Explore Westonci.ca, the leading Q&A site where experts provide accurate and helpful answers to all your questions. Explore a wealth of knowledge from professionals across different disciplines on our comprehensive platform. Explore comprehensive solutions to your questions from knowledgeable professionals across various fields on our platform.
Sagot :
To determine the real depth of the water reservoir, we'll use the concept of refraction, specifically the apparent depth versus real depth in a medium like water. When looking at an object submerged in water from above, the object appears closer to the surface than it really is due to the bending of light as it passes from water to air.
Given data:
- Apparent depth [tex]\( d_{apparent} = 1.0 \text{ m} \)[/tex]
- Refractive index of water [tex]\( n = 1.35 \)[/tex]
The relationship between the real depth [tex]\( d_{real} \)[/tex] and the apparent depth [tex]\( d_{apparent} \)[/tex] is given by:
[tex]\[ d_{real} = d_{apparent} \times n \][/tex]
Now substituting the known values:
[tex]\[ d_{real} = 1.0 \text{ m} \times 1.35 \][/tex]
Hence,
[tex]\[ d_{real} = 1.35 \text{ m} \][/tex]
So, the real depth of the reservoir is 1.35 meters.
Given data:
- Apparent depth [tex]\( d_{apparent} = 1.0 \text{ m} \)[/tex]
- Refractive index of water [tex]\( n = 1.35 \)[/tex]
The relationship between the real depth [tex]\( d_{real} \)[/tex] and the apparent depth [tex]\( d_{apparent} \)[/tex] is given by:
[tex]\[ d_{real} = d_{apparent} \times n \][/tex]
Now substituting the known values:
[tex]\[ d_{real} = 1.0 \text{ m} \times 1.35 \][/tex]
Hence,
[tex]\[ d_{real} = 1.35 \text{ m} \][/tex]
So, the real depth of the reservoir is 1.35 meters.
We appreciate your visit. Hopefully, the answers you found were beneficial. Don't hesitate to come back for more information. Thanks for stopping by. We strive to provide the best answers for all your questions. See you again soon. Westonci.ca is here to provide the answers you seek. Return often for more expert solutions.