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IrinaK [193]
4 years ago
15

if there is 1/3 of a pizza left, and Becky only wants to eat 1/2 of it, how much pizza does she want

Mathematics
2 answers:
Novay_Z [31]4 years ago
7 0
She would want 1/6 of it. 1/2x1/3= 1/6
Flura [38]4 years ago
7 0
<h2>Answer:</h2>

The amount of pizza she wants is:

                        \dfrac{1}{6} of the pizza.

<h2>Step-by-step explanation:</h2>

If there is 1/3 of a pizza left, and Becky only wants to eat 1/2 of it.

Then the amount of pizza she wants is:

          1/2 of the amount of the pizza left.

i.e. she wants:

\dfrac{1}{2}\times \dfrac{1}{3}=\dfrac{1}{6}

This means that Becky wants 1/6 parts of the whole pizza.

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Solve the equation. Show your work. 45 = 3b + 69
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There should be no problem in finding the value of the unknown variable "b" in the equation given in the question.The equation is solvable for finding the value of "b" because it is the only unknown variable in the single equation that is given in the question.
45 = 3b + 69
Let us reverse both sides of the equation first. then, we get
3b + 69 = 45
3b = 45 - 69
3b = - 24
b = - (24/3)
   = - 8
So from the above deduction, we can easily conclude that the value of b in the given equation is -8.
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4 years ago
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A random sample of 16 values is drawn from a mound-shaped and symmetric distribution. The sample mean is 11 and the sample stand
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Answer:

We conclude that the population mean is different from 10.5.

Step-by-step explanation:

We are given that a random sample of 16 values is drawn from a mound-shaped and symmetric distribution. The sample mean is 11 and the sample standard deviation is 2.

<em>We have to test the claim that the population mean is 10.5.</em>

Let, NULL HYPOTHESIS, H_0 : \mu = 10.5  {means that the population mean is 10.5}

ALTERNATE HYPOTHESIS, H_a : \mu \neq 10.5  {means that the population mean is different from 10.5}

The test statistics that will be used here is One-sample t-test;

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where, \bar X = sample mean = 11

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            \mu = population mean

            n = sample of values = 16

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Therefore, we conclude that the population mean is different from 10.5.

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Answer:

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Step-by-step explanation:

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