Which identifies an oxidation reduction reaction
Oxidation-Reduction Reactions
Identifies oxidation and reduction reaction in both cells with reasons (either transfer of electrons or change in oxidation number) identification with either electron transfer or ON. number of electrons or ∆ON. linked to either species or atom in species
[DOC File]chemistry - Pace University
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split the reaction into an oxidation half-reaction and a reduction half-reaction. eliminate "spectator" ions (ion that doesn't contain atom that changes oxidation number—often cation) balance each half reaction. balance atoms except O and H. balance O, by adding H2O. balance H, by adding H+. balance charge, by adding e-
[DOC File]Temecula Valley Unified School District
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2Ca ---> 2Ca2+ + 4e- (oxidation reaction) O2 + 4e- ---> 2O2- (reduction reaction) In the example above, we are able to break a reaction into two parts, oxidation and reduction. here, Ca acts as a reducing agent because it donates electrons to O and causes the O to be reduced. The O2 acts as an oxidizing agent since it accepts electrons from the ...
[DOCX File]PRACTICE TEST 2– Redox AS913913, 3 credits
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An oxidation-reduction reaction involves the transfer of one or more electrons from one atom to another. The substance that loses electrons is being oxidized; the substance gaining electrons is reduced. All reduction reactions must occur with a corresponding oxidation (i.e. the electrons must come from somewhere).
[DOCX File]Quia
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Identifies and balances oxidation and reduction reactions. Uses reduction potentials to determine whether a redox reaction will occur spontaneously. Explains the operating principles of electrochemical cells and the process of electroplating metals.
[DOC File]AP Chemistry
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It is an oxidation-reduction reaction, and the oxidation number of Cl changes from +4 to +2. It is not an oxidation-reduction reaction because none of the oxidation numbers change. C. 6 H 5 COOH(aq) + NaOH (aq) →C. 6 H 5 COONa (aq) + H. 2 O (l) Which of the following identifies a conjugate acid-base pair in the reaction represented above?
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