152
1
Beryllium has 4 electrons.
CBr4 , this is the correct formula for carbon-tetra-bromide
The molecular mass of CBr4 is 12.0 + 4(79.9) = 331.6Amount of CBr4 = mass of substance / molecular mass = 393/331.6 = 1.19mol This means that a 393g pure sample contains 1.19 moles of tetrabromomethane. The Avogadro's number is 6.02 x 10^23 So, number of molecules of CBr4 = 1.19 x 6.02 x 10^23 = 7.13 x 10^23
CBr4
5
1
Beryllium has 4 electrons.
It has 16 Good Luck!
CBr4 , this is the correct formula for carbon-tetra-bromide
To find the number of molecules in 325g of CBr4, first calculate the number of moles using the molar mass of CBr4 (331.63 g/mol). Then, use Avogadro's number (6.022 x 10^23 molecules/mol) to convert moles to molecules. So, 325g of CBr4 is equal to about 0.981 moles, which is approximately 5.91 x 10^23 molecules.
The molecular mass of CBr4 is 12.0 + 4(79.9) = 331.6Amount of CBr4 = mass of substance / molecular mass = 393/331.6 = 1.19mol This means that a 393g pure sample contains 1.19 moles of tetrabromomethane. The Avogadro's number is 6.02 x 10^23 So, number of molecules of CBr4 = 1.19 x 6.02 x 10^23 = 7.13 x 10^23
There are four covalent bonds present in CBr4. Each carbon atom forms a single covalent bond with each of the four bromine atoms.
No, CBr4 and H2O will not form a homogeneous solution. CBr4 is a nonpolar compound, while H2O is polar. Due to the significant difference in polarity, they will not mix evenly to form a homogeneous solution.
The intermolecular forces in carbon tetrabromide (CBr4) are primarily London dispersion forces. These are weak forces resulting from temporary fluctuations in electron distribution that induce dipoles in adjacent molecules. There are no hydrogen bonding or dipole-dipole interactions in CBr4 due to its symmetrical tetrahedral structure.
Yes
CBr4