In a laboratory batch setup, reaction of P over a catalyst was studied at various temperatures

In a laboratory batch setup, reaction of P over a catalyst was studied at various temperatures

Q. In a laboratory batch setup, reaction of P over a catalyst was studied at various temperatures. The reactions occurring are P —> 2Q   ;    P —-> R At the end of one hour of operation, the batch contains xP, xQ and xR mole fractions of P, Q and R components, respectively. The mole fractions […]

In a laboratory batch setup, reaction of P over a catalyst was studied at various temperatures Read More »

Match the items in Column A with the items in Column B

Match the items in Column A with the items in Column B

Q. Match the items in Column A with the items in Column B Here, f denotes the phase shift, K1 and K2 the process gains, t the time constant, and AR the amplitude ratio. (A) P-II, Q-III, R-IV, S-I                              (B) P-III, Q-II, R-IV, S-I (C) P-I, Q-IV, R-II, S-III                              (D) P-IV, Q-I, R-II, S-III Ans: P-IV, Q-I,

Match the items in Column A with the items in Column B Read More »

A furnace installed at a cost of Rs. 24 Lakh is expected to serve its useful life of 5 years. Salvage value of the furnace is Rs. 8 Lakh

A furnace installed at a cost of Rs. 24 Lakh is expected to serve its useful life of 5 years. Salvage value of the furnace is Rs. 8 Lakh

Q. A furnace installed at a cost of Rs. 24 Lakh is expected to serve its useful life of 5 years. Salvage value of the furnace is Rs. 8 Lakh. The interest rate compounded annually is 8%. The estimated capitalized cost (in Lakhs of rupees) is (A) 30                         (B) 34.09                    (C) 34.9                     (D) 58.09 Ans:

A furnace installed at a cost of Rs. 24 Lakh is expected to serve its useful life of 5 years. Salvage value of the furnace is Rs. 8 Lakh Read More »

In the year 2005, the cost of a shell and tube heat exchanger with 68 m2 heat transfer area was Rs. 12.6 Lakh

In the year 2005, the cost of a shell and tube heat exchanger with 68 m2 heat transfer area was Rs. 12.6 Lakh

Q. In the year 2005, the cost of a shell and tube heat exchanger with 68 m2 heat transfer area was Rs. 12.6 Lakh. Chemical Engineering Index for cost in 2005 was 509.4 and now the index is 575.4. Based on index of 0.6 for capacity scaling, the present cost (in Lakhs of rupees) of

In the year 2005, the cost of a shell and tube heat exchanger with 68 m2 heat transfer area was Rs. 12.6 Lakh Read More »

Match the equipment in Column A with the corresponding process in Column B

Match the equipment in Column A with the corresponding process in Column B

Q. Match the equipment in Column A with the corresponding process in Column B Column A Column B (P) Centrifugal sifter (I) Mixing (Q) Bowl mill (II) Sedimentation (R) Gravity thickener (III) Screening (S) Two-arm kneader (IV) Grinding (A) P-I, Q-IV, R-II, S-III                              (B) P-III, Q-IV, R-II, S-I (C) P-IV, Q-I, R-II, S-III                               (D) P-IV,

Match the equipment in Column A with the corresponding process in Column B Read More »

A venturi meter is installed to measure the flow rate of water in a 178 mm diameter (ID) pipe The throat diameter is 102 mm

A venturi meter is installed to measure the flow rate of water in a 178 mm diameter (ID) pipe The throat diameter is 102 mm

Q. A venturi meter is installed to measure the flow rate of water in a 178 mm diameter (ID) pipe. The throat diameter is 102 mm. The differential pressure measured using a manometer is 154.3 kN/m2. The data given are: discharge coefficient = 0.98; water density = 1000 kg/m3. The volumetric flow rate of water

A venturi meter is installed to measure the flow rate of water in a 178 mm diameter (ID) pipe The throat diameter is 102 mm Read More »

For a chemical reaction, the ratio of rate constant at 500 K to that at 400 K is 2.5. Given R = 8.314 J

For a chemical reaction, the ratio of rate constant at 500 K to that at 400 K is 2.5. Given R = 8.314 J

Q. For a chemical reaction, the ratio of rate constant at 500 K to that at 400 K is 2.5. Given R = 8.314 J mol-1 K-1, the value of activation energy (in kJ/mol) is (A) 10.5                      (B) 12.0                      (C) 15.2                     (D) 18.4 Ans: 15.2

For a chemical reaction, the ratio of rate constant at 500 K to that at 400 K is 2.5. Given R = 8.314 J Read More »

Scroll to Top