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gogolik [260]
2 years ago
10

Which geometric solids would model the tent?

Mathematics
2 answers:
aivan3 [116]2 years ago
8 0

a cylinder and a cone. the cone would go on the top, and the cylinder on the bottom.

stira [4]2 years ago
5 0

Answer:

O Cone and Shere Cylinder and cone

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Planes X and Y and points J, K, L, M, and N are shown. Vertical plane X intersects horizontal plane Y. Point L is on the left ha
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Answer:

  1

Step-by-step explanation:

Three points define 1 plane.

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2 years ago
A box holds 25 pounds of cans. Each can weighs 8 ounces. How many cans does each box hold?
OverLord2011 [107]

1 pound = 16 ounces.

1 can weighs 8 ounces, so 2 cans weigh 8 +8 = 16 ounces, which is 1 pound.

Multiply total pounds by number of cans per pound:

25 pounds x 2 cans per pound = 50 total cans.

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2 years ago
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A ladder is placed 30 inches from a wall. It touches the wall at a height of 50 inches from the ground.
kati45 [8]
I don't know if you need the answer to how long the ladder is or what degree the ladder and ground form so I am going to give you both.

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If you have any question let me know 
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Which inequality is represented by this graph? A number line going from negative 36 to negative 30. An open circle is at negativ
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2 years ago
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r Flag For Review A certain city with a population of 132,000 is to be divided into 11 voting districts, and no district is to h
Alex787 [66]

Answer:

P = \frac{132000}{12}=11000

So then P =11000 is the minimum that the least populated district could have.

Step-by-step explanation:

We have a big total of N = 132000 for the population.

And we know that we divide this population into 11 districts

And we have this info given "no district is to have a population that is more than 10 percent greater than the population of any other district"

Let's assume that P represent our minimum value for a district in the population. The range of possible values for the population of each district would be between P and 1.1 P

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P + 10 (1.1P) = 12 P= 132000

P = \frac{132000}{12}=11000

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3 0
2 years ago
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