The product is formed by the chemical reaction and is given by
.
Where is a constant.
(a)
\Rate of reaction at time is defined as
.
Consider .
Differentiate on each side with respect to .
.
Quotient rule of derivatives: .
(b )
\Prove that .
Consider the left hand part .
.
We have, .
Substitute in
.
Substitute in above expression.
,
If , then
.
Therefore, .
(c)
\Consider the product concentration .
As , then
.
\
.
As , then
.
(d)
\Consider rate of reaction .
As ,
Rate of reaction is zero as .
(e)
\As , that means reaction goes for a long time then concentration of the product tends to a certain point, which is initial value of reactants.
As , the rate of reaction tends to equilibrium , where no more reactions should occurs.
(a).
(b)
(c) .
(d) Rate of reaction is zero as .
(e)
\As , that means reaction goes for a long time then concentration of the product tends to a certain point, which is initial value of reactants.
As , the rate of reaction tends to equilibrium , where no more reactions should occurs.