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The reactant A reacts according to second order kinetics 95% conversion of A is achieved in a single flow reactor. We buy a second reactor identical to the first. For the same 95% conversion, by how much he capacity is increased if we operate these two reactors in series. Do it for both mixed and plug flow reactors in series


At 650°C phosphene vapor decomposes as follows:


APH3 → P4 + 6H₂ -rph (10h-¹)Cph,What size of plug flow reactor operating at 650°C and 11.4atm.is needed for conversion of 10 mole/hr of phosphine in a feed of 75% is phosphane and rest is inert


One liter per minute of liquid containing A and B (CAo=0.10 mole/liter, CBo= 0.01mole/liter) flow into a mixed flow reactor of volume V-1 liter. The materials react in a complex manner for which the stoichiometry is unknown. The outlet stream from the reactor contains A, B and C (CA 0.02 mole liter, Cu 0.03 mole liter, Cer=0.04 mole/liter). Find the rate of reaction of A, B and C (ie, rA,rB,rC and to) for the conditions within the reactor


Discuss best arrangement of a set of ideal reactors (small mixed flow reactor, large mixed flow reactor and plug flow reactor) connected in series for any nth order reaction,n>0.


"An infinite equal size mixed flow reactors connected in series will give same performance as a single plug flow reactor" Justify.


Write difference between mixed and plug flow reactors.


a) An aqueous reactant stream (4mol/liter) passes through a mixed flow reactor followed by a plug flow reactor. Find the concentration at the exit of the plug flow reactor if in the mixed flow reactor CA-Imol/liter. The reaction is second onder with respect to A: the volume of the plug flow reactor is three times that of the mixed flow reactor. What is the effect on the exit concentration when the reactor combination is neversed for the same feed rate and by how much?


At 500K, the rate of a bimolecular reaction is ten times the rate at 400K Find the activation energy for this reaction from Arhenius theory and collision state theory. Calculate percentage differences of rates from both the reactions.


a) A gas A, decomposes ineversibly to form a gas. C, as per the reactionA→2C. The decomposition of A is a first order reaction and is carried out in an isothermal constant pressure and volume batch reactors separately. Derive the expression for the pressure and volume (both separately) of the system as a function of time, assuming gas behave ideally.


A ball is projected at such an angle that the horizontal range is three times

the maximum height. What is the angle of projection?


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