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hammer [34]
4 years ago
11

Each polio vaccination consist of four doses, and each measles vaccination consist of two doses. Last year, Dr. Potter gave a to

tal of 60 vaccinations that consisted of a total 184 doses. How many polio vaccination and how many measles vaccinations did Dr. Potter give last year?
Mathematics
1 answer:
Mrac [35]4 years ago
6 0

To solve this equation we need to set up a system of equations because we need to find out the value of 2 variables given 2 equations

Equation 1: Polio vaccination has 4 doses, measles vaccination has 2 doses, and he gave out 184 doses total

Equation 2: He gave 2 types of vaccinations: polio and measles, and he gave a total of 60 vaccinations.

To convert the word form of these equations, we first have assign polio and measles a variable to make them easier to keep track of

Lets just say that the number of polio shots = x and number of measles shots = y

Equation 1: 4 doses of x added with 2 doses of y equaled 184 doses total

4x+2y = 184

Equation 2: x vaccines added with y vaccines equaled 60 total vaccines

x + y = 60

We know have our system of equations

Equation 1: 4x+2y = 184

Equation 2: x + y = 60

To solve a system of equations, we can either do elimination or substitution, depending on which is easier.

In this case, substitution is pretty easy because for equation 2 we just need to have only 1 variable on a side then we can substitute it into equation 1

Equation 2: x + y = 60

Lets subtract x from both sides of the equation to "move" the x to the other side

y = -x + 60

And using y in terms of x, we can plug it into equation 1

Equation 1: 4x+2y = 184

4x+2(-x + 60) = 184

Now distribute the 2 to (-x+60)

4x-2x+120 = 184

Simplify by combining like terms

2x+120 = 184

Subtract 120 from both sides of the equation so all variables are on one side and the constants on the other

2x = 64

Divide 2 from both sides of the equation to isolate x, when we want to find

x = 32

Now we know the number of polio vaccines he gave, plug this into an equation to find y- the number of measles vaccine

Equation 2: x + y = 60

32 + y = 60

Subtract 32 from both sides to isolate y

y = 28

We know now that x, the number of polio vaccinations = 32 and y, the number of measles vaccinations = 28

Dr. Potter gave 32 polio vaccinations and 28 measles vaccinations last year.

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<h3>What is the change in air pressure when the pure tone is produced?</h3>

This pressure is referred to as the atmospheric pressure, air pressure, or simply pressure. It is the force that is exerted on a surface by the air that is above it due to the gravitational pull that gravity has on the surface. A barometer is an instrument most often used to measure the pressure of the atmosphere. When the pressure in the atmosphere changes, a column of mercury contained inside a glass tube in a barometer will either rise or sink.

Generally, the equation for is pressure  mathematically given as

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Therefore

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p(1/2000) = 2*0

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In conclusion, the pressure

p(1/2000) =0 mP

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2 years ago
As the sample size becomes larger, the sampling distribution of the sample mean approaches a _____. a. binomial distribution b.
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Answer:

c. normal probability distribution

Step-by-step explanation:

Central Limit Theorem

The Central Limit Theorem establishes that, for a normally distributed random variable X, with mean \mu and standard deviation \sigma, the sampling distribution of the sample means with size n can be approximated to a normal distribution with mean \mu and standard deviation s = \frac{\sigma}{\sqrt{n}}.

For a skewed variable, the Central Limit Theorem can also be applied, as long as n is at least 30.

For a proportion p in a sample of size n, the sampling distribution of the sample proportion will be approximately normal with mean \mu = p and standard deviation s = \sqrt{\frac{p(1-p)}{n}}

In this question:

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Answer:

Solution

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Answer:

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Step-by-step explanation:

Take the number of envelopes and divide by the number of minutes

460 envelopes / 30 minutes

15.333333.... envelopes per minute

15 1/3 envelopes in 1 minutes

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3 years ago
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kherson [118]
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