Which statement about the polynomial function in this graph is true
which statement about the polynomial function in this graph is - 1

Answers

Answer 1
Answer:

Answer:

Option: A is the correct answer.

A.  The degree is odd and the leading coefficient is positive.

Step-by-step explanation:

Clearly from the graph of the polynomial function we see that both the ends of the graph are  in the opposite directions.

This means that the degree of the polynomial is odd.

( Since in even degree polynomial both the ends are in the same direction )

Also, the leading coefficient of the polynomial is positive.

Since, when a leading coefficient of a odd degree polynomial let p(x) is positive then it satisfies the following property:

when x → -∞     p(x) → -∞

and when x → ∞   p(x) → ∞

Answer 2
Answer:

The degree is odd and the leading coefficient is positive.


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A cylindrical water tank is being filled with a hose. The depth of the water increases by 1 1/4 ft per hour.How many hours will it take for the water level in the tank to be 3 1/2 ft deep? Enter your answer as a mixed number in simplest form in the box. It would really Help :) Thank you

How much is 1,500 minutes in hours?

Answers

1500 divided by 60 (because 60 is 60 minutes in a hour) equals 25
 so there is 25 hours in 1,500 minutes
I will give you the correct steps to finding the correct answer. It is simple math, but you can easily find the answer using a available caculator. Once you have located a caculator. Type in the number 1500 and then click the division sign ÷ . That should you give you 1500 minutes converted into hours.

Darius takes his family on an afternoon boat ride. Going through York Canal, he drives 55 miles in 1515 minutes. Later on as he crosses Stover Lake, he drives 3030 minutes at the same average speed. Which statement about the distances is true?

Answers

he drove 110 miles in 3030 minutes

Compute the standard deviation for the set of data.
2,5, 6, 8, 14​

Answers

Answer:

4.

Step-by-step explanation:

First work out the mean:

Mean = (2 + 5 + 6 + 8 + 14) / 5

= 35/5 = 7.

Now subtract the mean form each of the values:

2 - 7 = -5

5 - 7 = -2

6 - 7 = -1

8 - 7 = 1

7 - 14 = -7.

The squares of these are 25, 4, 1, 1, 49

Their sum = 25 + 4 + 1 + 1 + 49 = 80

Now divide this by 5  = 16.

Standard deviation is  √16 = 4.

(5^2+( 16/4+2^2)+2^3

Answers

(5^2+( 16/4+2^2)+2^3


25+16/4+2^2+2^3

=25+4+2^2+2^3

=25+4+4+2^3

=25+8+2^3

=33+2^3

=33+8

=41

First, evaluate all the separate parts of the equation, then add them together.

5^2+(16/4+2^2)+2^3=25+(4+4)+8=25+8+8=41, so 41 is our answer.

What is the volume of a hemisphere with a radius of 3 cm, rounded to the nearest tenth of a cubic centimeter?

Answers

The Volume of sphere whose radius is 3 cm = 113 cm^(3) (rounded to the nearest tenth)

Volume= 113 cm^(3)

What is Volume of sphere?

The volume of a sphere = 4/3 r³, where r is the radius of the sphere.

Volume of sphere = (4)/(3) * \pi* r^(3)

                               = (4)/(3) * 3.14* (3)^(3)

                               = 4 x 3.14 x 9

                               =113.04 cm^(3)

                               ≈ 113 cm^(3) (rounded to the nearest tenth)

Learn more about Volume of sphere here:

brainly.com/question/9994313

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Final answer:

The volume of a hemisphere with a radius of 3 cm is approximately 56.6 cm³ when rounded to the nearest tenth of a cubic centimeter. This is calculated by halving the volume of a sphere with the same radius.

Explanation:

Calculating the Volume of a Hemisphere

The question asks for the volume of a hemisphere with a radius of 3 cm. The formula for the volume of a sphere is V = (4/3)πr³, and since a hemisphere is half of a sphere, the formula adapts to V = (1/2)(4/3)πr³. Using a radius (r) of 3 cm, we get V = (1/2)(4/3)π(3 cm)³.

Let's calculate the volume step by step:

  1. First, calculate the volume of the full sphere using the radius of 3 cm: V = (4/3)π(3³) cm³
  2. Compute the result: V = (4/3)(π)(27) cm³ = (36π) cm³
  3. Since we want the volume of the hemisphere, we divide this number by 2: V = (36π/2) cm³ = (18π) cm³
  4. Finally, we approximate π to 3.142 and round to the nearest tenth: V ≈ 18(3.142) cm³ ≈ 56.6 cm³

Therefore, the approximate volume of the hemisphere is 56.6 cm³, when rounded to the nearest tenth of a cubic centimeter.

Sharon divides a meatloaf into elevenths.how many elevenths equalt he whole meatloaf?

Answers

If he cuts a meatloaf into 11 peices then 11 peices make up the whole meatloaf
11/11=1
11 elevenths equals 1