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## How many moles of carbon atoms are there in 36.0 g of carbon?

Answer: Thus, **3 moles** of Carbon-12 will contain an equal number of Carbon atoms as 36 g of Carbon-12.

## What will be the number of particles in 36 g of carbon atoms?

The correct choice is **c.** **3 moles**.

## What is the mole formula?

Avogadro’s number is a very important relationship to remember: **1 mole = 6.022×1023 6.022 × 10 23 atoms**, molecules, protons, etc. To convert from moles to atoms, multiply the molar amount by Avogadro’s number. To convert from atoms to moles, divide the atom amount by Avogadro’s number (or multiply by its reciprocal).

## How many moles is 40 grams of carbon?

The answer is **12.0107**.

## How many atoms are in 4 moles of aluminum?

Therefore, **[2.41times 10{}**^text{2}] atoms/mol of Aluminum are present in $4$ mol of Aluminum.

## How many moles are in 8 grams of Naoh?

The answer is **39.99711**.

## What is the formula for moles to grams?

In order to convert the moles of a substance to grams, you will need to **multiply the mole value of the substance by its molar mass**.

## What is the largest number of molecules?

As we can see that, **water** has the highest value for the number of moles in respect to other compounds. So, the largest number of molecules are present in water.

## How many grams are there in 2 moles of carbon?

From the above concept of mole we tell that one mole of carbon contains [12g] of carbon, which is the molar mass of carbon. So the amount of carbon present in [2] moles of carbon =[2 times 12{text{ }}g = **24g]**.

## How many atoms are in 6 grams of carbon?

The molar mass of **12**C is 12.0⋅g⋅mol−1 . What does this mean? It means that NA (Avogadro’s number =6.022×1023) 12C atoms have a mass of 12.0⋅g . You have specified 6.0⋅g .

## What is Avogadro’s number and how many moles does this equal?

Avogadro’s number is defined as the number of elementary particles (molecules, atoms, compounds, etc.) per mole of a substance. It is equal to **6.022×10 ^{23} mol^{–}^{1}** and is expressed as the symbol N

_{A}.