 60. again, always. So, They are similar by their angles.
8 0
3 years ago
Tina works for a medical technology company in sales. She travels to doctors' offices and offers them a suite of software relate
sesenic [268]

Answer:  b. 1.94

Step-by-step explanation:

For binomial distribution model , the formula to find standard deviation is given by :-

\sigma=\sqrt{np(1-p)}

Given : The portability that the offices she visits will eventually purchase her product: p=0.25

The number of offices she visited = 20

We assume that the binomial is an appropriate model for the number of offices that make a purchase.

Then, to find the distance of  the possible number of sales Tina could observe from the overall mean number of sales we find standard deviation.

\sigma=\sqrt{np(1-p)}\\\\=\sqrt{20(0.25)(0.75)}\\\\=\sqrt{3.75}=1.9364916731\approx1.94

Hence, the correct answer is option (b).

5 0
3 years ago
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