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erastovalidia [21]
3 years ago
12

Divide and then check using multiplication 291÷30 with remainder​

Mathematics
2 answers:
Greeley [361]3 years ago
6 0

Answer:

9 R21

Step-by-step explanation:

Makovka662 [10]3 years ago
4 0
It’s 9 R21 ur welcome
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Which of these expressions represent the sum of 3 and n?
Dmitrij [34]
Don't really need to post the options to know what the expression(s) should look like. 

"Sum of" tells you its addition and because it's addition the order of the two terms (the 3 and the N) don't matter. 

Your correct expressions are:

3 + n
or 
n + 3
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3 years ago
800+800+800+1,000+2,000+200 =
salantis [7]

Answer:

5600

Step-by-step explanation:

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4 years ago
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Andru [333]

Answer: the answer is 36

Step-by-step explanation: You add all the sides together

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3 years ago
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If a circle has a diameter of 10cm and circumference of 31.4 cm,how would you write a ratio to determine the value of pi
Kitty [74]

Answer:

3.14

Step-by-step explanation:

Circumference of a circle is given by

C=\pi d and making \pi the subject then

\pi=\frac {C}{d}

Here d is the diameter and C is the circumference.

Given that d=10cm and C=31.4 then

\pi=\frac {31.4}{10}=3.14

5 0
3 years ago
A pharmacist receives a special request from an ophthalmologist to prepare a fortified tobramycin ophthalmic solution.
Harrizon [31]

Answer:

2/7 ml

Step-by-step explanation:

When we have a solution expressed in Q mg/ml, the concentration is (Q/10)%.

For example, a solution of 3 mg/ml is a 3/10=0.3% concentration solution, a solution of 40 mg/ml is a 40/10=4% concentration solution.

<em>Why? </em>

Q mg/ml means that 1 ml of solution has Q mg of the drug or active component. So, 100 ml have 100*Q mg.

But 100*Q mg = Q/10 grams.

If a solution has Q/10 grams in 100 ml, then it is a (Q/10)% concentration.

Now, we have 5 ml of a solution that contains tobramycin, 3 mg/ml (each ml has 3 mg of tobramycin).

This means that the 5 ml contain 15 mg of  tobramycin.

On the other hand, we have another solution S containing 40 mg/ml of tobramycin. This means that each ml of S contains 40 mg of tobramycin.

Let x be the amount of ml of S we have to add to our first 5 ml.

If 1 ml of S contains 40 mg of  tobramycin, x ml contain 40*x mg.

If we add this x ml to our first 5 ml, we have 5+x ml containing 15+40*x mg of  tobramycin.  

Now, cross-multiply to get how much tobramycin contains 1 ml of this new solution.

5+x ml ____contain____15+40*x mg of  tobramycin

   1 ml ____contains____? mg

And we have

\large \frac{5+x}{1}=\frac{15+40x}{?}\Rightarrow ?=\frac{15+40x}{5+x}

as a result, we have a solution of  

\large \frac{15+40x}{5+x}\;mg/ml

We want to prepare a solution 0.5% in concentration.

Using what we state at the beginning, we need to find a value x such that

\large \frac{(15+40x)/(5+x)}{10}=0.5

solving for x

\large \frac{(15+40x)/(5+x)}{10}=0.5\Rightarrow \frac{15+40x}{5+x}=5\Rightarrow 15+40x=25+5x\Rightarrow\\\\\Rightarrow 40x-5x=25-15\Rightarrow 35x=10\Rightarrow x=10/35=2/7 \;ml

So, we have to add just 2/7 ml of the stronger solution.

6 0
4 years ago
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