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[" 20.What is the potential of an electr...

[" 20.What is the potential of an electrode which "],[" originally contained "0.1MNO_(3)^(-)" and "0.4M],[H^(+)" and which has been treated by "80%" of the "],[" cadmium necessary to reduce all the "NO_(3)^(-)" to "],[NO(g)" at "1bar" ? "],[" Given : "NO_(3)^(-)+4H^(+)+3e^(-)rarr NO+2H_(2)O],[E^(0)=0.96V;log2=0.3],[" (A) "0.84V(B)1.08V(C)1.23V(D)1.36V]

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What is the potential of an electrode which originally contained 0.1 M NO_(3)^(-) and 0.4 M H^(+) and which has been treated by 8% of the cadmium necessary to reduce all the NO_(3)^(-) to NO(g) at 1 bar ? Given : NO_(3)^(-)+4H^(+)+3e^(-)rarr NO+2H_(2)O , E^(@)=0.96 , log 2 = 0.3

What is the potential of an electrode which originally contained 0.1 MNO_(3)^(-) and 0.4MH^(+) and which has been treated by 60% of the cadmium necessary to reduce all the NO_(3)^(-) to NO(g) at 1 atm. Given, NO_(3)^(-) +4H^(+)+3e^(-)rarr NO+2H_(2)O, E^(@)=0.95V and log2=0.3010

What is the potential of an electrode which originally contained 0.1 MNO_3^-) and 0.4MH^+ and which has been treated by 80% of the cadmium necessary to reduce all the NO_3^- to NO(g) at 1 bar? Give: NO_3^(-)+4H^++3e^-)to NO+2H_2O, E^(@)=0.96V, log2=0.3

What is the potential of an electrode which originally contained 0.1 MNO_3^-) and 0.4MH^+ and which has been treated by 8% of the cadmium necessary to reduce all the NO_3^- to NO(g) at 1 bar? Give: NO_3^(-)+4H^++3e^-)to NO+2H_2O, E^(@)=0.96V, log2=0.3

Calculate the potential of an indicator electrode versus the standard hydrogen electrode, which originally contained 0.1M MnO_(4)^(-) and 0.8M H^(+) and which was treated with Fe^(2+) necessary to reduce 90% of the MnO_(4) to Mn^(2+) MnO_(4)^(-) +8H^(+) +5e rarr Mn^(2+) +H_(2)O, E^(@) = 1.51V

Calculate the potential of an indicator electrode versus the standard hydrogen electrode, which originally contained 0.1M MnO_(4)^(-) and 0.8M H^(+) and which was treated with Fe^(2+) necessary to reduce 90% of the MnO_(4) to Mn^(2+) MnO_(4)^(-) +8H^(+) +5e rarr Mn^(2+) +H_(2)O, E^(@) = 1.51V

Calculate the potential of an indicator electrode versus the standard hydrogen electrode, which originally contained 0.1M MnO_(4)^(-) and 0.8M H^(+) and which was treated with Fe^(2+) necessary to reduce 90% of the MnO_(4) to Mn^(2+) MnO_(4)^(-) +8H^(+) +5e rarr Mn^(2+) +H_(2)O, E^(@) = 1.51V

Calculate the potential of an indicator electrode versus the standard hydrogen electrode, which originally contained 0.1M MnO_(4)^(-) and 0.8M H^(+) and which was treated with Fe^(2+) necessary to reduce 90% of the MnO_(4) to Mn^(2+) MnO_(4)^(-) +8H^(+) +5e rarr Mn^(2+) +H_(2)O, E^(@) = 1.51V