Problem: Balance the following equations. Write each in both the molecular and net ionic form. Identify each reaction as an acid-base reaction, a precipitation reaction, an oxidation-reduction reaction, or as a combination of more than one of these types.1. ___Pb(NO3)2(aq) + ____ NaCl(aq) → _____PbCl2(s) +_____NaNO3(aq)a) Molecular Equation:b) Net Ionic Equation:c) Reaction Type:2. ___HNO3(aq) + _____Zn(OH)2(s) → ____Zn(NO3)2(aq) +____H2O(l)a) Molecular Equation:b) Net Ionic Equation:c) Reaction Type:

FREE Expert Solution

For Part 1:

1. ___Pb(NO3)2(aq) + ____ NaCl(aq) → _____PbCl2(s) + _____NaNO3(aq)

a) Molecular Equation:

Balance Cl:

 ___Pb(NO3)2(aq) + 2 NaCl(aq) → _____PbCl2(s) + _____NaNO3(aq)

Balance (NO3):

 ___Pb(NO3)2(aq) + 2 NaCl(aq) → _____PbCl2(s) + NaNO3(aq)

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Problem Details

Balance the following equations. Write each in both the molecular and net ionic form. Identify each reaction as an acid-base reaction, a precipitation reaction, an oxidation-reduction reaction, or as a combination of more than one of these types.

1. ___Pb(NO3)2(aq) + ____ NaCl(aq) → _____PbCl2(s) +_____NaNO3(aq)

a) Molecular Equation:

b) Net Ionic Equation:

c) Reaction Type:


2. ___HNO3(aq) + _____Zn(OH)2(s) → ____Zn(NO3)2(aq) +____H2O(l)

a) Molecular Equation:

b) Net Ionic Equation:

c) Reaction Type:

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Our tutors have indicated that to solve this problem you will need to apply the Complete Ionic Equations concept. You can view video lessons to learn Complete Ionic Equations. Or if you need more Complete Ionic Equations practice, you can also practice Complete Ionic Equations practice problems.