When sodium reacts with molecular oxygen, O 2 , the product is sodium peroxide, Na 2 O2 , which contains the peroxide ion, O 2 2- . In this reaction, is O 2 oxidized or reduced?( Hint: Which reactant gains electrons, and which loses electrons?)
When sodium reacts with molecular oxygen, O 2 , the product is sodium peroxide, Na 2 O2 , which contains the peroxide ion, O 2 2- . In this reaction, is O 2 oxidized or reduced?( Hint: Which reactant gains electrons, and which loses electrons?)
When sodium reacts with molecular oxygen,
O
2
, the product is sodium peroxide,
Na
2
O2
, which contains the peroxide ion,
O
2
2-
. In this reaction, is
O
2
oxidized or reduced?(Hint: Which reactant gains electrons, and which loses electrons?)
Expert Solution & Answer
Interpretation Introduction
Interpretation:
Whether O2 is oxidized or reduced in the given reaction, is to be determined.
Concept Introduction:
Oxidation is termed as a chemical reaction during the course of which a number of electrons are lost.
Reduction is termed as a chemical reaction during the course of which a number of electrons are gained.
Answer to Problem 1PE
Solution:O2 is reduced.
Explanation of Solution
Sodium reacts with molecular oxygen (O2) and forms the product, sodium peroxide (Na2O2) which contains the peroxide ion (O22−).
The reaction of sodium is as follows:
2Na(s) + O2(g)→Na2O2(s)
Oxygen is reduced in this reaction because it experiences gain of electrons and Sodium is oxidized because it experiences loss of electrons.
Conclusion
In this reaction, O2 is reduced.
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Predict the product formed when the compound shown below undergoes a reaction with MCPBA in CH2Cl2. MCPBA is meta-chloroperoxybenzoic acid.
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Question 19 of 22
Polyethylene terephthalate (PET) is used in plastic water bottles. A water bottle has a
mass of 14.0 grams. Given a density of 1.38 g/cm³, what is the volume of the
plastic used to make the water bottle in cm³ ?
ADD FACTOR
ANSWER
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100
14.0
0.01
10.1
1000
0.099
1.38
0.001
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A doctor gives a patient 10 Ci of beta radiation. How many betaparticles would the patient receive in 1 minute? (1 Ci = 3.7 x 1010d/s)
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