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This section includes 57 Mcqs, each offering curated multiple-choice questions to sharpen your Chemical Engineering knowledge and support exam preparation. Choose a topic below to get started.
1. |
Solution-1 containing 30% acetic acid and 20% nitrogen at the rate F combines with Solution-2 containing 20% acetic acid and 10% nitrogen at the rate D and Solution-3 containing 10% acetic acid and 30% nitrogen at the rate N the product formed contains 20% acetic acid at the rate P, what is the percentage of nitrogen in product? |
A. | 0.1 |
B. | 0.2 |
C. | 0.3 |
D. | Cannot be determined |
Answer» E. | |
2. |
CH4 at the rate 10 mole/min is reacted with O2 at the rate 10 mole/min, what is the rate of formation of CO2 in the product? |
A. | 5 mole/min |
B. | 10 mole/min |
C. | 20 mole/min |
D. | 40 mole/min |
Answer» B. 10 mole/min | |
3. |
An aqueous solution with sulfur 10 g/L at the rate is 100 L/min and an organic compound with no sulfur at the rate 50 L/min were put into an extraction machine and produced an aqueous solution with sulfur 1 g/L, what is the amount of sulfur in the organic compound after extraction? |
A. | 2 g/L |
B. | 5 g/L |
C. | 9 g/L |
D. | 15 g/L |
Answer» D. 15 g/L | |
4. |
CH4 at the rate 10 mole/min is reacted with O2 at the rate 30 mole/min, what is the rate of formation of CO2 in the product? |
A. | 5 mole/min |
B. | 10 mole/min |
C. | 20 mole/min |
D. | 40 mole/min |
Answer» C. 20 mole/min | |
5. |
Solution-1 containing 20% w1 and w2 at the rate 10 Kg/min combines with Solution-2 containing 10% w1, 20% w2 and w3 at the rate 20 Kg/min, the product formed contains and 10% w1, 30% w2 and 20% w3, what is the percentage of w2 in solution-1? |
A. | 0.05 |
B. | 0.1 |
C. | 0.25 |
D. | 0.5 |
Answer» E. | |
6. |
There were 10 moles of a substance present initially in a system, 5 moles were added to it and a reaction occurred so that its moles are reduced by 20%, what are the final moles of a substance in the system? |
A. | 10 |
B. | 12 |
C. | 15 |
D. | 18 |
Answer» C. 15 | |
7. |
In a random reaction 2 mole of CH4 and 1 mole of C2H4 are reacted, and 1 mole of C3H8 and 1 mole of CxHy are produced, what is x*y? |
A. | 2 |
B. | 4 |
C. | 8 |
D. | 12 |
Answer» C. 8 | |
8. |
10 moles of A were present in a system initially, and 10 moles of C are added to it, it follows the reaction 2A + C -> 5B, what is the number of moles of B produced? |
A. | 5 |
B. | 10 |
C. | 25 |
D. | 50 |
Answer» D. 50 | |
9. |
There were 15 moles of a substance present initially in a system, 25 moles were added to it and a reaction occurred so that its moles are reduced by 50%, what are the final moles of a substance in the system? |
A. | 10 |
B. | 15 |
C. | 20 |
D. | 40 |
Answer» D. 40 | |
10. |
400 g of CaSO4 is dissolved with 500 g of H2O, if 226 g of CaSO4.5H2O crystallizes out, then what is the percentage of CaSO4 in the remaining solution? |
A. | 0.3916 |
B. | 0.5154 |
C. | 0.6228 |
D. | 0.7567 |
Answer» B. 0.5154 | |
11. |
10 moles of O2 is added to 10 moles of H2, how many moles of H2O will it produce? |
A. | 5 |
B. | 10 |
C. | 15 |
D. | 20 |
Answer» C. 15 | |
12. |
A combustion reaction has reactants 1 mole of CxHy and 2 moles of O2 and products 1 mole of CO2 and 2 mole of H2O, what is x + y? |
A. | 1 |
B. | 3 |
C. | 4 |
D. | 5 |
Answer» E. | |
13. |
A reaction has reactants 2 moles of NaOH and 1 mole of H2SO4, and products Na2SO4 and H2O, what are the total moles of products? |
A. | 1 |
B. | 2 |
C. | 3 |
D. | 4 |
Answer» D. 4 | |
14. |
What is the accumulation in the system after 4 second if the out flow and in flow rates are 3 g/s and 8 g/s? |
A. | 12 g |
B. | 20 g |
C. | 32 g |
D. | 40 g |
Answer» C. 32 g | |
15. |
The flow in rate of A is 8 mole/s, it undergoes a reaction 3A -> B, what are the moles of B that comes out after 6 seconds? |
A. | 5 |
B. | 8 |
C. | 10 |
D. | 16 |
Answer» E. | |
16. |
The flow in rate of A is 5 mole/s, it undergoes a reaction A -> 2B, what are the moles of B that comes out after 5 seconds? |
A. | 5 |
B. | 10 |
C. | 25 |
D. | 50 |
Answer» E. | |
17. |
A reactor has two feed streams with the ratio of their rate as 1:9 and has O2 and O3 with the mass fraction of 0.6 and 0.4 in stream 1 and 0.2 and 0.8 in stream 2, what is the mass fraction of O2 in the product side? |
A. | 0.24 |
B. | 0.48 |
C. | 0.72 |
D. | 0.96 |
Answer» B. 0.48 | |
18. |
An unsteady state system, the flow in rate of A is 10 mole/s, what is the flow out rate of B if the accumulation was 10 mole in 2 seconds? |
A. | 5 mole/s |
B. | 10 mole/s |
C. | 15 mole/s |
D. | 20 mole/s |
Answer» B. 10 mole/s | |
19. |
A reactor has feed of two streams, stream 1 has CO2 and H2O with mass fraction of 0.4 and 0.6 and rate 10 kg/hr, and stream 2 has CO2 and H2O with mass fraction 0.1 and 0.9 and rate 40 Kg/hr, what the mass fraction of CO2 in the product stream? |
A. | 0.08 |
B. | 0.16 |
C. | 0.24 |
D. | 0.32 |
Answer» C. 0.24 | |
20. |
An unsteady state system, the flow in the rate of A is 12 mole/s, what is the flow out rate of B if the accumulation was 18 mole in 3 seconds? |
A. | 4 mole/s |
B. | 6 mole/s |
C. | 8 mole/s |
D. | 9 mole/s |
Answer» C. 8 mole/s | |
21. |
Feed of a reactor has 0.75 mass fraction of O2 and some SO2, if the product rate is 1000 Kg/hr then what is the rate of SO2 in the feed? |
A. | 100 Kg/hr |
B. | 250 Kg/hr |
C. | 750 Kg/hr |
D. | 1000 Kg/hr |
Answer» C. 750 Kg/hr | |
22. |
Feed of a reactor has 0.25 mass fraction of H2O and 0.75 mass fraction of CO2 with rate 4 g/hr, if the product rate is 20 g/hr what is the mass of CO2 in the product side? |
A. | 3 grams |
B. | 9 grams |
C. | 15 grams |
D. | 21 grams |
Answer» D. 21 grams | |
23. |
What amount of 57 octane should be mixed with 3 liters of 63 octane to obtain 4 liters of 59 octane? |
A. | 1 liter |
B. | 2 liters |
C. | 2.5 liters |
D. | 4.5 liters |
Answer» E. | |
24. |
The general material balance equation for reactive system is Accumulation = Input + Generation - x, what is x? |
A. | Consumption - Output |
B. | Consumption + Output |
C. | Output - Consumption |
D. | None of the mentioned |
Answer» C. Output - Consumption | |
25. |
In a steady-state reactive system, 5 molar CH4 and 5 molar O2 are supplied to the system, then what is the amount of CO2 produced? |
A. | 2.5 molar |
B. | 5 molar |
C. | 7.5 molar |
D. | 10 molar |
Answer» C. 7.5 molar | |
26. |
In a steady-state reactive system, 5 molar KNO3 and 5 molar H2SO4 are supplied to the system, then what is the amount of K2SO4 produced? |
A. | 2.5 molar |
B. | 5 molar |
C. | 7.5 molar |
D. | 10 molar |
Answer» B. 5 molar | |
27. |
In a system if, Accumulation = Input - Output, where both the terms are distinct and non-zero, then the system is which of the following? |
A. | Steady-state |
B. | Closed |
C. | Non-reactive |
D. | None of the mentioned |
Answer» D. None of the mentioned | |
28. |
In a system if, Accumulation = Generation - Consumption, where both the terms are distinct and non-zero, then the system is which of the following? |
A. | Steady-state |
B. | Closed |
C. | Non-reactive |
D. | None of the mentioned |
Answer» C. Non-reactive | |
29. |
In a system if, Accumulation = Input - Output + Generation - Consumption, where all the four terms are distinct and non-zero, then the system is which of the following? |
A. | Steady-state |
B. | Closed |
C. | Non-reactive |
D. | None of the mentioned |
Answer» E. | |
30. |
In a steady-state reactive system, NaCl and H2CO3 are supplied to the system at the rate of 200 L/min and 100 L/min respectively, what is the rate at which Na2CO3 is produced? |
A. | 100 L/min |
B. | 200 L/min |
C. | 300 L/min |
D. | 400 L/min |
Answer» D. 400 L/min | |
31. |
In a steady-state reactive system, 2 molar NaCl and 1 molar H2CO3 are supplied to the system both at the rate of 100 mole/min, then how much Na2CO3 produced? |
A. | 1 molar |
B. | 2 molar |
C. | 3 molar |
D. | 4 molar |
Answer» B. 2 molar | |
32. |
The rate of flow in stream with 40% O2 and 60% CO2 is 10 mole/hr, the contained was initially filled with 6 mole of O2, what will be the percentage of O2 in product stream? |
A. | 12.5 |
B. | 25 |
C. | 50 |
D. | 62.5 |
Answer» E. | |
33. |
A reactor with efficiency 50%, has the feed CO2 and SO2 with mass fraction 0.4 and 0.6 with the rate 10 Kg/hr, what is the rate of CO2 in product side? |
A. | 0.5 Kg/hr |
B. | 1 Kg/hr |
C. | 1.5 Kg/hr |
D. | 2 Kg/hr |
Answer» E. | |
34. |
Water flowing with TSS at the rate of 40 Liter/min, is discharged into a river flowing at the rate of 20 Liter/min, if the concentration of TSS in the river is 5 mg/L, what is the concentration of TSS in water? |
A. | 5 mg/L |
B. | 10 mg/L |
C. | 15 mg/L |
D. | 20 mg/L |
Answer» C. 15 mg/L | |
35. |
The rate of flow in stream with 20% CH4 and 80% H2O is 5 mole/hr, the contained was initially filled with 3 mole of H2O, what will be the percentage of CH4 in product stream? |
A. | 5 |
B. | 12.5 |
C. | 25 |
D. | 37.5 |
Answer» C. 25 | |
36. |
The rate of flow in stream with 20% O2 and 80% CO2 is 5 mole/hr, the contained was initially filled with 3 mole of O2, what will be the percentage of O2 in product stream? |
A. | 12.5 |
B. | 25 |
C. | 37.5 |
D. | 50 |
Answer» E. | |
37. |
The rate of flow in stream with 50% O2 and 50% CO2 is 10 mole/hr, the contained was initially filled with 10 mole of O2, what will be the percentage of O2 in product stream? |
A. | 25 |
B. | 50 |
C. | 75 |
D. | 100 |
Answer» D. 100 | |
38. |
The rate of flow in stream with 75% O2 and 25% CO2 is 20 mole/hr, the contained was initially filled with 5 mole of O2, what will be the percentage of O2 in product stream? |
A. | 20 |
B. | 40 |
C. | 60 |
D. | 80 |
Answer» E. | |
39. |
50 Kg of a solid liquid mixture containing 20% solid and 80% water is left open in the atmosphere, after some time the water is 60%, how much water is evaporated? |
A. | 15 Kg |
B. | 25 Kg |
C. | 35 Kg |
D. | 45 Kg |
Answer» C. 35 Kg | |
40. |
100 Kg of a gas mixture of 40% He and 60% Ne is passed through a diffusion tube and the product has 20% He and 80% Ne, what is the amount of He recovered? |
A. | 25 Kg |
B. | 45 Kg |
C. | 50 Kg |
D. | 75 Kg |
Answer» B. 45 Kg | |
41. |
A gas mixture input is given to a membrane with 40% O2 and 60% N2, the waste contains 80% of the input and the product contains 25% O2 and 75% N2, what is the percentage of O2 in the waste? |
A. | 0.22 |
B. | 0.44 |
C. | 0.66 |
D. | 0.88 |
Answer» C. 0.66 | |
42. |
A gas mixture of 40% He and 60% Ne is passed through a diffusion tube and the product has 10% He and 90% Ne, what is the percentage of He recovered? |
A. | 0.25 |
B. | 0.333 |
C. | 0.5 |
D. | 0.666 |
Answer» C. 0.5 | |
43. |
100 Kg mol of a gas mixture input is given to a membrane with 30% O2 and 70% N2, the waste contains 60% of the input and the product contains 10% O2 and 90% N2, what are the number of moles of O2 in the waste? |
A. | 12 |
B. | 16 |
C. | 34 |
D. | 42 |
Answer» D. 42 | |
44. |
A semi-batch process differs from a closed process in which of the following? |
A. | Input |
B. | Output |
C. | Generation |
D. | Consumption |
Answer» B. Output | |
45. |
A batch process is that in which material enters the system and _____ which of the following should fill the gap? |
A. | Leaves |
B. | Does not leaves |
C. | Half of it leaves |
D. | None of the mentioned |
Answer» B. Does not leaves | |
46. |
The flow in rate of CH4 and O2 in a system are 2 mole/hr each what is the flow out rate of CO2? |
A. | 1 mole/hr |
B. | 2 mole/hr |
C. | 3 mole/hr |
D. | 4 mole/hr |
Answer» B. 2 mole/hr | |
47. |
The flow in rate of HCl and NaOH in a system are 1 mole/hr each what is the flow out rate of NaCl? |
A. | 1 mole/hr |
B. | 2 mole/hr |
C. | 3 mole/hr |
D. | 4 mole/hr |
Answer» B. 2 mole/hr | |
48. |
The flow in rate of H2SO4 and NaCl in a system are 2 mole/hr each what is the flow out rate of HCl? |
A. | 1 mole/hr |
B. | 2 mole/hr |
C. | 3 mole/hr |
D. | 4 mole/hr |
Answer» C. 3 mole/hr | |
49. |
The flow in rate of C3H8 and O2 in a system are 2 mole/hr each what is the flow out rate of CO2? |
A. | 1 mole/hr |
B. | 1.2 mole/hr |
C. | 1.5 mole/hr |
D. | 2 mole/hr |
Answer» C. 1.5 mole/hr | |
50. |
The flow in rate of C6H6 and H2 in a system are 3 mole/hr each what is the flow out rate of C6H12? |
A. | 1 mole/hr |
B. | 1.2 mole/hr |
C. | 1.5 mole/hr |
D. | 2 mole/hr |
Answer» B. 1.2 mole/hr | |