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miv72 [106K]
3 years ago
9

Find the difference between 4/9 and -5/9

Mathematics
1 answer:
kykrilka [37]3 years ago
4 0

Answer:

The difference is 1

Step-by-step explanation:

we know that

The difference is equal to subtract the number -5/9 from 4/9

so

\frac{4}{9}-(-\frac{5}{9})= \frac{4}{9}+\frac{5}{9}=\frac{9}{9}=1

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The number sentence 4x7=(4×3)+(4×4) is an example of what property
Zinaida [17]

4x7

=4x(3+4)

=(4×3)+(4×4).....this is the distributive property

5 0
2 years ago
Sam can mow a lawn in 40 minutes. Melissa can mow the same lawn in 80 minutes. How long does it take for both Sam and Melissa to
Sidana [21]

Answer:

It will take them both 24 minutes to mow the lawn if they are working together.

Step-by-step explanation:

Given that Sam can mow a lawn in 40 minutes, and Melissa can mow the same lawn in 80 minutes, to determine how long does it take for both Sam and Melissa to mow the lawn if they are working together, the following calculation must be performed:

1/40 + 1/60 = 1 / X

3X + 2X = 120

X = 120/5

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Thus, it will take them both 24 minutes to mow the lawn if they are working together.

4 0
3 years ago
2/5<br>of an hour (in minutes)?​
Lena [83]

To convert hour into minute: (No. of hour × 60) minutes

So, 2/5 hours = (2/5 × 60) minutes = (120/5) minutes = 24 minutes

7 0
2 years ago
Read 2 more answers
Determine the volume of the solid that lies between planes perpendicular to the x-axis at x=0 and x=4. The cross sections perpen
OverLord2011 [107]

Answer:

Volume = 16 unit^3

Step-by-step explanation:

Given:

- Solid lies between planes x = 0 and x = 4.

- The diagonals rum from curves y = sqrt(x)  to  y = -sqrt(x)

Find:

Determine the Volume bounded.

Solution:

- First we will find the projected area of the solid on the x = 0 plane.

                              A(x) = 0.5*(diagonal)^2

- Since the diagonal run from y = sqrt(x) to y = -sqrt(x). We have,

                              A(x) = 0.5*(sqrt(x) + sqrt(x) )^2

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- Using the Area we will integrate int the direction of x from 0 to 4 too get the volume of the solid:

                              V = integral(A(x)).dx

                              V = integral(2*x).dx

                               V = x^2

- Evaluate limits 0 < x < 4:

                               V= 16 - 0 = 16 unit^3

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3 years ago
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