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Examveda

If CA is the quantity of reactants initially present, the quantity left after 'n' half periods will be equal to

A. $${\left( {\frac{{{{\text{C}}_{\text{A}}}}}{2}} \right)^{\text{n}}}$$

B. $${\left( {\frac{1}{2}} \right)^{\text{n}}} \cdot {{\text{C}}_{\text{A}}}$$

C. $${\left( {\frac{{{{\text{C}}_{\text{A}}}}}{2}} \right)^{\frac{1}{{\text{n}}}}}$$

D. $${\left( {{{\text{C}}_{\text{A}}}} \right)^{\frac{1}{{2{\text{n}}}}}}$$

Answer: Option B


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Related Questions on Chemical Reaction Engineering

A first order gaseous phase reaction is catalysed by a non-porous solid. The kinetic rate constant and the external mass transfer co-efficients are k and $${{\text{k}}_{\text{g}}}$$ respectively. The effective rate constant (keff) is given by

A. $${{\text{k}}_{\text{e}}}{\text{ff}} = {\text{k}} + {{\text{k}}_{\text{g}}}$$

B. $${{\text{k}}_{\text{e}}}{\text{ff}} = \frac{{{\text{k}} + {{\text{k}}_{\text{g}}}}}{2}$$

C. $${{\text{k}}_{\text{e}}}{\text{ff}} = {\left( {{\text{k}}{{\text{k}}_{\text{g}}}} \right)^{\frac{1}{2}}}$$

D. $$\frac{1}{{{{\text{k}}_{\text{e}}}{\text{ff}}}} = \frac{1}{{\text{k}}} + \frac{1}{{{{\text{k}}_{\text{g}}}}}$$