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Tresset [83]
3 years ago
8

What is the radical expression that is equivalent to the expression (35) 1/4

Mathematics
2 answers:
Vera_Pavlovna [14]3 years ago
6 0

Answer:

5^ (1/4)  * 7^(1/4)

Step-by-step explanation:

(35) ^ 1/4

This does not simplify

We can take it apart

(5*7) ^ 1/4

5^ (1/4)  * 7^(1/4)  using the product property

LenKa [72]3 years ago
5 0
Fourth root of 35. You take the denominator and make that the number above the root of sign and the numerator is how many times it is multiplied
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A box of chocolates contains five milk chocolates and six dark chocolates. Mike randomly picks a chocolate and eat it. Then Mike
aleksandr82 [10.1K]

Answer: 0.182

Step-by-step explanation:

For the first selection, the probability of picking a milk chocolate bar is equal to the number of milk chocolate bars divided the total number of bars, this is:

p1 = 5/(6 + 5) = 5/11

In the second selection we have the same equation, but now we have  4 milk chocolate bars (because one is alredy taken)

p2 = 4/(4 + 6) = 4/10

the joint probability is:

P = p1*p2 = (5/11)*(4/10) = 0.182

8 0
4 years ago
Find the slope of the line passing through each of the following pairs of points: A(−7, a) and B(c, d)
Mrrafil [7]

The formula of a slope:

m=\dfrac{y_2-y_1}{x_2-x_1}

We have the points A(-7, a) and B(c, d).

Substitute:

m=\dfrac{d-a}{c-(-7)}=\dfrac{d-a}{c+7}

Exception: c ≠ -7.

3 0
4 years ago
Is 4^2 = 2^3 true?<br><br> Thank you
kari74 [83]

Answer:

yes

Step-by-step explanation:

3 0
3 years ago
Read 2 more answers
Takumi started studying how the number of branches on his tree changes over time.
Musya8 [376]

Answer:

Grows, Factor of 2

Step-by-step explanation:

The relationship between the elapsed time, t, in years, since Takumi started studying his tree, and the total  number of its branches, N(t), is modeled by the function:

N(t) = 63. 2^t

For illustration, let us take the growth for the first three years after he started studying the number of branches.

When \:t=1, N(1) = 63. 2^1=126\\When \:t=2, N(2) = 63. 2^2=252\\When \:t=3, N(3) = 63. 2^3=504\\504\div 252=252\div 126=2

We notice that for each subsequent year, the number of branches doubles.

Therefore:

Every year, the number of branches  <u>grows</u> by a factor of <u>2.</u>

8 0
4 years ago
Alguém aí ajuda fazendo o favor?
Anastasy [175]
3y
---- -2 =9
 4

3y 
---- = 11
 4

3y = 44

y = 44/3

hope helped 
5 0
3 years ago
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