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Chemistry II Gabe Ellis Ian Collins Emilee Letarte Jami Uptmor Ashley Marshall.

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Presentation on theme: "Chemistry II Gabe Ellis Ian Collins Emilee Letarte Jami Uptmor Ashley Marshall."— Presentation transcript:

1 Chemistry II Gabe Ellis Ian Collins Emilee Letarte Jami Uptmor Ashley Marshall

2 Acid/base equation

3 Molecular equation HBr (aq) + KOH (aq)  H 2 O (l) + KBr (aq)

4 Acid/base equation Molecular equation HBr (aq) + KOH (aq)  H 2 O (l) + KBr (aq) Net ionic equation Molecular equation H+ + OH-  H 2 O

5 Combustion Equation

6 Molecular Equation 2C 4 H 10(aq) + 130 2(g)  8CO 2(g) + 10 H 2 O (l)

7 Combustion Equation Molecular Equation 2C 4 H 10(aq) + 130 2(g)  8CO 2(g) + 10 H 2 O (l) Net Ionic Same

8 Alkali Metal And Water Molecular Equation 2K (s) + 2H 2 O (l)  2KOH (s) + H 2(g)

9 Alkali Metal And Water Molecular Equation 2K (s) + 2H 2 O (l)  2KOH (s) + H 2(g) Net Ionic 2K (s) + 2H 2 O (l)  2Na (s) + 2OH (aq) + H 2(g)

10 Single Displacement with Metal and Acid

11 Molecular Equation 6HBr (aq) + 2Al (s)  2AlBr 3(aq) + +3H 2(g)

12 Single Displacement with Metal and Acid Molecular Equation 6HBr (aq) + 2Al (s)  2AlBr 3(aq) + +3H 2(g) Net ionic Equation 6H + (aq) + 2 Al (s)  2Al + (aq) + 3H 2(g)

13 No Reaction with Metal and Acid

14 HBr (aq) + Au (s)  No reaction

15 No Reaction with Metal and Acid Molecular Equation HBr (aq) + Au (s)  No reaction Net Ionic HBr (aq) + Au (s)  No reaction

16 Decomposition of a carbonate

17 Molecular equation H 2 CO 3  CO 2(g) + H 2 O (l)

18 Decomposition of a carbonate Molecular equation H 2 CO 3  CO 2(g) + H 2 O (l) Net Ionic Euquation H 2 CO 3  CO 2(g) + H 2 O (l)

19 Synthesis of a Metal and Nonmetal

20 Molecular Equation Ni (s) + Cl  Ni Cl 2(aq)

21 Synthesis of a Metal and Nonmetal Molecular Equation Ni (s) + Cl  Ni Cl 2(aq) Net Ionic Ni (s) + Cl 2+  Ni 2+ (aq) + Cl 2 + (aq)

22 Acid/Carbonate

23 Molecular Equation 2HCl (aq) + MgCO 3(aq)  MgCl 2(aq) + Co 2(g) + H 2 O (l)

24 Acid/Carbonate Molecular Equation 2HCl (aq) + MgCO 3(aq)  MgCl 2(aq) + Co 2(g) + H 2 O (l) Net Ionic 2H (aq) + + CO 3(aq) 2-  CO 2(g) + H 2 O (l)

25 Double Displacement to Produce a Precipitate

26 Molecular Equation Pb(No 3 ) 2(aq) + 2KI (aq)  PbI (s) + 2KNO 3(aq)

27 Double Displacement to Produce a Precipitate Molecular Equation Pb(No 3 ) 2(aq) + 2KI (aq)  PbI (s) + 2KNO 3(aq) Net Ionic Equation 2Pb 2+ (aq) + 2I - (aq)  PbI 2(s)

28 No Reaction Double Displacement

29 Molecular Equation CaF 2 + Pb(NO 3 ) 2  No reaction

30 No Reaction Double Displacement Molecular Equation CaF 2 + Pb(NO 3 ) 2  No reaction Net Ionic Equation CaF 2 + Pb(NO 3 ) 2  No reaction

31 Acid/Sulfide

32 Molecular Equation 2HBr (aq) + K 2 S (aq)  H 2 S (g) + 2KBr (aq)

33 Acid/Sulfide Molecular Equation 2HBr (aq) + K 2 S (aq)  H 2 S (g) + 2KBr (aq) Net Ionic Equation 2H + (aq) + S 2+ (aq)  H 2 S (g)


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