3
No, PCl3 does not exhibit ionic bonding. It forms covalent bonds because it is composed of nonmetals (phosphorus and chlorine) that share electron pairs to achieve stability. Ionic bonding involves the transfer of electrons between a metal and a nonmetal, resulting in charged ions.
To find the number of atoms in 0.0728 g of PCl3, you first convert the mass to moles using the molar mass of PCl3 (137.33 g/mol). Then, you use Avogadro's number (6.022 x 10^23) to convert moles to atoms. The number of atoms in 0.0728 g of PCl3 would be approximately 2.69 x 10^21 atoms.
PCl3 is the chemical formula for phosphorous trichloride.
PCL3 is a molecular compound with a trigonal pyramidal shape, while PCl5 is a molecular compound with a trigonal bipyramidal shape. PCl3 contains three chlorine atoms, while PCl5 contains five chlorine atoms. Additionally, PCl5 is more reactive than PCl3 due to its higher number of chlorine atoms.
The oxidation number of P in PCl3 is +3. This is because chlorine typically has an oxidation number of -1, and there are three chlorine atoms in PCl3, giving a total charge of -3. To balance this charge, the oxidation number of P must be +3.
There are three bonding groups found in PCl3, which consist of three P-Cl bonds.
No, PCl3 does not exhibit ionic bonding. It forms covalent bonds because it is composed of nonmetals (phosphorus and chlorine) that share electron pairs to achieve stability. Ionic bonding involves the transfer of electrons between a metal and a nonmetal, resulting in charged ions.
To find the number of moles of PCl3, you need to first calculate the number of moles of Cl atoms in 3.68 * 10^25 atoms. There are 3 Cl atoms in each molecule of PCl3, so you divide the number of Cl atoms by 3 to get the number of moles of PCl3.
The compound name for PCl3 is phosphorus trichloride.
To find the number of atoms in 0.0728 g of PCl3, you first convert the mass to moles using the molar mass of PCl3 (137.33 g/mol). Then, you use Avogadro's number (6.022 x 10^23) to convert moles to atoms. The number of atoms in 0.0728 g of PCl3 would be approximately 2.69 x 10^21 atoms.
One lone pair and three bonding chlorine pairs. General shape is tetrahedral and it's a trigonal pyramidal.
PCl3 is the chemical formula for phosphorous trichloride.
PCL3 is a molecular compound with a trigonal pyramidal shape, while PCl5 is a molecular compound with a trigonal bipyramidal shape. PCl3 contains three chlorine atoms, while PCl5 contains five chlorine atoms. Additionally, PCl5 is more reactive than PCl3 due to its higher number of chlorine atoms.
The products of the reaction of PCl3 with water are HCl and H3PO3 (phosphorous acid). The balanced chemical equation for the reaction is: PCl3 + 3H2O → 3HCl + H3PO3
The oxidation number of P in PCl3 is +3. This is because chlorine typically has an oxidation number of -1, and there are three chlorine atoms in PCl3, giving a total charge of -3. To balance this charge, the oxidation number of P must be +3.
PCl3 is a chemical compound. It is made of elements P and Cl.
The central atom in CH4 is carbon, which has four bonding groups. Each bonding group is a hydrogen atom bonded to the central carbon atom.