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kramer
3 years ago
5

Solve for y: √−53= √27−3−14

Mathematics
1 answer:
katrin2010 [14]3 years ago
7 0

Step-by-step explanation:

hope it will help you..........

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free points TYSM!

Step-by-step explanation:

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3 years ago
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The path of a circus performer shot from a cannon can be described by the equation
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22

Step-by-step explanation:

the answer is 22

8 0
3 years ago
About how many miles are in 4 kilometers?About how many miles are in 4 kilometers?
den301095 [7]

Answer:

2.49 mi

Step-by-step explanation:

7 0
3 years ago
As x increases by 1 unit, what is the exponential growth factor??
san4es73 [151]

Given:

The graph of an exponential function.

To find:

The exponential growth factor as x increases by 1 unit.

Solution:

From the given graph, it is clear that the exponential function passes through the points (1,1) and (3,9). So, the equation of the exponential must must be satisfy by these points.

The general exponential function is:

y=ab^x                 ...(i)

Where, a is the initial value and b is the growth factor.

Putting x=1,y=1 in (i), we get

1=ab^1                  ...(ii)

Putting x=3,y=9 in (i), we get

9=ab^3                  ...(iii)

Divide (iii) by (ii).

\dfrac{9}{1}=\dfrac{ab^3}{ab}

9=b^2

3=b

b is the the growth factor and the value of b is 3.

Therefore, the exponential growth factor is 3 as x increases by 1 unit.

7 0
3 years ago
From each of two normal populations with identical means and with standard deviations of 6.40 and 7.20, independent random sampl
LiRa [457]

Answer: 0.31207

Step-by-step explanation: from the question, the distribution follows a normal distribution and population mean of both data set are equal.

I will also assume a 5% level of significance since any level of significance was not given in the question.

Population standard deviation of the first population (σ1) = 6.40

Population variance of the first population (σ1)² = 40.96

Population standard deviation of the second population (σ2) = 7.20

Population variance of the second population (σ2)² = 51.84

Sample size of first population (n1) = 64

Sample size of second population (n2) = 64

Difference between sample mean (x1 - x2) = 0.6.

Since population standard deviation is known, z test is used in getting the z score and a normal distribution table is used in getting the probability attached to the z score.

Z = (x1 - x2) /√{(σ1)²/n1 + (σ2)²/n2}

By substituting parameters, we have

Z = 0.6/√(40.96/64) + (51.84/64)

Z = 0.6/ √0.64 + 0.81

Z = 0.6/√1.45

Z = 0.6/1.2041

Z = 0.49

Since our difference in sample mean is greater than zero, it means that the probability of the z score (z=0.49) must be that of the one greater than 0.49 which is area towards the right of the distribution.

Do note that the probability value under z score to the left + probability value under z score to the right = 1

The table I'm using here is only giving probability of z scores toward the left (z<0.49)

Hence z>0.49 = 1 - z<0.49

From the table, z<0.49 = 0.68793

z>0.49 = 1 - 0.68793

z>0.49 = 0.31207

6 0
3 years ago
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