1 carbon and 4 chlorine
To calculate the number of moles of carbon atoms in dichlorobenzene, we need to determine the molar mass of C6H4Cl2. The molar mass is 147.009 g/mol. Using the given mass of 3.982 g, we can calculate the number of moles using the formula moles = mass/molar mass. So, moles of C6H4Cl2 = 3.982 g / 147.009 g/mol = 0.0271 moles of C6H4Cl2. Since there are 6 carbon atoms in each molecule of C6H4Cl2, the number of moles of carbon atoms would be 6 times the moles of the compound, which is 0.0271 moles x 6 = 0.1626 moles of carbon atoms.
There are 20 atoms and there are 6 Carbon atoms, 8 Hydrogen atoms, 6 Oxygen atoms.
Fumarate has four carbon atoms.
Br2 consists of two atoms of bromine.
There are a total of 9 atoms in CCl2F2: 1 carbon atom, 2 chlorine atoms, and 2 fluorine atoms.
To calculate the number of moles of carbon atoms in dichlorobenzene, we need to determine the molar mass of C6H4Cl2. The molar mass is 147.009 g/mol. Using the given mass of 3.982 g, we can calculate the number of moles using the formula moles = mass/molar mass. So, moles of C6H4Cl2 = 3.982 g / 147.009 g/mol = 0.0271 moles of C6H4Cl2. Since there are 6 carbon atoms in each molecule of C6H4Cl2, the number of moles of carbon atoms would be 6 times the moles of the compound, which is 0.0271 moles x 6 = 0.1626 moles of carbon atoms.
One molecule of paradichlorobenzene (C6H4Cl2) contains 12 atoms: 6 carbon atoms, 4 hydrogen atoms, and 2 chlorine atoms.
There are three isomers for C6H4Cl2: 1,2-dichlorobenzene, 1,3-dichlorobenzene, and 1,4-dichlorobenzene. These isomers have different arrangements of the chlorine atoms on the benzene ring.
Dichlorobenzene
C6H4Cl2
10
There are 20 atoms and there are 6 Carbon atoms, 8 Hydrogen atoms, 6 Oxygen atoms.
C8H16O8 has a total of 24 atoms (8 carbon atoms, 16 hydrogen atoms, and 8 oxygen atoms).
45 atoms
402 atoms
Five atoms
9 atoms