1. Observations of metal and solution combinations Copper 0.1 M Zn(NO3)2 0.1 M Cu(NO3)2 0.1 M Pb(NO3)2 0.1 M Mg(NO3)2 1

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1. Observations of metal and solution combinations Copper 0.1 M Zn(NO3)2 0.1 M Cu(NO3)2 0.1 M Pb(NO3)2 0.1 M Mg(NO3)2 1

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1 Observations Of Metal And Solution Combinations Copper 0 1 M Zn No3 2 0 1 M Cu No3 2 0 1 M Pb No3 2 0 1 M Mg No3 2 1 1
1 Observations Of Metal And Solution Combinations Copper 0 1 M Zn No3 2 0 1 M Cu No3 2 0 1 M Pb No3 2 0 1 M Mg No3 2 1 1 (57.87 KiB) Viewed 48 times
1 Observations Of Metal And Solution Combinations Copper 0 1 M Zn No3 2 0 1 M Cu No3 2 0 1 M Pb No3 2 0 1 M Mg No3 2 1 2
1 Observations Of Metal And Solution Combinations Copper 0 1 M Zn No3 2 0 1 M Cu No3 2 0 1 M Pb No3 2 0 1 M Mg No3 2 1 2 (51.2 KiB) Viewed 48 times
1. Observations of metal and solution combinations Copper 0.1 M Zn(NO3)2 0.1 M Cu(NO3)2 0.1 M Pb(NO3)2 0.1 M Mg(NO3)2 1 M HCI Hot Water Zinc Lead Magnesium
2. Activity series: expected and observed List both the expected activity series from your textbook or other reference and the observed activity series based on your experimental data. Remember to arrange the series with the most active metal (the strongest reducing agent) at the top. Be sure to include the reference (H₂) 2H() +2 e) in the expected series. For both the expected and observed activity series use the oxidation half reaction in your rankings. 1 Expected Activity Series Observed Activity Series
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