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Molodets [167]
4 years ago
9

PLEASE HELP ILL GIVE BRAINLIEST

Mathematics
1 answer:
baherus [9]4 years ago
7 0
The answer is D, 12.
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Between 1 and 49 what number has the most factors
AlladinOne [14]
The answer is (24+24)
the sum is your answer i am going to give you some work to do too

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4 years ago
At Al's catering service they often make a large batch of fruit salad. The recipe for the fruit salad requires 2 cups of apples
iragen [17]
Apples:Strawberries
2:6
4:12
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(Ans so on; Assuming that this is what it means)
7 0
3 years ago
A farmer grows a particular plant that has a gene that can be manipulated to control the age t at which the plant matures. The n
Kruka [31]

Answer:

The correct option is;

Between 40 and 50 days

Step-by-step explanation:

The number of seeds that are produced by a plant maturing at age t, S(t), is given as follows;

S(t) = -0.3·t² + 30·t + 0.2

The proportion of plants maturing at age (t) in the plants to be engineered by the geneticist P(t) = 90000/(t + 100)

The number of seeds produced by the plants  = S(t) × P(t) = (-0.3·t² + 30·t + 0.2)×(90000/(t + 100))

To find the maximum number of seeds, we differentiate using an online tool, and equate to zero to get;

d((-0.3·t² + 30·t + 0.2)×(90000/(t + 100)))/dt = (-27000·t² - 5400000·t + 269982000)/(t + 100)² = 0

(-27000·t² - 5400000·t + 269982000)/(t + 100)² = 27000(t - 41.419)(t + 241.419)/(t + 100)² = 0

t = 41.419 or t = -241.419

Therefore, in order to maximize the production of seed of the crops of the farmer, the geneticist should select between 40 and 50 days.

3 0
3 years ago
What is the solution to the inequality below?
Marta_Voda [28]
24...................................................................
4 0
3 years ago
Michael has a sink that is shaped like a half-sphere. The sink has a volume of 3000 3 in3. One day, his sink is clogged. He has
jarptica [38.1K]

Answer:

Part a) 42\ cups

Part b) 15\ cups

Step-by-step explanation:we know that

The volume of the sink (half sphere) is equal to

V=3,000\pi \ in^{3}

Part a) One cup has a diameter of 6 in. and a height of 8 in. How many cups of water must Michael scoop out of the sink with this cup to empty it?

The volume of the cylinder is equal to

V=\pi r^{2}h

we have

r=6/2=3\ in ----> the radius is half the diameter

h=8\ in

substitute the values

V=\pi (3)^{2}(8)=72\pi\ in^{3}

To find the number of cups divide the total volume of the sink by the volume of the cylinder

\frac{3,000\pi}{72\pi} =41.67\ cups

Round to the nearest whole number

41.67=42\ cups

Part b) One cup has a diameter of 10 in. and a height of 8 in. How many cups of water must Michael scoop out of the sink with this cup to empty it?

The volume of the cylinder is equal to

V=\pi r^{2}h

we have

r=10/2=5\ in ----> the radius is half the diameter

h=8\ in

substitute the values

V=\pi (5)^{2}(8)=200\pi\ in^{3}

To find the number of cups divide the total volume of the sink by the volume of the cylinder

\frac{3,000\pi}{200\pi} =15\ cups

4 0
3 years ago
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