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swat32
3 years ago
11

Find the lateral area of the cylinder PLEASE HELP!

Mathematics
1 answer:
Leno4ka [110]3 years ago
7 0

Answer:

396 pi

Step-by-step explanation:

equation is A = pi r squared times height

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Identify if the following lines are parallel, perpendicular, or neither to the line
pantera1 [17]

The first one is neither

No. 2 is perpendicular (  because  slope = -1/ slope of the other)

No 3 is parallel (both have slope of 3/4)

No 4 is perpendicular.

5 0
3 years ago
Can someone help me on problem one and two?
nevsk [136]
I Dun know I hope u know the answer
3 0
3 years ago
A navigator marks three locations on a satellite map as shown. If the distance from Serravalle to San Marino is 982 miles, and t
valentina_108 [34]
THE ANSWER 

let be S1 = <span>Serravalle
S2= </span><span>San Marino and 
S3= </span><span>Chiesanuova

for finding the distance </span><span>Chiesanuova from Serravalle,

(distance S1 to  S2)  +  (distance S2 to S3) = </span><span>982 miles + 833 miles =1.815 miles

the answer is </span>B. 1, 815 miles
7 0
3 years ago
Read 2 more answers
Cedar Point has 17 roller coasters. If you want to ride at least 15 of them, how many different combinations of roller coasters
stellarik [79]
<h3>Answer:   154</h3>

================================================

Explanation:

I'll be using the formula

_n C _r = \frac{n!}{r!*(n-r)!}

which is the nCr combination formula. We use nCr instead of nPr because the order of coasters doesn't matter. The whole time, the value of n stays fixed at n = 17 which is the total number of coasters to pick from.

While n is constant, the value of r will vary. It ranges from r = 15 to r = 17 inclusive of both endpoints. In other words, r will take on values from the set {15,16,17}. So we have three cases to consider. The r value is how many coasters we select. This is due to the "at least 15" which means "15 or more".

-----------------------

If you ride r = 15 coasters, then we have the following number of combinations

_n C _r = \frac{n!}{r!*(n-r)!}\\\\_{17} C _{15} = \frac{17!}{15!*(17-15)!}\\\\_{17} C _{15} = \frac{17!}{15!*2!}\\\\_{17} C _{15} = \frac{17*16*15!}{15!*2!}\\\\_{17} C _{15} = \frac{17*16}{2!}\\\\_{17} C _{15} = \frac{17*16}{2*1}\\\\_{17} C _{15} = \frac{272}{2}\\\\_{17} C _{15} = 136\\\\

There are 136 ways to ride exactly 15 coasters (when selecting from a pool of 17 total). The order doesn't matter.

We'll use this result later, so let x = 136.

-----------------------

If r = 16, then we follow the same steps as above. You should get 17C16 = 17

There are 17 ways to ride 16 coasters where order doesn't matter. Effectively this is the same as saying "there are 17 ways of picking a coaster that you won't ride"

Let y = 17 so we can use it later

-----------------------

Lastly, if r = 17, then nCr = 17C17 = 1 represents one way to ride all 17 coasters where order doesn't matter.

Let z = 1

-----------------------

Add up the values of x, y, and z to get the final answer

x+y+z = 136+17+1 = 154

4 0
3 years ago
There were 10 baked goods in a basket. Four of them were sold. Write a fraction to show the part of the baked goods that were no
Bess [88]
Since there are 10 that’s the total, four were sold so that’d make it 6/10 = 3/5
4 0
4 years ago
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