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larisa [96]
3 years ago
6

Jen determined the masses of 7 rocks. She recorded he mass of 6f each rock on the line plot below. On the chart there is 1/4= 2

x's
2/4= 3x's
3/4 2'xs
1=0 x's
What is the total mass, in kilograms, of the 7 rocks?
Mathematics
2 answers:
Fiesta28 [93]3 years ago
5 0

Answer:

<em>The total mass of the 7 rocks is 3\frac{1}{2} kilograms.</em>

Step-by-step explanation:

Total mass of first 2 rocks =2(\frac{1}{4})= \frac{1}{2} kg

Total mass of next 3 rocks =3(\frac{2}{4})= \frac{6}{4}=\frac{3}{2}kg

Total mass of next 2 rocks =2(\frac{3}{4})=\frac{6}{4}=\frac{3}{2}kg

So, the total mass of all 7 rocks = \frac{1}{2}+\frac{3}{2}+\frac{3}{2}=\frac{1+3+3}{2}=\frac{7}{2}=3\frac{1}{2} kilograms.

qwelly [4]3 years ago
4 0
To find the total mass you will add the following masses together:

1/4 + 1/4 + 2/4 + 2/4 + 2/4 + 3/4 + 3/4

For every X you list the number that many times.

The sum is 14/4 or 3 2/4 or
3 1/2.

The answer is choice D.
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Average speed is ALWAYS calculated as total distance / total time 
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7 0
3 years ago
Each polio vaccination consist of four doses, and each measles vaccination consist of two doses. Last year, Dr. Potter gave a to
Mrac [35]

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.

6 0
4 years ago
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