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Rainbow [258]
2 years ago
6

Jack's mother gave him 50 chocolates to give to his friends at his birthday party. He gave 3 chocolates to each of his friends a

nd still had 2chocolates left. Write an equation showing how many friends were at the party.
Mathematics
1 answer:
Snowcat [4.5K]2 years ago
7 0
To start off, 50 - 2 is 48, to account for the chocolates he had left. 48 divided by 3 is 16, so Jack has 16 friends at the party!!
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Un<br> How many solutions does this system have?<br> 12x-4y=-8<br> y=3x+2
Talja [164]

Answer:

Infinite

Step-by-step explanation:

Get both in the form y = first.

12x - 4y = -8

-4y = -8 - 12x

y = 2 + 3x

y = 3x + 2

These are the same line so all points are the same so that means there are infinite answers.

If ONLY the number in front of the x was the same there would be 0 answers, they would be parallel lines, and if the number in front of the xs were different there would only be one answer.  

3 0
2 years ago
The graph shows a scatterplot, along with the best fit line. The points A, B, C, and D are not part of the set. Adding which poi
Mekhanik [1.2K]

Answer:

A. A

Step-by-step explanation:

In a scatter plot, the value of correlation coefficient is represented by values between -1 to 1. The closer any value of correlation coefficient is to "0", the farther the data points on a scatter plot are from the line of best fit.

Invariably, considering the scatter plot shown in the graph above, the point that will MOST DECREASE the value of correlation coefficient is point A. This is because, if point A is added in the scatter plot, it will cause the value of correlation coefficient to be closer to 0, as point A is the farthest from the line of best fit compared to other points. This will make the data points more spread out and less clustered along the line of best fit.

8 0
3 years ago
What is 26 percent of 2.21
Rashid [163]
You have to do mutiplication. how do you know that you have to do mutiplcation because the (of) it means times. so  26 * 2.21 = 0.5746
         2.21/x=100/26
<span>(2.21/x)*x=(100/26)*x      </span>
<span>2.21=3.8461538461538*x      
</span>(3.8461538461538) to get x
<span>2.21/3.8461538461538=x </span>
<span>0.5746=x </span>
<span>x=0.5746</span>
7 0
3 years ago
A small radio transmitter broadcasts in a 29 mile radius. If you drive along a straight line from a city 32 miles north of the t
hram777 [196]

Answer: He will pick up a signal from the transmitter 29.43 miles of the drive.

Step-by-step explanation:

Since we have given that

Radius = 29 mile

So, equation of circle would be

x^2+y^2=29^2=841

There is a straight line from a city 32 miles north i.e. (0,32) to a second city 40 miles east of the transmitter i.e. (40,0)

So, equation of line would be

y-32=\dfrac{0-32}{40-0}(x-0)\\\\y-32=\dfrac{-32}{40}x\\\\y-32=-0.8x\\\\y+0.8x=32\\\\y=32-0.8x

So, we will put this value in the equation of circle.

x^2+(32-0.8x)^2=841\\\\x^2+1024+0.64x^2-51.2x=841\\\\1.64x^2-51.2x=841-1024\\\\1.64x^2-51.2x=-183\\\\1.64x^2-51.2x+183=0

So, x= 4.12 and x = 27.1

So, y = 28.7, y = 10.32

So, distance between them would be

\sqrt{(x_2-x_1)^2+(y_2-y_1)^2}\\\\=\sqrt{(27.1-4.12)^2+(28.7-10.32)^2}\\\\=29.43

Hence, he will pick up a signal from the transmitter 29.43 miles of the drive.

7 0
2 years ago
A sports writer hypothesized that Tiger Woods plays better on par 3 holes than on par 4 holes. He reviewed Woods' performance in
Varvara68 [4.7K]

e. The p-value is > 0.1, little or no support for the notion that Woods plays better on par 3 holes.

Step-by-step explanation:

Hypothesis by the sports writer

  • On the par 3 holes, Tiger Woods made a birdie in 20 out of 80 attempts.
  • On the par 4 holes, he made a birdie in 40 out of 200 attempts.

Null hypothesis: P 3  <= P 4

Alternative hypothesis: P 3  > P 4

Note that these hypotheses constitute a one-tailed test. The null hypothesis will be rejected if the  proportion of birdies on par 3 holes (p 3 ) is sufficiently greater than the proportion of birdies on par  4 holes (p 4 )

  • Using sample data, we calculate the pooled sample proportion (p) and the standard error (SE). Using those measures, we  compute the z-score test statistic (z).

p = (p3 * n 3 + p4 * n4) / (n3 + n) = [(0.25 * 80) + (0.20 * 200)] / (80 + 200) = 50/280 = 0.214  

SE = sqrt{ p * ( 1 - p ) * [ (1/n3) + (1/n4) ] }  

SE = sqrt [ 0.214 * 0.786 * ( 1/80 + 1/200 ) ]

= sqrt[ 0.214 * 0.786 * 0.0175 }

= sqrt [0.0029548] = 0.0544  

z = (p3 - p4) / SE = (0.25 - 0.20)/0.0544 = 0.92

where p3 is the sample proportion of birdies on par 3,

p4 is the sample proportion of birdies on par 4,

n3 is the number of par 3 holes,

and n4 is the number of par 4 holes.

  • Since we have a one-tailed test, the P-value is the probability that the z-score is greater than 0.92. We use the Normal Distribution Calculator to find P(z > 0.92) = 0.18. Thus, the P-value = 0.18.

  • Since the P-value (0.18) is greater than 0.10, we have little support for the  notion that Woods plays better on par 3 holes. In short, we cannot reject the null hypothesis
3 0
3 years ago
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