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What is the overall voltage for a redox reaction with the half-reactions Mg(s) Mg2 2e- and Cu2 2e- Cu(s)?

0.34-(-2.37)


What is the overall redox reaction of cr2o7 plus br?

The overall redox reaction of Cr2O7 + Br is not a balanced equation. To balance the equation, the half-reactions for the oxidation and reduction of each element need to be determined and balanced first.


Are single displacement and double displacement reactions always redox reactions?

No, single displacement and double displacement reactions are not always redox reactions. Redox reactions involve electron transfer between reactants, while single displacement and double displacement reactions do not always involve the transfer of electrons.


A single-displacement reaction and a double-displacement reaction are always redox reactions.?

Single displacement reaction and a double displacement reaction are redox reactions. apex- false


What A redox reaction is always a single-displacement reaction but a single-displace reaction isn't always a redox reaction?

A redox reaction involves the transfer of electrons between species, leading to changes in oxidation states. While a single-displacement reaction involves one element being replaced by another in a compound, it may not always involve electron transfer. For example, if the displacement does not result in a change in oxidation states, the reaction would not be classified as a redox reaction. Therefore, while all redox reactions can be single-displacement reactions, not all single-displacement reactions qualify as redox reactions.

Related Questions

What is the overall voltage for a redox reaction with the half-reactions Mgs Mg2 2e- and Cu2 2e- Cus?

0.34-(-2.37)


What is the overall voltage for a redox reaction with the half-reactions Mg-> Mg+2 +2e- and Cu2+ +2e- -> Cu?

0.34-(-2.37)


What is the overall voltage for a redox reaction with the half-reactions Mg(s) Mg2 2e- and Cu2 2e- Cu(s)?

0.34-(-2.37)


What is the overall voltage for a redox reaction with the half-reactions Mg s Mg2 2e- and Cu2 2e- Cu s?

0.34 - (-2.37) you're welcome.


What is the overall voltage for a redox reaction with the half reactions Ag e Ag and Cu2 2e?

0.80-0.34


What is the overall voltage for the non spontaneous redox reaction involving Mg and Cu and their irons?

The overall voltage for the non-spontaneous redox reaction between Mg and Cu can be calculated by finding the difference in standard reduction potentials between the two half-reactions. The standard reduction potentials for Mg and Cu are -2.37 V and 0.34 V, respectively. Therefore, the overall voltage would be (-2.37 V) - (0.34 V) = -2.71 V.


What is the overall voltage for the nonspontaneous redox reaction involving mg and cu and their ions?

-2.37 - 0.34


What is the overall redox reaction of cr2o7 plus br?

The overall redox reaction of Cr2O7 + Br is not a balanced equation. To balance the equation, the half-reactions for the oxidation and reduction of each element need to be determined and balanced first.


Are single displacement and double displacement reactions always redox reactions?

No, single displacement and double displacement reactions are not always redox reactions. Redox reactions involve electron transfer between reactants, while single displacement and double displacement reactions do not always involve the transfer of electrons.


A single-displacement reaction and a double-displacement reaction are always redox reactions.?

Single displacement reaction and a double displacement reaction are redox reactions. apex- false


What is the overall voltage for a redox reaction with the half-reaction Mg s Mg2 2e- and Cu2 2e- Cu s?

0.34 - (-2.37) you're welcome.


What are redox half reactions?

Redox half reactions are representations of the transfer of electrons between reactants in a redox reaction. They show the species that gains electrons (reduction) and the species that loses electrons (oxidation) as separate chemical equations. Each half reaction highlights the electron loss or gain and allows us to balance the overall redox reaction.