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soldier1979 [14.2K]
4 years ago
15

A bag contains two red balls and five blue balls. You draw out a ball, record its color, replace it, and then draw out a second

ball, record its color, etc., repeating this four times. What is the probability that you draw out a red ball AT LEAST once?
Mathematics
2 answers:
Anastaziya [24]4 years ago
8 0

Answer:

0.74

Step-by-step explanation:

Drawing at least 1 red ball is the same as: draw 4 red balls or draw 3 red balls or draw 2 red balls or draw 1 red ball. You can calculate all these probabilities and sum them as they are independent:

P (at least 1 red) = P (1 red) + P (2 red) + P (3 red) + P (4 red)

However you can think about the inverse success "not drawing any red" and say that:

P (at least 1 red) = 1 - P (not any red)

This is because the fact of gettin at least 1 red is the complement of getting no red ball. What happens if you do not get at east 1 red ball? Then, you get not any red ball (0 red balls).

Now we need to see the prob of getting no red ball at all, which is the prob of getting a blue ball in every draw. As we have replacing the probabilities are independent. The prob of getting 1 blue ball is:

P(1 blue) = 5/7 as there are 5 blue balls over a total 7 balls.

Now, the prob of getting another blue ball, given that you got a blue on the first is simply the product:

P(blue blue) = 5/7 * 5/7 = 25/49

So, for the third blue ball:

P(blue blue blue) = 5/7 * 5/7 * 5/7 = 125 / 343

And the forth blue ball:

P (blue blue blue blue) = 5/7 * 5/7 * 5/7 * 5/7 = 625 / 2,401 = 0.26

So, the probability of getting no red balls is 0.26. Then, the probability of getting some red ball is:

P (red) = 1 - 0.26 = 0.74

Ganezh [65]4 years ago
6 0

Answer:

B) 0.49

Step-by-step explanation:

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Nadya [2.5K]

<u>First Question:</u>

To find the value of K when F is 5 you must plug in 5 for F and solve for K:

5 = \frac{9}{5}k - 455.67

To do this first add 455.67 to both sides (what you do on one side you must do to the other). Since 455.67 is being subtracted on the right side of the equation, addition (the opposite of subtraction) will cancel it out (make it zero) from the right side and bring it over to the left side.

5 + 455.67= \frac{9}{5}k - 455.67 + 455.67

460.67 =  \frac{9}{5}k + 0

460.67 =  \frac{9}{5}k

Now we must completely isolate k by removing \frac{9}{5} from the right side of the equation. In order to do this you must multiply both sides of the equation by \frac{5}{9}. This is simply the reciprocal of  \frac{9}{5}. Multiplying a fraction by its reciprocal always equals 1

460.67 * \frac{5}{9}=  \frac{9}{5}k * \frac{5}{9}

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255.927 = k

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<u>Second Question:</u>

y = -\frac{1}{4} (x + 8) + 2

X-intercept is set up like so: (0, y). The x value of the x-intercept will ALWAYS be zero. Knowing this you can already plug in zero for the x-value in the equation given above:

y = -\frac{1}{4} (0 + 8) + 2

Now all we need to do is solve for the y-value! To do this you must solve using the rules of PEMDAS (Parentheses, Exponent, Multiplication, Division, Addition, Subtraction) REMEMBER: IF NOT APPLICABLE TO THE EQUATION YOU MAY SKIP THAT STEP IN PEMDAS .

y = -\frac{1}{4} (0 + 8) + 2

Parentheses...

y = -\frac{1}{4} (0 + 8) + 2

0 + 8 <<<In the parentheses so you must solve first

8

so...

y = -\frac{1}{4} (8) + 2

Multiplication...

y = -\frac{1}{4} (8) + 2

-\frac{1}{4} * 8 ---> -\frac{8}{4}

-2

so..

y = -2 + 2

Addition...

y = -2 + 2  

-2 + 2

0

The y-value is zero for the x-intercept.

The x-intercept of the equation y = -\frac{1}{4} (x + 8) + 2 is (0, 0)

NOTE: The point (0, 0) is the orgin, which means that it is also the y-intercept

Hope this helped!

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