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For a zero order reaction, the half-life depends on the initial concentration [C0] of the reactant as
  • a)
    [C0]
  • b)
    [C0]0
  • c)
    [C0]–1
  • d)
    [C0]1/2
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
For a zero order reaction, the half-life depends on the initial concen...
Explanation:

Zero order reactions are the reactions in which the rate of the reaction is independent of the concentration of the reactant. It means that the rate of the reaction is constant and does not change with the change in the concentration of the reactant.

The rate of the zero order reaction is expressed as:

Rate = k

where k is the rate constant.

Half-life of a reaction is the time required for the concentration of the reactant to reduce to half of its initial concentration.

For a zero order reaction, the half-life can be calculated as:

t1/2 = [C0]/2k

where [C0] is the initial concentration of the reactant.

From the above equation, we can see that the half-life of a zero order reaction depends on the initial concentration of the reactant. This is because the half-life is inversely proportional to the rate constant (k). As the rate constant is constant for a zero order reaction, the half-life is directly proportional to the initial concentration of the reactant.

Therefore, option A is the correct answer as the half-life of a zero order reaction depends on the initial concentration [C0] of the reactant.
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For a zero order reaction, the half-life depends on the initial concentration [C0] of the reactant asa)[C0]b)[C0]0c)[C0]1d)[C0]1/2Correct answer is option 'A'. Can you explain this answer?
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