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The mass of 5.90 mol c8h18 is 528.02 grams. This can be determined by using the molar mass of the compound, which is 114.23 g/mol. To find the mass of 5.90 mol c8h18, all one need do is multiply 5.90 mol by 114.23 g/mol, which yields the answer of 528.02 grams.
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What is the molar mass of c8h18?
The molar mass of c8h18 is 114.23 g/mol. This is based on the molecular formula of c8h18, which is the sum of the atomic weights of each element in the molecule. Carbon has an atomic weight of 12.0107 u, while hydrogen has an atomic weight of 1.00794 u. Therefore, the molar mass of c8h18 is 12.0107 + (8 x 1.00794) = 114.23 g/mol.
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What is the mass of 5.90 mol c8h18 in grams?
The 5.90 mol c8h18 in grams has a mass of 99.8 grams. This is because one mole of carbon-12 atoms has a mass of 12 grams. Similarly, one mole of hydrogen atoms has a mass of 1 gram. Therefore, 5.90 moles of carbon atoms would have a mass of 5.90 x 12 = 70.8 grams. 5.90 moles of hydrogen atoms would have a mass of 5.90 x 1 = 5.9 grams. Adding these two values together gives the total mass of 5.90 mol c8h18 in grams as 70.8 + 5.9 = 99.8 grams.
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What is the formula mass of c8h18?
The sum of the atomic weights of all atoms in a molecule is the formula weight or molecular weight. The weights are atomic weights, not mass weights. C8H18 has a molecular weight of 114.231 Da. This is calculated by adding up the atomic weights of each atom in the molecule: 8 (atoms) x 12.0107 Da + 18 (atoms) x 1.00794 Da = 114.231 Da.
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What is the atomic mass of c8h18?
The atomic mass of carbon (C) is 12.0107 u, and the atomic mass of hydrogen (H) is 1.00794 u.
The molar mass of C8H18 is therefore 12.0107 + 8(1.00794) = 88.1154 u.
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What is the weight of c8h18?
C8H18, also known as octane, is a hydrocarbon molecule composed of eight carbon atoms and eighteen hydrogen atoms. It has a molecular weight of 114.23 g/mol.
Octane is a key component of gasoline and is responsible for its characteristic smell. It is also used as a solvent and in the production of plastics and rubber.
Octane is a colorless, odorless, flammable gas at room temperature and pressure. It has a boiling point of 125.6 degrees Fahrenheit and a melting point of - 114.4 degrees Fahrenheit.
The weight of C8H18 can be determined by its molecular weight, which is the sum of the weights of all of the atoms that make up the molecule. In the case of C8H18, the weight of the carbon atoms is 12.0107 grams per mole, while the weight of the hydrogen atoms is 1.00794 grams per mole. This means that the weight of C8H18 is 114.23 grams per mole, or about 0.2 pounds.
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What is the mass of one mole of c8h18?
When we think about the molar mass of a molecule, we are really thinking about the mass of
6.022 x 10^23
That is, we are thinking about the number of atoms that are in one mole of that substance. So, for example, the molar mass of carbon is 12.01 g/mol, which means that one mole of carbon weighs 12.01 grams.
We can calculate the molar mass of a molecule by adding up the masses of the atoms that make up the molecule. In the case of c8h18, we have 8 carbon atoms and 18 hydrogen atoms. The mass of one carbon atom is 12.01 amu, and the mass of one hydrogen atom is 1.01 amu. So, the molar mass of c8h18 is:
8(12.01) + 18(1.01) = 103.98
Which means that one mole of c8h18 weighs 103.98 grams.
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What is Avogadro's number?
In chemistry and physics, Avogadro's number (symbol: N) is the number of constituent particles, usually atoms or molecules, in one mole of a substance. It has the value 6.022140857×1023 mol−1, which means that there are just over six sextillion particles in one mole (24 is Avogadro's number, equal to 1023). This number is also known as L (Avogadro's constant), and has units of reciprocals of mole, i.e. 1/mol, or mole−1.
The mole is the SI unit of amount of substance. One mole of a substance contains an Avogadro's number of particles of that substance. The particle may be an atom, a molecule, an ion, an electron, or any other kind of particle.
The number is named after the Italian scientist Amedeo Avogadro (1776–1856), who, in 1898, first proposed that the value of N was equal to the number of atoms in 12 grams of the isotope carbon-12.
The value of Avogadro's number is a derived quantity, and its SI unit is the reciprocal mole. The number can also be expressed as Avogadro's constant.
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What is the molar mass of carbon?
The molar mass of carbon is 12.0 grams/mol. This means that one mole of carbon has a mass of 12.0 grams. The molar mass is important in chemistry because it is used to calculate the amount of substance that is present in a sample. For example, if you have 1.0 gram of carbon, you know that there are 0.0833 moles of carbon present.
The molar mass of an element is determined by the number of atoms present in one mole of the element. Carbon has an atomic number of 6, which means that there are 6 carbon atoms in one mole of carbon. Therefore, the molar mass of carbon is 6 x 12.0 grams/mol, or 72.0 grams/mol.
One of the uses of the molar mass is to determine the conversion factor between the mass of a substance and the number of moles of that substance. For example, if you have 12.0 grams of carbon, you know that this is equal to 1 mole of carbon. Therefore, the conversion factor between grams and moles for carbon is 1:12.0.
Another use for the molar mass is to calculate the density of a substance. The density of a substance is equal to the mass of the substance divided by the volume of the substance. The molar mass can be used to calculate the mass of a substance if the volume is known. For example, if you have 1 liter of carbon, you know that the mass of the carbon is equal to the molar mass of carbon, or 12.0 grams.
The molar mass is also used to calculate the amount of a substance that is needed to react with another substance. For example, if you want to react 1.0 mol of sodium hydroxide with 1.0 mol of carbon, you know that you will need 6.0 moles of sodium hydroxide because the molar mass of carbon is 12.0 grams/mol.
The molar mass of carbon is an important value in chemistry and has many uses.
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What is the molar mass of hydrogen?
The molar mass of hydrogen is 1.008 g/mol. This value is derived from the atomic weight of hydrogen, which is 1.0079 on the periodic table. The molar mass is the mass of a given substance divided by the amount of that substance in moles. In this case, the molar mass of hydrogen is equal to the atomic weight of hydrogen divided by the amount of hydrogen atoms in one mole, which is 6.02 x 10^23. This value can be rounded to 1.008 g/mol to make it more manageable.
The molar mass of a substance is important because it is used to calculate the amount of that substance in a given sample. For example, if you have a sample of hydrogen gas that is 2.016 grams, you can use the molar mass of hydrogen to calculate the amount of moles in that sample. This is done by dividing the mass of the sample by the molar mass of the substance. In this case, you would get 2.016 / 1.008 = 2 moles of hydrogen. This is a useful way to measure the amount of a substance when the actual number of molecules is too small to be counted.
The molar mass of hydrogen is also important in chemical reactions. In order to calculate the amount of a substance that is needed in a chemical reaction, the molar mass must be known. For example, in the reaction of hydrogen and oxygen to form water, two moles of hydrogen are needed for every one mole of oxygen. This can be calculated by looking at the molar ratios of the reactants and products. In this reaction, the molar ratio of hydrogen to oxygen is 2:1. This means that for every two moles of hydrogen, one mole of oxygen is needed.
The molar mass of hydrogen is also used in stoichiometry, which is the study of the amounts of reactants and products in a chemical reaction. In order to calculate the amount of a product that will be formed in a reaction, the molar ratios of the reactants and products must be known. For example, in the reaction of hydrogen and oxygen to form water, two moles of hydrogen are needed for every one mole of oxygen. This means that the molar ratio of hydrogen to oxygen is 2:1. Therefore, if you start with two moles of hydrogen and one mole of oxygen, you will end up with two m
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Frequently Asked Questions
How do you find the molar mass of a compound?
To find the molar mass of a compound, we use the atomic weight and the periodic table of elements. We add up the Atomic weights and then convert to grams per mole.
What is 1g C8H18 in moles?
1 grams C8H18 is equal to 0.0087543811300365 mole.
What is the molar mass of 673 grams of C8H18?
673 grams of C8H18 is equivalent to 5.90 moles of C8H18. The molar mass of C8H18 is 8 ⋅ 12 + 18⋅ 1 = 114g mol−1, so the mass of 673 grams of C8H18 will be: 673g C8H18 × 114g C8H18 1 mol C8H18 = 673 g C8H18 rounded to three significant figures.
How to convert moles to grams?
To convert moles to grams, divide the number of moles by the molar mass.
How many molecules are in one mole of a compound?
There are molecules in one mole of a compound.
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