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igomit [66]
3 years ago
10

Levi is building a house. He needs to buy floor tiles for 3 bathrooms in the house. Each bathroom needs 1,024 floor tiles. Appro

ximately how many floor tiles does Levi need to buy?
Question 2 options:

300

1,000

2,000

3,000
Mathematics
2 answers:
Lubov Fominskaja [6]3 years ago
7 0

Answer:

D

Step-by-step explanation: 3 times 1024

DiKsa [7]3 years ago
3 0

Answer:

about 3000 tiles

Step-by-step explanation:

since he needs 1024 tiles per bathroom you have to multiply the 3 bathrooms by how many tiles he needs per bathroom

1024 x 3=3072=3000

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Answer:

Kindly check explanation

Step-by-step explanation:

Given the data:

Medium-Scale Large-Scale

Expansion Profit Expansion Profit

x f(x) y f(y)

Low 50 0.2 0 0.2

Demand Medium 150 0.5 100 0.5

High 200 0.3 300 0.3

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Which decision is preferred for the objective of maximizing the expected profit?

Expected value for medium scale expansion profit :

Expected value (E) = Σ(X) * f(x)

Σ[(50 * 0.2) + (150 * 0.5) + (200 * 0.3)]

= 145

Expected value for Large scale expansion profit :

Expected value (E) = Σ(X) * f(x)

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Medium scale expansion profit is preferred as it has the highest expected value.

b. Compute the variance for the profit associated with the two expansion alternatives.

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Variance (V) = Σ(X - E)² * f(x):

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Variance for Large scale expansion profit :

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3 years ago
If the midpoint of A (a, b) and B(-9, 6) is M(-3, 5):<br> Find the value of a.
WINSTONCH [101]

Answer:

\huge{ \fbox{ \text{3}}}

Step-by-step explanation:

\sf{A ( \: a \:, b \: )\:  \longrightarrow{ \: (x1 \:, y1)}}

\sf{ \: B( - 9 \: 6) \:  \longrightarrow{ (x2 \:, y2)}}

\boxed{ \sf{midpoint = ( \frac{x1 + x2}{2}  \: , \frac{y1 + y2}{2} )}}

\mapsto{ \sf{( - 3 \:, 5 \: ) \:  =  \: ( \frac{a + ( - 9)}{2}  \:,  \frac{b + 6}{2}}})

\mapsto{ \sf{( - 3 \:, 5) \:  =  \: ( \:  \frac{a  - 9}{2}  \:,  \frac{b + 6}{2} )}}

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Hope I helped!

Best regards! :D

~\text{TheAnimeGirl}

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