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ale4655 [162]
3 years ago
11

Helpppp...Round to the nearest hundredth

Mathematics
2 answers:
Dennis_Churaev [7]3 years ago
4 0

Answer:

Given, radius(r)=3~units

Height (h)=4

Volume=1/3 \pi r^2h

  • 1/3\pi (3)^2(4) units
  • 1/3\pi (9)(4) units
  • 36\pi /3~ units
  • 12\pi \ units^3
<h3><u>---------------------</u></h3><h3><u>hope it helps...</u></h3><h3><u>have a great day!!</u></h3>

love history [14]3 years ago
3 0

Answer:

37.68

Step-by-step explanation:

volume= πr²h/3

= 3.14x3²x4/3

=3.14x3x4

= 3.14x12

=37.68

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What is a positive infinitesimal quantity?
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it is a number that is a infinite in its size (infintely big,infintely small, ect.)

Step-by-step explanation:

a great example of this is the number 0

5 0
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Step-by-step explanation:

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3 years ago
I need help on this worksheet for my math hw it’s combing like terms?
maw [93]
What you would do is combine the terms with variables, and combine the terms without.

Answers:
2. -2w-22
3. 15z
4. 7-16s
5. 17w
6. 4-6r
7. 21-8b
8. 8q
9. -18q-9
10. 12q-3

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3 0
3 years ago
Please help urgent !!!!
CaHeK987 [17]
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6 0
3 years ago
An initial population of 415
slamgirl [31]

Answer:

The exponential function to model the duck population is:

f(n)=415*(1.32)^n, where:

x is the duck population

n is the number of years

Step-by-step explanation:

In order to calculate the duck population you can use the formula to calculate future value:

FV=PV*(1+r)^n

FV=future value

PV=present value

r=rate

n=number of periods of time

In this case, the present value is the initial population of 415 and the rate is 32%. You can replace these values on the formula and the exponential function to model the duck population would be:

f(n)=415*(1+0.32)^n

f(n)=415*(1.32)^n, where:

x is the duck population

n is the number of years

3 0
3 years ago
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