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Vinvika [58]
4 years ago
5

The graphs below have the same shape. What is the equation of the blue graph?

Mathematics
1 answer:
mr_godi [17]4 years ago
4 0
The answer is a because it shifted over three and up 1
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Dagne measures and finds that she can do a vertical jump that is 27.5% of her height. If Dagne can jump 13.2 inches, how tall is
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The answer is 48 I had this question

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Drag the correct tiles to the boxes. Each tile can be used more than once.
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Answer:

Step-by-step explanation:

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If x^6=60 and w^10=20, what is x^12×w^-10? A. 36, B. 60, C. 180 or D. 360
tigry1 [53]

Answer:

x^{12} w^{-10}

And we can find this rewriting the expression in terms of the info given and we got:

x^{12} w^{-10} = (x^6)^2 (w^{10})^{-1}

And replacing we got:

x^{12} w^{-10} = (60)^2 (20)^{-1}= \frac{60^2}{20}= 180

And the best option would be:

C. 180

Step-by-step explanation:

For this case we know that:

x^6, w^{10} = 20

And we want to find the value for:

x^{12} w^{-10}

And we can find this rewriting the expression in terms of the info given and we got:

x^{12} w^{-10} = (x^6)^2 (w^{10})^{-1}

And replacing we got:

x^{12} w^{-10} = (60)^2 (20)^{-1}= \frac{60^2}{20}= 180

And the best option would be:

C. 180

7 0
3 years ago
Emotions are perceived exactly the same way by all people.<br> a. True<br> b. False
iris [78.8K]
<span>The correct answer is B. False. Every individual person perceives emotions differently and reacts to them differently meaning that there is no objective way to determine their strength. That's why crying is not a measure for sadness nor is laughing a measure for happiness and both can easily be simulated, or a person can be extremely sad yet not cry at all.</span>
5 0
3 years ago
Read 2 more answers
<img src="https://tex.z-dn.net/?f=%20%5Csqrt%7B5.29%7D%20%20%20%3D%20" id="TexFormula1" title=" \sqrt{5.29} = " alt=" \sqrt{5.
Alla [95]

Answer:

2.3

Step-by-step explanation:

In this case we are going to use the 'Babylonian Method' to get the square root of any positive number.

We must set an error for the final result. Say, smaller than 0.01. In other words we will try to find the square root value with at least 1 correct decimal places.

Step 1:

Divide the number (5.29) by 2 to get the first guess for the square root .

First guess = 5.29/2 = 2.645.

Step 2:

Divide 5.29 by the previous result. d = 5.29/2.645 = 2.

Average this value (d) with that of step 1: (2 + 2.645)/2 = 2.3225 (new guess).

Error = new guess - previous value = 2.645 - 2.3225 = 0.3225.

0.3225 > 0.01. As error > accuracy, we repeat this step again.

Step 3:

Divide 5.29 by the previous result. d = 5.29/2.3225 = 2.2777179763.

Average this value (d) with that of step 2: (2.2777179763 + 2.3225)/2 = 2.3001089882 (new guess).

Error = new guess - previous value = 2.3225 - 2.3001089882 = 0.0223910118.

0.0223910118 > 0.01. As error > accuracy, we repeat this step again.

Step 4:

Divide 5.29 by the previous result. d = 5.29/2.3001089882 = 2.299891017.

Average this value (d) with that of step 3: (2.299891017 + 2.3001089882)/2 = 2.3000000026 (new guess).

Error = new guess - previous value = 2.3001089882 - 2.3000000026 = 0.0001089856.

0.0001089856 <= 0.01. As error <= accuracy, we stop the iterations and use 2.3000000026 as the square root.

So, we can say that the square root of 5.29 is 2.3 with an error smaller than 0.01 (in fact the error is 0.0001089856). this means that the first 3 decimal places are correct. Just to compare, the returned value by using the javascript function 'Math.sqrt(5.29)' is 2.3.

Note: There are other ways to calculate square roots. This is only one of them.

Normal:

The square root of 5.29 is defined as the only positive real number such that, multiplied by itself, it is equal to 2.3.

The square root of 5.29 can be written as (5.29)1/2. So,

(5.29)1/2 = (2.3 × 2.3)1/2

(5.29)1/2 = [(2.3)2]1/2

(5.29)1/2 = (2.3)2/2

(5.29)1/2 = (2.3)1

Thus,

√5.29 = 2.3

3 0
3 years ago
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