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BabaBlast [244]
2 years ago
6

What is the volume of this container?

Mathematics
2 answers:
attashe74 [19]2 years ago
6 0
1,875 is the answer
Softa [21]2 years ago
3 0
The answer is 1,875 cm^3 because if you multiply the length of each side of the large cube and subtract the volume of the smaller cube, you’ll get the total volume
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Your cousin gave you $2.98 which to buy a present this covered 2/7 of the cost how much did the present cost
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the present would cost $22.20

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Draw a graph of the line that contains the given point and<br> (-3,0); m =<br> 1<br> 8
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Step-by-step explanation:

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There are 12 face cards in a deck of standard playing cards and 20 even numbered cards (2; 4; 6; 8; 10 in each suit). what is th
FromTheMoon [43]
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4 0
3 years ago
A rectangle has vertices E(4,8), F(2,8), G(2,-2) and H(-4,-2). The rectangle is dilated with the origin as the center of dilatio
Leona [35]

Note: The image of G after the dilation must be G'(5,-5) instead of G'(5,5).

Given:

The vertices of a rectangle are E(4,8), F(2,8), G(2,-2) and H(-4,-2).

The rectangle is dilated with the origin as the center of dilation so that G's is located at (5,-5).

To find:

The algebraic representation that represents this dilation.

Solution:

If a figure is dilated by factor k with origin as the center of dilation, then the dilation is defined as:

(x,y)\to (kx,ky)              ...(i)

Let the given rectangle is dilated by factor k with origin as the center of dilation. Then,

G(2,-2)\to G'(k(2),k(-2))

G(2,-2)\to G'(2k,-2k)

The image of G after dilation is G'(5,-5). So,

(2k,-2k)=(5,-5)

On comparing both sides, we get

2k=5

k=\dfrac{5}{2}

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Substituting k=\dfrac{5}{2} in (i), we get

(x,y)\to \left(\dfrac{5}{2}x,\dfrac{5}{2}y\right)

Therefore, the required algebraic representation to represents this dilation is (x,y)\to \left(\dfrac{5}{2}x,\dfrac{5}{2}y\right).

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