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Biomass and hydro energy – MCQs – EE

1. Biomass energy is obtained from:

(A) Wind


(B) Organic matter


(C) Solar radiation


(D) Water



2. The main component of biogas is:

(A) Carbon Dioxide


(B) Methane


(C) Hydrogen


(D) Oxygen



3. The process of producing biogas from organic waste is called:

(A) Aerobic digestion


(B) Anaerobic digestion


(C) Gasification


(D) Pyrolysis



4. Which of the following is not a biomass fuel?

(A) Wood


(B) Cow dung


(C) Coal


(D) Bagasse



5. The calorific value of biogas is approximately:

(A) 5 MJ/m³


(B) 10 MJ/m³


(C) 20 MJ/m³


(D) 50 MJ/m³



6. The main purpose of a biogas plant is to:

(A) Produce steam


(B) Generate methane gas


(C) Produce hydrogen


(D) Burn waste



7. The residue from a biogas plant is used as:

(A) Solid waste


(B) Fertilizer


(C) Fuel


(D) Construction material



8. Which of the following is a thermochemical conversion process of biomass?

(A) Fermentation


(B) Pyrolysis


(C) Anaerobic digestion


(D) Composting



9. In gasification of biomass, the main product gas is called:

(A) Producer gas


(B) Natural gas


(C) Water gas


(D) LPG



10. The primary benefit of biomass energy is that it is:

(A) Non-renewable


(B) Carbon-neutral


(C) High emission source


(D) Fossil-based



11. The efficiency of a typical biogas plant is around:

(A) 10–20%


(B) 25–30%


(C) 40–50%


(D) 60–70%



12. Biomass gasification produces a mixture of gases mainly composed of:

(A) CO, H₂, CH₄


(B) CO₂, O₂, N₂


(C) CH₄, NH₃, SO₂


(D) CO₂, SO₂, CO



13. The fermentation process converts biomass into:

(A) Methane


(B) Ethanol


(C) Hydrogen


(D) Carbon dioxide



14. The typical retention time for anaerobic digestion is:

(A) 5–10 days


(B) 20–30 days


(C) 40–50 days


(D) 60–90 days



15. The main disadvantage of biomass energy is:

(A) High cost


(B) Air pollution and land use


(C) No CO₂ emission


(D) Abundant resource



16. Hydropower converts the ______ energy of water into electricity.

(A) Thermal


(B) Potential


(C) Chemical


(D) Kinetic



17. The water stored at height in a dam possesses:

(A) Kinetic energy


(B) Potential energy


(C) Thermal energy


(D) Electrical energy



18. The main components of a hydroelectric power plant are:

(A) Dam, Turbine, Generator


(B) Dam, Boiler, Motor


(C) Turbine, Condenser, Compressor


(D) Boiler, Generator, Pump



19. The turbine used in high head hydro power plants is:

(A) Kaplan turbine


(B) Pelton wheel


(C) Francis turbine


(D) Propeller turbine



20. The turbine used in low head hydro power plants is:

(A) Pelton wheel


(B) Francis turbine


(C) Kaplan turbine


(D) Impulse turbine



21. The flow rate of water in hydroelectric power is measured in:

(A) m³/s


(B) W/m²


(C) kg/h


(D) m/s²



22. The hydroelectric power output depends on:

(A) Head


(B) Flow rate


(C) Efficiency of turbine


(D) All of the above



23. The small hydro power plant has a capacity of up to:

(A) 5 MW


(B) 25 MW


(C) 50 MW


(D) 100 MW



24. The head range of a medium hydro power plant is approximately:

(A) 10–50 m


(B) 50–100 m


(C) 100–200 m


(D) 200–500 m



25. The generator in a hydro power station is generally:

(A) DC generator


(B) Synchronous generator


(C) Induction generator


(D) Stepper motor



26. The hydraulic efficiency of a well-designed hydro turbine can reach up to:

(A) 50%


(B) 60%


(C) 80–90%


(D) 95%



27. The specific speed of a turbine helps in:

(A) Selecting the type of turbine


(B) Measuring head


(C) Determining generator capacity


(D) Measuring flow velocity



28. Run-of-the-river hydro plants operate:

(A) With large storage dams


(B) Without large storage reservoirs


(C) Only during floods


(D) Using sea waves



29. The efficiency of hydroelectric plants is generally:

(A) 30–40%


(B) 60–70%


(C) 80–90%


(D) 95–100%



30. The main environmental impact of hydroelectric power is:

(A) CO₂ emissions


(B) Habitat disturbance and relocation


(C) Air pollution


(D) None of the above



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