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Net Ionic Equations Shelby Reimer Lindsay Grainger Melanie Stegemiller Lindsay Roberts.

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Presentation on theme: "Net Ionic Equations Shelby Reimer Lindsay Grainger Melanie Stegemiller Lindsay Roberts."— Presentation transcript:

1 Net Ionic Equations Shelby Reimer Lindsay Grainger Melanie Stegemiller Lindsay Roberts

2 Acid/Base Hydrochloric acid + Sodium hydroxide

3 Acid/Base Molecular: HCl (aq) + NaOH (aq)  H 2 O (l) + NaCl (aq)

4 Acid/Base Hydrochloric acid + Sodium hydroxide Molecular: HCl (aq) + NaOH (aq)  H 2 O (l) + NaCl (aq) Net Ionic: H +(aq) + OH - (aq)  H 2 O (l)

5 Combustion Propane + Oxygen

6 Combustion Molecular: C 3 H 8(g) + 5O 2(g)  3CO 2(g) + 4H 2 O (l)

7 Combustion Propane + Oxygen Molecular: C 3 H 8(g) + 5O 2(g)  3CO 2(g) + 4H 2 O (l) Net Ionic: No net ionic equation

8 Alkali Metal and Water Lithium + Water

9 Alkali Metal and Water Lithium + Water Molecular: 2Li (s) + 2H 2 O (l)  2LiOH (aq) + H 2(g)

10 Alkali Metal and Water Lithium + Water Molecular: 2Li (s) + 2H 2 O (l)  2LiOH (aq) + H 2(g) Net Ionic: 2Li (s) + 2H 2 O (l)  2Li + (aq) + 2OH - (aq) + H 2(g)

11 Single Displacement with Metal and Acid Lithium + Hydrobromic acid

12 Single Displacement with Metal and Acid Lithium + Hydrobromic acid Molecular: 2Li(s) + 2HBr(aq)  2LiBr(aq) + H 2 (g)

13 Single Displacement with Metal and Acid Lithium + Hydrobromic acid Molecular: 2Li(s) + 2HBr(aq)  2LiBr(aq) + H 2 (g) Net Ionic: 2Li(s) + 2H + (aq)  2Li + (aq) + H 2 (g)

14 Reaction Or No Reaction? Metal and An Acid Nitric Acid + Copper

15 Reaction Or No Reaction? Metal and An Acid Nitric Acid + Copper Molecular: HNO 3 (aq) + Cu(s)  Cu(NO 3 ) 2 (aq) + H 2 (g)

16 Reaction Or No Reaction? Metal and An Acid Nitric Acid + Copper Molecular: HNO 3 (aq) + Cu(s)  Cu(NO 3 ) 2 (aq) + H 2 (g) Net Ionic: no reaction = no net ionic equation

17 Decomposition of a Carbonate Potassium Carbonate decomposes Potassium Carbonate decomposes

18 Decomposition of a Carbonate Potassium Carbonate decomposes Molecular: K 2 CO 3 (aq)  K 2 O(aq) + CO 2 (g)

19 Decomposition of a Carbonate Potassium Carbonate decomposes Molecular: K 2 CO 3 (aq)  K 2 O(aq) + CO 2 (g) Net Ionic: CO 3 2- (aq)  O 2- (aq) + CO 2 (g)

20 Synthesis of a Metal and Nonmetal Sodium + Chlorine

21 Synthesis of a Metal and Nonmetal Sodium + Chlorine Sodium + ChlorineMolecular: 2Na(s) + Cl 2 (g)  2NaCl(s)

22 Synthesis of a Metal and Nonmetal Sodium + Chlorine Sodium + ChlorineMolecular: 2Na(s) + Cl 2 (g)  2NaCl(s) Net Ionic: 2Na(s) + Cl 2 (g)  2NaCl(s)

23 Acid/Carbonate Lithium Carbonate + Hypochlorous Acid

24 Acid/Carbonate Molecular: Li 2 CO 3 (aq) + 2HClO(aq)  H 2 0(l) + CO 2 (g) + 2LiClO(aq)

25 Acid/Carbonate Lithium Carbonate + Hypochlorous Acid Molecular: Li 2 CO 3 (aq) + 2HClO(aq)  H 2 O(l) + CO 2 (g) + 2LiClO(aq) Net Ionic: CO 3 2- (aq) + 2H + (aq)  H 2 O(l) + CO 2 (g)

26 Double Displacement To Produce A Precipitate Sodium Phosphate + Magnesium Sulfate

27 Double Displacement To Produce A Precipitate Sodium Phosphate + Magnesium Sulfate Molecular: Na 3 PO 4 (aq) + MgSO 4 (aq)  Na 2 SO 4 (aq) + Mg 3 (PO 4 ) 2 (s)

28 Double Displacement to produce a precipitate Sodium Phosphate + Magnesium Sulfate Molecular: Na 3 PO 4 (aq) + MgSO 4 (aq)  Na 2 SO 4 (aq) + Mg 3 (PO 4 ) 2 (s) Net Ionic: PO 4 3- (aq) + Mg 2+ (aq)  Mg 3 (PO 4 ) 2 (s)

29 Reaction Or No Reaction? Double Displacement Potassium Chloride + Sodium Nitrate

30 Reaction Or No reaction? Double Displacement Potassium Chloride + Sodium Nitrate Potassium Chloride + Sodium Nitrate NO REACTION

31 Acid/Sulfide Hydrobromic acid + lithium sulfide Hydrobromic acid + lithium sulfide

32 Acid/Sulfide Molecular: HBr(aq) + Li 2 S(aq)  H 2 S(g) + 2LiBr(aq)

33 Acid/Sulfide Hydrobromic acid + lithium sulfide Molecular: HBr(aq) + Li 2 S(aq)  H 2 S(g) + 2LiBr(aq) Net Ionic: 2H + (aq) + S 2- (aq)  H 2 S(g)


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