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Pani-rosa [81]
3 years ago
10

What is 1 as a percent and decimal

Mathematics
2 answers:
arlik [135]3 years ago
6 0
Percent: 1%
Decimal: 0.01
alexdok [17]3 years ago
3 0

Answer:

the answer of the question is 1% and 0.01

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draw a rectangle on the grid by plotting the points (-3, -2) (-3,3) (6,-2) and(6,3) please help this is for my packet
guapka [62]
Just look for the coordinates left ones are along x axis and right are on y axis

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Is this triangle congruent? pls answer i will mark you brainlyist :)
tiny-mole [99]

Answer:

no

Step-by-step explanation:

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3 years ago
Collins is working.......
lesya [120]
Let n represent the amount Colin earned on Sunday.

On Sat. he earned n/2; on Sun. he earned n; and on Friday he earned (1/2)(n/2).

Then n/2  +  n  + n/4 = $70

Mult. all terms by 4 to eliminate fractions:

2n + 4n + n = $280

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Colin earned n/2, or $20, on Saturday; n, or $40, on Sunday; and n/4, or $10, on Friday.

Note that $20 and $40 and $10 add up to $70, as they must.
4 0
3 years ago
A. -2/9<br><br> B. -1/3<br><br> C. 1/3<br><br> D. 2/9
gogolik [260]

Answer:

C. 1/3

Hope this helps!:)

4 0
3 years ago
Read 2 more answers
Let X be the time it takes for a person to choose a birthday gift, where X has an average value of 27 minutes. If the random var
jeka57 [31]

Answer:

The parameters of this exponential distribution is \lambda = \frac{1}{27} .

Step-by-step explanation:

We are given that the random variable X is known to be exponentially distributed and let X be the time it takes for a person to choose a birthday gift, where X has an average value of 27 minutes.

<u><em>So, X = time it takes for a person to choose a birthday gift</em></u>

The probability distribution function of exponential distribution is given by;

 f(x) = \lambda e^{-\lambda x}  , x >0      where, \lambda = parameter of distribution.

Now, the mean of exponential distribution is = \frac{1}{\lambda}  which is given to us as average value of 27 minutes that means  \lambda = \frac{1}{27} .

So, X ~ Exp( \lambda = \frac{1}{27} ) .

Therefore, the parameter of this exponential distribution is \lambda .

5 0
3 years ago
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