Chemical Reaction Engineering MCQs for Biotech Engineering

Chemical Reaction Engineering MCQs for Biotech Engineering

Answer these Chemical Reaction Engineering for Biotech Engineering MCQs and assess your grip on the subject of Chemical Reaction Engineering.
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1: What is chemical reaction engineering?

A.   The study of chemical processes in living organisms

B.   The design and optimization of chemical reactors for industrial applications

C.   The analysis of biochemical reactions in cells

D.   The manipulation of genes for desired traits

2: What is a chemical reactor?

A.   A device used to analyze the composition of chemical substances

B.   A device used to measure reaction rates in a chemical system

C.   A device used to study the genetic material of organisms

D.   A device used to carry out chemical reactions on an industrial scale

3: Which of the following is NOT a major type of chemical reactor?

A.   Batch reactor

B.   Continuous stirred-tank reactor (CSTR)

C.   Plug flow reactor (PFR)

D.   Microarray reactor

4: What is the purpose of a catalyst in a chemical reaction?

A.   To increase the reaction rate

B.   To decrease the reaction rate

C.   To maintain the temperature of the reaction

D.   To analyze the composition of the reactants

5: Which factor does NOT affect the rate of a chemical reaction?

A.   Temperature

B.   Concentration of reactants

C.   Pressure

D.   Particle size of the reactants

6: Which of the following is an example of a heterogeneous reaction?

A.   Combustion of gasoline

B.   Acid-base neutralization reaction

C.   Polymerization of monomers

D.   Enzymatic reaction in cells

7: What is the purpose of a reaction rate equation in chemical reaction engineering?

A.   To determine the stoichiometry of a chemical reaction

B.   To predict the products of a chemical reaction

C.   To calculate the equilibrium constant of a chemical reaction

D.   To describe the rate of reaction as a function of reactant concentrations

8: What is the concept of residence time in chemical reaction engineering?

A.   The time required for a chemical reaction to reach equilibrium

B.   The time required for a reactant to pass through a reactor

C.   The time required for a catalyst to degrade in a reactor

D.   The time required for a reaction to complete

9: What is the purpose of reactor design in chemical reaction engineering?

A.   To select the appropriate catalyst for a reaction

B.   To optimize reaction conditions for maximum product yield

C.   To determine the rate constant of a chemical reaction

D.   To analyze the composition of the reactants and products

10: Which of the following is an example of a biotechnological application of chemical reaction engineering?

A.   Production of biofuels from renewable resources

B.   Analysis of DNA sequences in cells

C.   Extraction of proteins from plant cells

D.   Study of gene expression patterns