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quester [9]
2 years ago
4

In a library, bookcases A,B,C and D are lined up in order. Bookcase A is 1.38 meters from bookcase B and 6.8 meters from bookcas

e C. Bookcase D is 0.925 meters farther from bookcase C than the distance between bookcases B and C. How far apart are bookcases C and D? (Show your work).

Mathematics
2 answers:
omeli [17]2 years ago
7 0

<u><em>Answer:</em></u>

Bookcases C and D are 6.345 meters apart

<u><em>Explanation:</em></u>

The given scenario can be modeled using the attached diagram

Assume that the distance between cases B and C is x meters

<u>We are given that:</u>

Distance between cases A and B is 1.38 m

Distance between cases A and C is 6.8 m

<u>We know that:</u>

Distance between A & C = Distance between A & B + Distance between  B & C

<u>This means that:</u>

6.8 = 1.38 + x

x = 6.8 - 1.38 = 5.42 m

Now, we are given that bookcase D is 0.925 meters farther from bookcase C than the distance between bookcases B and C

<u>This means that:</u>

Distance between cases C & D = Distance between cases B & C + 0.925

Distance between cases C & D = x + 0.925

Distance between cases C & D = 5.42 + 0.925

Distance between cases C & D = 6.345 meters

Hope this helps :)

irga5000 [103]2 years ago
3 0

Answer: Bookcases C and D are 6.345 (or six and three hundred forty five thousandth) meters apart

Step-by-step explanation:Since book case A is 1.38 meters from bookcase B and 6.8 meters from bookcase C, we must subtract 1.38 from 6.8 which would give you 5.42, and since bookcase D is 0.925 meters farther from bookcase C then you would want to add 5.42 by 0.925 which would give you your answer which would be 6.345. In other words subtract 1.38-6.8=5.42, then add 5.42+0.925=6.345 and that's your explanation simplified!

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or

y=2((x-\dfrac{1}{2})^2)-\dfrac{27}{2}

Step-by-step explanation:

Vertex form of equation : f (x) = a(x - h)^2 + k,where (h, k) is the vertex of the parabola.

y=3(x-2)^2-(x-5)^2\\\\=3(x^2+4-4x)-(x^2+25-10x)\\\\=3x^2+12-12x-x^2-25+10x\\\\=2x^2-2x-13\\\\=2(x^2-x-\dfrac{13}{2})\\\\=2(x^2-x+\dfrac{1}{4}-\dfrac{1}{4}-\dfrac{13}{2})\\\\=2((x-\dfrac{1}{2})^2-\dfrac{1+26}{4})\\\\=2((x-\dfrac{1}{2})^2-\dfrac{27}{4})=2((x-\dfrac{1}{2})^2)-\dfrac{27}{2}

Hence, the vertex form of the equation is y=2((x-\dfrac{1}{2})^2)-\dfrac{27}{2}

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Answer:

The dimensions that minimize the amount of cardboard used is

x = 31 cm ,  y = 34 cm & Z = 15.54 cm

Step-by-step explanation:

Volume of the cardboard = 16,384 cm^{3}

The function that represents the area of the cardboard without a lid is given by

f (x,y,z) = xy + 2xz + 2yz ------  (1)

Volume of the cardboard with sides x, y & z is

xyz = 16384

z =  \frac{16384}{xy}

Put this value of z in equation (1) we get

f (x,y,z) = xy + 2x(\frac{16384}{xy} ) + 2y(\frac{16384}{xy} )

f (x,y,z) = xy + \frac{32768}{y}  + 2y(\frac{32768}{x} )

Differentiate above equation with respect to x & y we get

f_{x}  = y - \frac{32768}{x^{2} }

f_{y}  = x - \frac{32768}{y^{2} }

Take f_{x}  = 0 \ and  \ f_{y} = 0

y - \frac{32768}{x^{2} } = 0

y = 32768 \ x^{-2}  ------ (2)

x - \frac{32768}{y^{2} } = 0

x = 32768 \ y^{-2}  ------- (3)

By solving equation (2) & (3) we get

x^{3} = 32768

x = 31 cm

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y = 32768 \ x^{-2}

y = 32768 (31^{-2})

y = 34 cm

z =  \frac{16384}{xy}

z =  \frac{16384}{(34)(31)}

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Answer:

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Step-by-step explanation:

<u>Mean:-</u>

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<u>Mode :</u>

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<u>Conclusion</u>:-

mean = 78.4

median = 77.5

mode = 75

This is Right - skewed (positive skewness) distribution

   

8 0
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