The spectator ions are NO3- in this reaction. They are present on both sides of the equation before and after the reaction takes place, so they do not participate in the reaction and can be considered spectators.
NO3-
Answer this question…Mg(s) + Zn(NO3)2(aq) Mg(NO3)2(aq) + Zn(s)
This is a basic stoichiometry question. Things you need to know:1 mol = 6.022 x 10^23 atoms/particles/molecules/ionsRatio of Mg in MgCl2 : 1mol Mg2+/1 mol MgCl2Always start with what you are given:3.00 mol MgCl2 X 1mol Mg2+/1 mol MgCl2 X 6.022 x 10^23 ions Mg2+/ 1mol Mg2+=1.8066 x 10^24 ions Mg2+
Mg2+ acts as a Lewis acid because it can accept a pair of electrons to form coordination complexes. In this capacity, Mg2+ does not donate electrons; rather, it accepts electron pairs from other molecules or ions.
Mg2+ ions do not act as either acids or bases. They are typically found in ionic compounds and do not donate or accept protons, which are characteristics of acids and bases, respectively.
No3- (^_-)
NO3-
The spectator ions in this reaction are Mg2+ and NO3- because they appear on both sides of the chemical equation and do not participate in the actual chemical reaction. They are simply there as part of the compounds but do not change during the reaction.
NO3-
Mg(NO3)2+ZN2+--->ZN2++2NO3-+Mg(s)
Mg(NO3)2+ZN2+--->ZN2++2NO3-+Mg(s)
Mg(NO3)2+ZN2+--->ZN2++2NO3-+Mg(s)
Answer this question…Mg(s) + Zn(NO3)2(aq) Mg(NO3)2(aq) + Zn(s)
A polyatomic ion can form an ionic bond with another ion, and an ionic bond is a type of chemical bond. Some examples: One mole of ammonium ions plus one mole of chloride ions produces one mole of ammonium chloride. NH4+ + Cl- ---> NH4Cl One mole of magnesium ions plus two moles of nitrate ions produces one mole of magnesium nitrate. Mg2+ + 2NO3- ---> Mg(NO3)2
This is a basic stoichiometry question. Things you need to know:1 mol = 6.022 x 10^23 atoms/particles/molecules/ionsRatio of Mg in MgCl2 : 1mol Mg2+/1 mol MgCl2Always start with what you are given:3.00 mol MgCl2 X 1mol Mg2+/1 mol MgCl2 X 6.022 x 10^23 ions Mg2+/ 1mol Mg2+=1.8066 x 10^24 ions Mg2+
Mg2+: [1s22s22p6]
When a Ca2+ ion and a Mg2+ ion are placed in a solution, they will separate due to their interactions with water molecules. The positively charged ions attract the negatively charged ends of water molecules, leading to the formation of hydrated ions that exist as individual entities in the solution. This separation allows each type of ion to interact independently with other substances in the solution.