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Semenov [28]
3 years ago
13

HELP ASAP!! 10 minuets left! lots of points

Mathematics
1 answer:
VLD [36.1K]3 years ago
5 0

Answer:

130 yd^2

Step-by-step explanation:

First we find the area of the triangle

A = 1/2 b h  where b is 10 and h= 6.25

A = 1/2 (10) * 6.25

   = 31.25 yd^2

Then we find the area of rectangle A

A = l*w  where l is 10 and w = (7.5-2.5) = 5

A = 10 * 5

   = 50 yd^2

Then we find the area of rectangle B

A = l*w  where l is 6.5 and w = 7.5

A = 6.5 * 7.5

   = 48.75 yd^2

The total area is found by adding them together

A triangle + rectangle A  + rectangle B

31.25+50 + 48.75

130 yd^2

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A radioactive substance decays at a continuous rate of 17% per year, and 250 mg of the substance is present in the year 2009.
yaroslaw [1]

Answer:

a) A(t) = 250 (1-0.17)^t = 250(0.83)^t

b) A(t=14) = 250 (0.83)^{14}= 18.408 mg

c) For this case we want to find when the quantity is below 25 mg, so we can do this:

25 = 250 (0.83)^t

We can divide both sided by 250 and we got:

0.1 = 0.83^t

Now we can apply natural log on both sides and we got:

ln(0.1) = t ln (0.83)

And if we solve for t we got:

t = \frac{ln(0.1)}{ln(0.83)}= 12.358 years

So the answer for this case would be 12.358 years after.

Step-by-step explanation:

Part a

For this case we know that the decay rate per year is about 17% or 0.17 in fraction and the initial amount is 250 mg for 2009, we can define the model like this:

A(t) = A_o (1-r)^t

Where A represent the amount of the substance in mg, r the decay rate = 0.17 and t the number of years after 2009.

Our model for this case would be:

A(t) = 250 (1-0.17)^t = 250(0.83)^t

Part b

For this case we have that t= 2023-2009=14 years, so then we can find the amount of substance like this:

A(t=14) = 250 (0.83)^{14}= 18.408 mg

Part c

For this case we want to find when the quantity is below 25 mg, so we can do this:

25 = 250 (0.83)^t

We can divide both sided by 250 and we got:

0.1 = 0.83^t

Now we can apply natural log on both sides and we got:

ln(0.1) = t ln (0.83)

And if we solve for t we got:

t = \frac{ln(0.1)}{ln(0.83)}= 12.358 years

So the answer for this case would be 12.358 years after.

6 0
3 years ago
Find the equivalent fractionsss with large denominatorsss
Stella [2.4K]

Answer:

12

Step-by-step explanation:

\frac{3}{8}  =  \frac{?}{32}

8*4=32

3*4=12

6 0
2 years ago
error analysis: a contractor purchases 7 dozen pairs of padded work gloves for $99.12. she incorrectly calculates the unit price
chubhunter [2.5K]

Answer:

Unit Price= $1.18

The error is that the contractor divided $99.12 by 7 and didn't multiply the 7 by the dozen (12) first, which lead to a mistake.

Step-by-step explanation:

To find the unit price:

1) multiply 7x12 = 84

  to get the total amount of gloves

2) divide 99.12 by 84

  to get the unit price

7 0
3 years ago
If y varies inversely with x<br> and y is 10 when x is 5,<br> then what is y when x is 2?
Blizzard [7]

Answer: X = 2 so Y=25, hope this helped!!

Step-by-step explanation:

8 0
3 years ago
3/2y-3+5/3 when y=6 and z=3
marissa [1.9K]

Answer:

5 \frac{1}{3}

Step-by-step explanation:

Assuming We want to evaluate

\frac{3}{2y - 3} +  \frac{5}{3} z

When y=6 and z=3.

We substitute to get:

\frac{3}{2 \times 6 - 3} +  \frac{5}{3}  \times 3

We multiply to get:

\frac{3}{12 - 3} +  \frac{15}{3}

We simplify the denominator to get:

\frac{3}{9} +  \frac{15}{3}

Reduce the first fraction:

\frac{1}{3} +  \frac{15}{3}

Add the numerator and keep one denominator for they are like fractions

\frac{16}{3}

Write as a mixed number:

5 \frac{1}{3}

4 0
3 years ago
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