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OleMash [197]
3 years ago
12

2. Eli has 600 cubes that are 1 cubic inch. Select the smallest length a cube- shaped box can have while being able to hold the

600 cubes. A 7 in. B 8 in. C 9 in. D 10 in.
​
Mathematics
1 answer:
Montano1993 [528]3 years ago
8 0

Answer:

9 in

Step-by-step explanation:

We need to find x in x^3 > 600

For x=8, 8^3 = 512 < 600 (Too Small)

For x=9, 9^3 = 729 > 600 (Just right)

For x=10, 10^3 = 1000 > 600 (Too big)

Therefore, the smallest length of the cube-shaped box is 9 in.

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Here is a simple probability model for multiple-choice tests. Suppose that each student has probability p of correctly answering
Alla [95]

Answer:

a) The probability that Jodi scores 78% or lower on a 100-question test is 4%.

b) The probability that Jodi scores 78% or lower on a 250-question test is 0.023%.

Step-by-step explanation:

a) To approximate this distribution we have to calculate the mean and the standard distribution.

The mean is the proportion p=0.85.

The standard deviation can be calculates as:

\sigma=\sqrt{\frac{p(1-p)}{n} }= \sqrt{\frac{0.85*(1-0.85)}{100} }=0.04

To calculate the probability that Jodi scores 78% or less on a 100-question test, we first calculate the z-value:

z=\frac{p-p_0}{\sigma} =\frac{0.78-0.85}{0.04} =-1.75

The probability for this value of z is

P(x

The probability that Jodi scores 78% or lower on a 100-question test is 4%.

b) In this case, the number of questions is 250, so the standard deviation needs to be calculated again:

\sigma=\sqrt{\frac{p(1-p)}{n} }= \sqrt{\frac{0.85*(1-0.85)}{250} }=0.02

To calculate the probability that Jodi scores 78% or less on a 250-question test, we first calculate the z-value:

z=\frac{p-p_0}{\sigma} =\frac{0.78-0.85}{0.02} =-3.5

The probability for this value of z is

P(x

The probability that Jodi scores 78% or lower on a 250-question test is 0.023%.

6 0
3 years ago
By accident, four burned-out bulbs have been mixed in with 20 good ones. Ken is replacing old bulbs in his house. If he selects
ollegr [7]

We will be using the fact that P(A \, and \,B) = P(A) \cdot P(B), where P(A) is the probability that the first bulb works and P(B) is the probability that the second bulb works.


The probability that the first bulb works is \frac{20}{24} = \frac{5}{6}. However, when we take one out (given that the first bulb works) we now have 19 working bulbs and 4 bad ones. This means that the probability that the second bulb works is \frac{19}{23}.


Now, we can find our final probability:

\dfrac{5}{6} \cdot \dfrac{19}{23} = \boxed{\dfrac{95}{138}}

7 0
4 years ago
Find the distance, c, between (2,-1) and (-1, 4) on the coordinate plane. Round to the nearest tenth
Fynjy0 [20]

Answer:

c ≈ 5.8 units

Step-by-step explanation:

Calculate c using the distance formula

d = \sqrt{(x_{2}-x_{1})^2+(y_{2}-y_{1})^2    }

with (x₁, y₁ ) = (2, - 1 ) and (x₂, y₂ ) = (- 1, 4 )

c = \sqrt{(-1-2})^2+(4-(-1))^2

   = \sqrt{(-3)^2+(4+1)^2}

   = \sqrt{9+5^2}

    = \sqrt{9+25}

    = \sqrt{34}

    ≈ 5.8 units ( to the nearest tenth )

6 0
3 years ago
Solve the inequality w&gt;y+h/p for h
Arlecino [84]
W>y+h/p
y+h/p<w
h/p<w-y
h<p(w-y)

so; h<p(w-y)
7 0
4 years ago
Write an equivalent expression for 1/3/4
victus00 [196]

Answer:

2/6/8

Step-by-step explanation:

Multiply all values in the given ratio by a constant, in this case 2

8 0
3 years ago
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