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belka [17]
3 years ago
8

Choose values for horizontal and vertical translation

Mathematics
2 answers:
viva [34]3 years ago
6 0

Answer:

All of the answers are correct.

garik1379 [7]3 years ago
5 0

Answer:

all the answers are right bc if u look at them their all the same i also took the test

Step-by-step explanation:

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Is my answer right? if not can you please tell me which won is right..
cupoosta [38]
<h2><u>A = 4</u> is the correct answer!</h2><h3></h3><h3>3 x ? = 12</h3><h3>12 ÷ 3 = 4</h3><h3>so</h3><h3>1 x 4 = 4</h3><h3 /><h3>You're wrong. It is not six.</h3><h3>By the way, it's "one" not "won".</h3><h3>It was probably a mistake.</h3><h3>:)</h3><h3 /><h3><em>Please let me know if I am wrong.</em></h3>
5 0
3 years ago
What is this please? i'll give u brainliest
Zolol [24]

Answer:

i dont know i just want points

Step-by-step explanation:

>;)

4 0
3 years ago
If C(5,-5) and D(7,3) then what is the length of CD? Round to the nearest tenth
weqwewe [10]
(x1-x2)^2+(y1-y2)^2开根号
6 0
3 years ago
Read 2 more answers
A cyclist estimates that he will bike 80 miles this week. He actually bikes 75.5 miles. What is the percent error of the cyclist
maw [93]

Answer:

<em>The percent error of the cyclist's estimate is 5.63%</em>

Step-by-step explanation:

<u>Percentages</u>

The cyclist estimates he will bike 80 miles this week, but he really bikes 75.5 miles.

The error of his estimate in miles can be calculated as the difference between his estimate and the real outcome:

Error = 80 miles - 75.5 miles = 4.5 miles

To calculate the error as a percent, we divide that quantity by the original estimate and multiply by 100%:

Error% = 4.5 / 80 * 100 = 5.625%

Rounding to the nearest hundredth:

The percent error of the cyclist's estimate is 5.63%

5 0
3 years ago
About 6% of the population has a particular genetic mutation. 600 people are randomly selected. find the standard deviation for
Rina8888 [55]

Assume a binomial distribution. Then the mean of the distribution is np, where n is the number of people taken in a sample and p is the probability of the mutation occurring in any given person, and the standard deviation is \sqrt{np(1-p)}. Then in this case, the standard deviation is \sqrt{600(0.06)(0.94)}\approx5.82.

7 0
4 years ago
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