The bonding between calcium oxide (CaO) and sulfur dioxide (SO2) would typically involve ionic bonding. Calcium oxide would donate electrons to sulfur dioxide, creating positively and negatively charged ions that are attracted to each other. This creates a strong electrostatic attraction between the two compounds.
The chemical equation for the reaction between calcium oxide (CaO) and sulfur dioxide (SO2) is: CaO + SO2 → CaSO3
To balance the chemical equation CaO + SO2 → CaSO3, you need to add a coefficient of 1 in front of CaO and SO2. This balances the equation by ensuring that the same number of each type of atom is present on both sides.
No, the equation is not balanced. The balanced equation is 2CaSO3 → CaO + SO2 + O2.
CaO exhibits ionic bonding. Calcium (Ca) is a metal element that loses electrons to form a cation, while oxygen (O) is a nonmetal element that gains electrons to form an anion. The resulting interaction between the oppositely charged ions leads to the formation of an ionic bond in CaO.
In CaO, there would be ionic bonding between the calcium cations (Ca^2+) and oxide anions (O^2-), resulting in strong electrostatic forces of attraction. This ionic bonding is a type of non-covalent interaction between the positively and negatively charged ions.
The chemical equation for the reaction between calcium oxide (CaO) and sulfur dioxide (SO2) is: CaO + SO2 → CaSO3
To balance the chemical equation CaO + SO2 → CaSO3, you need to add a coefficient of 1 in front of CaO and SO2. This balances the equation by ensuring that the same number of each type of atom is present on both sides.
No, the equation is not balanced. The balanced equation is 2CaSO3 → CaO + SO2 + O2.
i do not know
CaO exhibits ionic bonding. Calcium (Ca) is a metal element that loses electrons to form a cation, while oxygen (O) is a nonmetal element that gains electrons to form an anion. The resulting interaction between the oppositely charged ions leads to the formation of an ionic bond in CaO.
SO2 has polar covalent bonds due to differences in electronegativity between sulfur and oxygen atoms. Cl2, CaO, and N2 have nonpolar covalent bonds because the atoms have similar electronegativities.
In CaO, there would be ionic bonding between the calcium cations (Ca^2+) and oxide anions (O^2-), resulting in strong electrostatic forces of attraction. This ionic bonding is a type of non-covalent interaction between the positively and negatively charged ions.
MgO and CaO have higher boiling points compared to NaCl and HCl, and CO2 and SO2. This is because MgO and CaO are ionic compounds that have stronger electrostatic forces between ions, leading to higher boiling points. NaCl and HCl are also ionic compounds but have lower boiling points compared to MgO and CaO. CO2 and SO2 are molecular compounds with weaker intermolecular forces, resulting in lower boiling points compared to the ionic compounds.
This equation is 2 CaCO3 + 2 SO2 + O2 -> 2 CaSO4 + 2 CO2.
CaO because Ca is a metal and O is a gas and all the other possibillities are gasses combined and ionic has a metal and gas combination if you look at the periodic table of elements the right side is gases but they are determined by like a staircase and the rest are metals
When sulfur dioxide gas is passed over solid calcium oxide, a chemical reaction occurs to produce solid calcium sulfite. The reaction can be represented by the equation: SO2(g) + CaO(s) -> CaSO3(s). This reaction is used in industries to remove sulfur dioxide from gas emissions.
so2,co2