A student hypothesized that under constant light and temperature, the rate of transpiration in bean plants increases as the relative humidity of the surrounding air increases. To test this hypothesis, the student measured the transpiration rates of several identical bean plants at different relative humidity levels. The results are shown in the table below:
| Relative Humidity (%) | Transpiration Rate () |
|---|---|
| 30 | 15.2 |
| 50 | 10.4 |
| 70 | 5.8 |
| 90 | 1.3 |
Based on these results, how should the student modify their hypothesis to accurately reflect the relationship between relative humidity and transpiration rate?
- AThe student should hypothesize that the transpiration rate increases as relative humidity increases, because a lower relative humidity slows the rate of evaporation from the leaves.
- BThe student should hypothesize that the transpiration rate remains constant at all relative humidity levels, because relative humidity has no effect on transpiration.
- The student should hypothesize that the transpiration rate decreases as relative humidity increases, because a higher humidity decreases the water vapor concentration gradient between the leaf interior and the air.Cevap
- DThe student should hypothesize that the transpiration rate decreases as relative humidity increases, because a higher relative humidity increases the rate of water absorption by the leaves from the air.
Cevap
The student should hypothesize that the transpiration rate decreases as relative humidity increases, because a higher humidity decreases the water vapor concentration gradient between the leaf interior and the air.
The correct option states that the transpiration rate decreases as relative humidity increases, which matches the trend in the data. It also provides the correct scientific explanation: higher humidity reduces the water vapor concentration gradient between the leaf's wet interior and the air, reducing the rate of diffusion.
Adım Adım Çözüm
Anahtar Kavram
Formulating and Modifying Hypotheses