Explore topic-wise MCQs in Chemical Engineering.

This section includes 1443 Mcqs, each offering curated multiple-choice questions to sharpen your Chemical Engineering knowledge and support exam preparation. Choose a topic below to get started.

801.

A chemical reaction is of zero order, when the reaction rate is (where, CA = concentration of reactant)

A. ‚àù CA.
B. ‚àù 1/CA.
C. independent of temperature.
D. none of these.
Answer» E.
802.

For a gaseous phase reaction, rate of reaction is equal to K. CA . CB. If the volume of the reactor is suddenly reduced to l/4th of its initial volume, then the rate of reaction compared to the original rate will be __________ times.

A. 8
B. 16
C. 43678
D. 42370
Answer» C. 43678
803.

In a/an __________ reactor, there is exchange of heat with the surroundings with sizeable temperature variation.

A. adiabatic
B. isothermal
C. non-adiabatic
D. none of these.
Answer» D. none of these.
804.

For an isothermal second order aqueous phase reaction, A B, the ratio of the time required for 90% conversion to the time required for 45% conversion is

A. 2
B. 4
C. 11
D. 22
Answer» D. 22
805.

The conversion XA and residence time data are collected for zero order liquid phase reaction in a stirred tank reactor. Which of the following will be a straight line ?

A. XA Vs . τ
B. XA Vs ln τ
C. XA/(1 - XA)Vs τ
D. XA(1 - XA)Vs τ
Answer» B. XA Vs ln œÑ
806.

Rate determining step in a reaction consisting of a number of steps in series is the __________ step.

A. fastest
B. slowest
C. intermediate
D. data insufficient; can't be predicted
Answer» C. intermediate
807.

For identical flow rate, feed composition and for elementary first order reactions, 'N' equal sized mixed reactors in series with a total volume 'V' gives the same conversion as a single plug flow reactor of volume 'V' for constant density systems. This is true, when the value of 'N' is

A. 1
B. >1
C. ‚àû
D. ≥1
Answer» D. ‚â•1
808.

In a reversible chemical reaction having two reactants in equilibrium, if the concentration of the reactants are doubled, then the equilibrium constant will

A. remain the same
B. be halved
C. also be. doubled
D. become one fourth
Answer» B. be halved
809.

There is no correspondence between stoichiometry and the rate equation in case of a/an __________ reaction.

A. elementary
B. multiple
C. autocatalytic
D. non-elementary
Answer» E.
810.

Find a mechanism that is consistent with the rate equation and reaction given below:2A + B A2B, ( - rA) = k.CA.CB

A. A + B AB ; AB + A A2B
B. A + B AB;AB + A A2B
C. A + A AA;AA + B A2B
D. A + A AA;AA + B A2B
Answer» E.
811.

Transition state theory relates the above quantities as

A. k ‚àù e-E/RT
B. k ‚àù T.eE/RT
C. k ‚àù T
D. k ‚àù T1.5
Answer» C. k ‚àù T
812.

The rate of an autocatalytic reaction, , is given by -rA = k . CA . CB. In this case, the

A. plot of - rA Vs CA is a straight line with slope k.
B. plot of - rA Vs CA is a hyperbola.
C. rate of disappearance of reactant A is maximum, where CA = CB
D. both 'b' & 'c'
Answer» E.
813.

Half life period of decomposition of a liquid 'A' by irreversible first order reaction is 12 minutes. The time required for 75% conversion of 'A' is __________ minutes.

A. 18
B. 24
C. 6
D. 12
Answer» C. 6
814.

Enzymes (a protein) are catalysts found in organisms. Its efficiency of catalysing a reaction is due to its capacity to lower the activation energy of the reaction. The enzyme ptyalin used for food digestion is present in

A. blood
B. saliva
C. intestine
D. gland
Answer» C. intestine
815.

An irreversible first order reaction is being carried out in a CSTR and PFR of same volume. The liquid flow rates are same. The relative conversion will

A. be more in CSTR than in PFR.
B. be more in PFR than in CSTR.
C. be same in both cases.
D. depend on the temperature.
Answer» C. be same in both cases.
816.

If in the gaseous phase reaction, N2O4 2NO2, x is the part of N2O4 which dissociates, then the number of molecules at equilibrium will be

A. (1 + x)
B. (1 - x)
C. (1 + x)2
D. (1 - x)2
Answer» B. (1 - x)
817.

The vessel dispersion number (D/μL) for plug flow is$

A. 0
B. 500
C. 750
D. ‚àû
Answer» B. 500
818.

Following isothermal kinetic data are obtained in a basket type of mixed flow reactor for a porous catalyst. Determine the role of pore diffusion and external mass transfer processes.

A. Strong pore diffusion control and mass transfer not controlling.
B. Both pore diffusion and mass transfer not controlling.
C. Both pore diffusion and mass transfer controlling.
D. Mass transfer controlling.
Answer» B. Both pore diffusion and mass transfer not controlling.
819.

For a __________ order chemical reaction, , the half life period is independent of the initial concentration of the reactant A.

A. zero
B. first
C. second
D. third
Answer» C. second
820.

The rate of the reaction, X Y, quadruples when the concentration of 'X' is doubled. The rate expression for the reaction is, r = K Cxn, the value of 'n' in this case will be

A. 0
B. 1
C. 2
D. 3
Answer» D. 3
821.

For the liquid phase zero order irreversible reaction A B, the conversion of A in a CSTR is found to be 0.3 at a space velocity of 0.1min-1 . What will be the conversion for a PFR with a space velocity of 0.2 min-1? Assume that all the other operating conditions are the same for CSTR and PFR.

A. 0.15
B. 0.3
C. 0.6
D. 0.9
Answer» D. 0.9
822.

Molecularity of an elementary reaction, P + Q R + S is

A. 1
B. 2
C. 3
D. 4
Answer» E.
823.

The knowledge of initial concentration and rate constant is necessary to determine the half life time of a reaction of __________ order.

A. zero
B. first
C. second
D. none of these
Answer» D. none of these
824.

A first order reaction A B occurs in an isothermal porous catalyst pellet of spherical shape. If the concentration of A at the centre of the pellet is much less than at the external surface, the process is limited by

A. diffusion within the pellet.
B. reaction.
C. external mass transfer.
D. none of the above.
Answer» B. reaction.
825.

Which of the following is not a chemical step in a fluid solid catalytic reaction ?

A. Surface chemical reaction
B. Adsorption
C. Desorption
D. None of these
Answer» E.
826.

Calcination reaction of limestone (CaCO3 CaO + CO2) goes to completion in the rotary kiln, because

A. CaO is not dissociated.
B. CO2 escapes continuously.
C. of high calcination temperature.
D. CaO is more stable than CaCO3.
Answer» C. of high calcination temperature.
827.

A gaseous reactant is introduced in a mixed reactor of 3 litres volume at the rate of 1 litre/second. The space time is __________ seconds.

A. 1
B. 3
C. 43525
D. 32
Answer» C. 43525
828.

A chemical reaction occurs, when the energy of the reacting molecules is __________ the activation energy of reaction.

A. less than
B. equal to
C. more than
D. equal to or more than
Answer» E.
829.

For a first order isothermal chemical reaction in a porous catalyst, the effectiveness factor is 0.3. The effectiveness factor will increase if the

A. catalyst size is reduced or the catalyst diffusivity is reduced.
B. catalyst size is reduced or the catalyst diffusivity is increased.
C. catalyst size is increased or the catalyst diffusivity is reduced.
D. catalyst size is increased or the catalyst diffusivity is increased.
Answer» C. catalyst size is increased or the catalyst diffusivity is reduced.
830.

For nearly isothermal operation involving large reaction time in a liquid-phase reaction, the most suitable reactor is a __________ reactor.

A. stirred tank
B. tubular flow
C. batch
D. fixed bed
Answer» B. tubular flow
831.

In the converter of the contact process for the manufacture of H2SO4 the equilibrium conversion of SO2 __________ (A) __________ with increase in temperature and __________ (B) __________ with increase in the mole ratio of SO2 to air.

A. (A) increases (B) decreases
B. (A) decreases (B) increases
C. (A) increases (B) increases
D. (A) decreases (B) decreases
Answer» C. (A) increases (B) increases
832.

Helium-mercury method can be used to determine the __________ of the catalyst particle.

A. pore volume
B. solid density
C. porosity
D. all (a), (b), & (c).
Answer» E.
833.

Which of the following is not a dimension-less group used in catalysis ? (where, D = dispersion co-efficient, cm2 /sec.D1 = diffusion co-efficient; cm2/sec L = length of the reactor, cm t = time, sec, v = volumetric flow rate, cm3/sec . V = volume, cm3.)

A. Reactor dispersion number (D/vL)
B. Reduced time
C. Thiele modulus
D. None of these
Answer» E.
834.

A chemical reaction, A 3B, is conducted in a constant pressure vessel. Starting with pure A, the volume of the reaction mixture increases 3 times in 6 minutes. The fractional conversion is

A. 0.33
B. 0.5
C. 1
D. data insufficient, can't be predicted
Answer» D. data insufficient, can't be predicted
835.

What is the dispersion number for a plug flow reactor ?

A. 0
B. ‚àû
C. 1
D. -1
Answer» B. ‚àû
836.

For a tubular reactor with space time 'τ' and residence time 'θ', the following statement holds good.$

A. τ and θ are always equal.
B. τ = θ , when the fluid density changes in the reactor.
C. τ = θ , for an isothermic tubular reactor in which the density of the process fluid is constant.
D. τ = θ , for a non-isothermal reactor.
Answer» D. œÑ = Œ∏ , for a non-isothermal reactor.
837.

A chemical reaction occurs when the energy of the reacting molecules is __________ the activation energy of the reaction.

A. less than
B. equal to
C. more than
D. equal to or more than
Answer» E.
838.

When a high liquid hold up is required in a reactor for gas liquid reaction, use __________ coloumn.

A. packed
B. spray
C. tray
D. bubble
Answer» E.
839.

Which of the following holds good for an elementary reaction, ?

A. The rate of disappearance of 'Y' is equal to the rate of appearance of 'Z'.
B. The rate of disappearance of 'Y' is equal to the rate of disappearance of 'X'.
C. Three times the rate of disappearance of 'X' is equal to the rate of appearance of 'Z'.
D. The rate of disappearance of 'X' is equal to the rate of appearance of 'Z'.
Answer» D. The rate of disappearance of 'X' is equal to the rate of appearance of 'Z'.
840.

B.E.T. method can be used to determine the __________ of a porous catalyst.

A. solid density
B. pore volume
C. surface area
D. all (a), (b) and (c)
Answer» D. all (a), (b) and (c)
841.

A second order reaction of the form A + B C is called a pseudo-first order reaction, when

A. CA0 = CB0
B. CA0 > CB0
C. CB0 > CA0
D. CB0 ‚â• CB0
Answer» E.
842.

A typical example of an exothermic reversible reaction conducted at high pressure in industry is

A. dehydration of ethanol.
B. methanol synthesis.
C. reformation of methane.
D. polymerisation of ethylene.
Answer» B. methanol synthesis.
843.

To maximise the formation of R in the simultaneous reactionA + B R , rR = 2CA0.5.CB2 A + B S , rS = 1.5 CA . CBWe should have

A. low CA, low CB
B. low CA, high CB
C. high CA, low CB
D. high CA, high CB
Answer» C. high CA, low CB
844.

The equilibrium constant for the reversible reaction, , is affected by the

A. temperature of the system.
B. presence or absence of inerts.
C. pressure of the system.
D. kinetics of the reaction.
Answer» D. kinetics of the reaction.
845.

Which of the following is not endothermic in nature ?

A. Combustion of sulphur.
B. Gasification of carbon.
C. Thermal cracking of fuel oil.
D. Steam reforming of naphtha.
Answer» B. Gasification of carbon.
846.

An elementary liquid phase decomposition reaction is to be carried out in a CSTR. The design equation is

A. kτ = XA/(1 - XA)
B. kτ = XA(1 + XA)/(1 + XA)
C. kτ = XA/(1 - XA)2
Answer» B. kœÑ = XA(1 + XA)/(1 + XA)
847.

Recycling back of outlet stream to the reactor from an ideal CSTR carrying out a first order liquid phase reaction will result in __________ in conversion.

A. decrease
B. increase
C. no change
D. either (a) or (b), depends on the type of reaction
Answer» D. either (a) or (b), depends on the type of reaction
848.

Rate constant 'k' and absolute temperature 'T' are related by collision theory (for bimolecular) as

A. k ‚àù T1.5
B. k ‚àù exp(-E/RT)
C. k ‚àù T
D. k ‚àù T
Answer» D. k ‚àù T
849.

The exit age distribution of a fluid leaving a vessel (denoted by E) is used to study the extent of non-ideal flow in the vessel. The value of is

A. 0
B. 1
C. ‚àû
D. 2π
Answer» C. ‚àû
850.

In a chemical reaction, repesented by, , it is observed that the(i) rate of reaction increases by a factor of 4 on doubling the concentration of the reactant. (ii) rate of reaction increases by a factor of 9 on trebling the concentration of the reactant. Then the rate of the reaction is proportional to(where, CA = contentration of the reactant)

A. CA
B. CA2
C. CA3
D. CA4
Answer» C. CA3