20. How many liters of oil would be needed to supply all of the world's energy needs for one year?

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How many liters of oil would be needed to supply all of the world's energy needs for one year?

 

(Energy comparisons attached)

### Question 20

**How many liters of oil would be needed to supply all of the world's energy needs for one year?**

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**Explanation:**

This question challenges students to understand the scale of global energy consumption and the role of oil in meeting those energy needs. To answer this question, students might need to research current global energy consumption statistics, average energy yield from oil, and conversions between different energy units. Through this exercise, students will gain insights into the enormity of global energy demands and the limitations of relying on non-renewable resources like oil. This question also encourages critical thinking about the sustainability of energy resources and the importance of transitioning to renewable energy sources.
Transcribed Image Text:### Question 20 **How many liters of oil would be needed to supply all of the world's energy needs for one year?** --- **Explanation:** This question challenges students to understand the scale of global energy consumption and the role of oil in meeting those energy needs. To answer this question, students might need to research current global energy consumption statistics, average energy yield from oil, and conversions between different energy units. Through this exercise, students will gain insights into the enormity of global energy demands and the limitations of relying on non-renewable resources like oil. This question also encourages critical thinking about the sustainability of energy resources and the importance of transitioning to renewable energy sources.
**Selected Energy Comparisons**

| **Item**                                                          | **Energy (joules)**  |
|-------------------------------------------------------------------|--------------------|
| Energy released by metabolism of 1 average candy bar              | 1 × 10⁶            |
| Energy needed for 1 hour of running (adult)                       |  4 × 10⁶           |
| Energy released by burning 1 liter of oil                         |  1.2 × 10⁷         |
| Electrical energy used in an average home daily                   | 5 × 10⁷            |
| Energy released by burning 1 kilogram of coal                     | 1.6 × 10⁷          |
| Energy released by fission of 1 kilogram of uranium-235           | 5.6 × 10¹³         |
| Energy released by fusion of hydrogen in 1 liter of water         | 6.9 × 10¹¹         |
| U.S. annual energy consumption                                    | 1.0 × 10²⁰         |
| World annual energy consumption                                   |  5.7 × 10²⁰        |
| Annual energy generation of Sun                                   | 1 × 10³⁴           |
Transcribed Image Text:**Selected Energy Comparisons** | **Item** | **Energy (joules)** | |-------------------------------------------------------------------|--------------------| | Energy released by metabolism of 1 average candy bar | 1 × 10⁶ | | Energy needed for 1 hour of running (adult) | 4 × 10⁶ | | Energy released by burning 1 liter of oil | 1.2 × 10⁷ | | Electrical energy used in an average home daily | 5 × 10⁷ | | Energy released by burning 1 kilogram of coal | 1.6 × 10⁷ | | Energy released by fission of 1 kilogram of uranium-235 | 5.6 × 10¹³ | | Energy released by fusion of hydrogen in 1 liter of water | 6.9 × 10¹¹ | | U.S. annual energy consumption | 1.0 × 10²⁰ | | World annual energy consumption | 5.7 × 10²⁰ | | Annual energy generation of Sun | 1 × 10³⁴ |
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