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महाराष्ट्र राज्य शिक्षण मंडळएचएससी विज्ञान (सामान्य) इयत्ता १२ वी

Define the half-life of a first-order reaction. - Chemistry

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प्रश्न

Define the half-life of a first-order reaction.

व्याख्या
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उत्तर

The time in which concentration of reactant becomes half of its initial concentration is called half Life. It is denoted by `t_(1/2)`.

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2021-2022 (March) Set 1

संबंधित प्रश्‍न

Answer the following in one or two sentences.

How do the half-lives of the first order and zero-order reactions change with the initial concentration of reactants?


Answer the following in brief.

Obtain the relationship between the rate constant and half-life of a first-order reaction.


Answer the following in brief.

What are the units of the rate constant?


Time required for 100% completion of a zero order reaction is _______.


Give one example of a pseudo first-order reaction.


What is half life of first order reaction if time required to decrease concentration of reactants from 0.8 M to 0.2 M is 12 hours?


Explain pseudo first order reaction with a suitable example.


Explain with the help of a potential energy diagram that the catalyst increases the rate of the reaction.


Derive an expression for the relation between half-life and rate constant for first-order reaction.


For a first-order reaction \[\ce{A -> B}\] the rate constant is x min−1. If the initial concentration of A is 0.01 M, the concentration of A after one hour is given by the expression.


A zero-order reaction \[\ce{X -> Product}\], with an initial concentration 0.02 M has a half-life of 10 min. if one starts with concentration 0.04 M, then the half-life is


Assertion: rate of reaction doubles when the concentration of the reactant is doubles if it is a first-order reaction.

Reason: rate constant also doubles.


The rate constant of a reaction is 5.8 × 10−2 s−1. The order of the reaction is ____________.


Describe the graphical representation of first order reaction.


The time for half change in a first order decomposition of a substance A is 60 seconds. Calculate the rate constant. How much of A will be left after 180 seconds?


A first order reaction is 40% complete in 50 minutes. Calculate the value of the rate constant. In what time will the reaction be 80% complete?


The time of completion of 90% of a first order reaction is approximately ____________.


Which among the following reaction is an example of a zero order reaction?


In a first order reaction, the concentration of the reactant, decreases from 0.8 mol dm−3 to 0.4 mol dm−3 in 15 minutes. The time taken for the concentration to change from 0.1 mol dm−3 to 0.025 mol dm−3 is ____________.


The integrated rate equation for first-order reaction, A → product, is ______.


If time required to decrease concentration of reactant from 0.8 M to 0.2 M is 12 hours, the half life of this first order reaction is ____________.


In the reaction \[\ce{2SO2 + O2 -> 2SO3}\] the rate of appearance of SO3 is 4 × 10−4 M/s, the rate of disappearance of O2 is ____________.


The slope of a graph, log [A]t versus 't' for a first order reaction is −2.5 × 10−3 s−1. The rate constant for the reaction is ____________.


0.0210 M solution of N2O5 is allowed to decompose at 43°C. How long will it take to reduce to 0.0150 M?
(Given k = 6.0 × 10−4 sec−1)


The expression to calculate time required for completion of zero order reaction is ______.


If the rate constant for a first-order reaction is k, the time (t) required for the completion of 99% of the reaction is given by:


Which among the following reactions is an example of pseudo first order reaction?


Which is the relation between half life and rate constant for a zero order?


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