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Yes, all carbon atoms have the same atomic number, and that is 6.
Tetroses have four carbon atoms, pentoses have five carbon atoms, and hexoses have six carbon atoms. You can identify them based on the number of carbon atoms in their molecular structure.
Polyethylene gets harder as the number of carbon atoms increases.
No, a mole of carbon atoms has the same number of atoms as a mole of helium atoms (Avogadro's number, which is about 6.022 x 10^23 atoms). The difference lies in their atomic masses, as carbon atoms are heavier than helium atoms.
The number of carbon atoms in a compound depends on the molecular formula of the compound. To calculate the number of carbon atoms, you can look at the subscript of carbon in the molecular formula. For example, in glucose (C6H12O6), there are 6 carbon atoms.
A non cyclic alkane always has a number of hydrogen atoms equal to 2c + 2, where c is the number of carbon atoms. Therefore, hexadecane, an alkane with 16 carbon atoms, will have 34 hydrogen atoms.
To convert atoms to moles, you divide the number of atoms by Avogadro's number, which is 6.022 x 10^23 atoms/mol. So, 1.53 x 10^24 atoms of carbon divided by Avogadro's number is equal to 2.54 moles of carbon.
There are 6 carbon atoms in a molecule of glucose.
Yes, all carbon atoms have the same atomic number, and that is 6.
To convert 1.5 grams of carbon to the number of carbon atoms, you would need to use Avogadro's number, which is the number of atoms in one mole of a substance (6.022 x 10^23 atoms/mol), and the molar mass of carbon (12.01 g/mol). By dividing the given mass of carbon (1.5 g) by the molar mass of carbon, you can convert the grams to moles, and then use Avogadro's number to calculate the number of carbon atoms.
To determine the number of carbon atoms in the reactants, you need to specify which reactants you are referring to. The number of carbon atoms can vary depending on the chemical equation.
To calculate the number of carbon atoms in 2.50 grams of theobromine (C7H8N4O2), you first need to find the molar mass of theobromine. The molar mass of theobromine is 180.16 g/mol. From the molecular formula, there are 7 carbon atoms in one molecule of theobromine. Therefore, using the molar mass and the number of carbon atoms in the molecule, you can calculate the number of carbon atoms in 2.50 grams.
For a hydrocarbon with only carbon-carbon single bonds and n carbon atoms, the number of hydrogen atoms can be calculated using the formula 2n + 2. This is because each carbon atom forms 4 single bonds (including 3 with other carbons and 1 with hydrogen), and the total number of hydrogen atoms is equal to 2n + 2.
To find atoms in number of moles you multiply by avogadra's number (6.022x10^23) then multiply by the number of atoms, in this case it is one because carbon is a monotomic element. The answer is 9.03x10^23 atoms C
Tetroses have four carbon atoms, pentoses have five carbon atoms, and hexoses have six carbon atoms. You can identify them based on the number of carbon atoms in their molecular structure.
Yes: Alkenes follow the general formula: CnH2n (n being the number of carbon atoms in the chain), so in Alkenes, there will be twice as many H atoms than C atoms. Alkanes: CnH2n+2 Alkenes:CnH2n Alkynes:CnH2n-2
To calculate the number of carbon atoms in 2.6g of graphite, first calculate the number of moles of carbon using its molar mass (12.01 g/mol). Then, use Avogadro's number (6.022 x 10^23 atoms/mol) to determine the number of carbon atoms. This calculation will give you the number of carbon atoms in 2.6g of pure carbon as graphite.