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natali 33 [55]
3 years ago
11

A sitting space is planned for a new entertainment district in a city. The table shows the relationship between the area, in squ

are feet, and the length of one side, in feet, of the sitting space. The function models the relationship.
Based on the table, which is the best approximation of the area of the sitting space when the side length is 12 feet?
Mathematics
1 answer:
Ksivusya [100]3 years ago
3 0

Answer:

975Ft

Step-by-step explanation:

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Can somebody help me????
ddd [48]
f(x)=5x^2-3\\\\\\
f(x+a)=5(x+a)^2-3=5(x^2+2ax+a^2)-3=\\\\=\boxed{5x^2+10ax+5a^2-3}

On the other hand:

f(x+a)=5x^2+30x+42

so:

10ax=30x\\\\10a=30\qquad|:10\\\\\boxed{a=3}

Answer C.
8 0
4 years ago
In a football or soccer game, you have 22 players, from both teams, in the field. what is the probability of having at least any
Tamiku [17]

We can solve this problem using complementary events. Two events are said to be complementary if one negates the other, i.e. E and F are complementary if

E \cap F = \emptyset,\quad E \cup F = \Omega

where \Omega is the whole sample space.

This implies that

P(E) + P(F) = P(\Omega)=1 \implies P(E) = 1-P(F)

So, let's compute the probability that all 22 footballer were born on different days.

The first footballer can be born on any day, since we have no restrictions so far. Since we're using numbers from 1 to 365 to represent days, let's say that the first footballer was born on the day d_1.

The second footballer can be born on any other day, so he has 364 possible birthdays:

d_2 \in \{1,2,3,\ldots 365\} \setminus \{d_1\}

the probability for the first two footballers to be born on two different days is thus

1 \cdot \dfrac{364}{365} = \dfrac{364}{365}

Similarly, the third footballer can be born on any day, except d_1 and d_2:

d_3 \in \{1,2,3,\ldots 365\} \setminus \{d_1,d_2\}

so, the probability for the first three footballers to be born on three different days is

1 \cdot \dfrac{364}{365} \cdot \dfrac{363}{365}

And so on. With each new footballer we include, we have less and less options out of the 365 days, since more and more days will be already occupied by another footballer, and we can't have two players born on the same day.

The probability of all 22 footballers being born on 22 different days is thus

\dfrac{364\cdot 363 \cdot \ldots \cdot (365-21)}{365^{21}}

So, the probability that at least two footballers are born on the same day is

1-\dfrac{364\cdot 363 \cdot \ldots \cdot (365-21)}{365^{21}}

since the two events are complementary.

8 0
3 years ago
Find the nonpermissible replacement for y in the expression y+3/y+3
Ugo [173]

Answer:

Non-permissible value is y=-3

Step-by-step explanation:

we are given equation as

f=\frac{y+3}{y+3}

we know that denominator can not be zero

so, we can set denominator =0

and then we can solve for y

y+3=0

we can subtract both sides by 3

y+3-3=0-3

y=-3

So,

Non-permissible value is y=-3

5 0
3 years ago
Read 2 more answers
For the differential equation y(n)+p1(t)y(n−1)+ ... +pn(t)y=0 with solutions y1, ..., yn Abel's formula for the Wronskian is W(y
levacccp [35]

Answer:

Step-by-step explanation:

Attached is the solution

7 0
4 years ago
Determine the surface of the cover of a textbook that has a length of 11 inches, a width of 8 inches, and a height of 3 inches.
Ronch [10]

The answer is 264 inches when you use

the formula L × W × H which is 11 × 8 ×

3 = 264 inches

7 0
4 years ago
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