1.33
The IOR of 1.33 is the common value for water at 0°C, and to me is not the common accepted value for glass. That being said, there are many different types of glass, and they all vary in IOR. However a common standard value for glass is 1.5
If you want the smaller glass to appear invisible in the liquid it contains, the index of refraction of the liquid must be equal to or very close to the index of refraction of the glass. Matching these refractive indices results in minimizing the reflection and refraction of light at the glass-liquid interface, making the glass less visible to the observer.
Diamond has the highest index of refraction among vacuum, diamond, air, and crown glass. It has an index of refraction of around 2.42, which is higher than that of air (1.0003), vacuum (1), and crown glass (around 1.5).
The index of refraction is a measure of how much light slows down when passing through a medium. The molecules in gases are more spread out compared to solids like glass, so there's less interaction with light, resulting in a smaller index of refraction for air compared to glass.
Materials with a high density, such as diamond or glass, typically have the greatest index of refraction.
The presence of the wet filter paper will alter the light's path due to refraction, allowing for measurements to determine the glass's index of refraction. By measuring the angles of incidence and refraction and applying Snell's Law, the glass's refractive index can be calculated. The refractive index of the glass can be determined by comparing the angle of incidence and refraction with and without the wet filter paper.
If you want the smaller glass to appear invisible in the liquid it contains, the index of refraction of the liquid must be equal to or very close to the index of refraction of the glass. Matching these refractive indices results in minimizing the reflection and refraction of light at the glass-liquid interface, making the glass less visible to the observer.
Diamond has the highest index of refraction among vacuum, diamond, air, and crown glass. It has an index of refraction of around 2.42, which is higher than that of air (1.0003), vacuum (1), and crown glass (around 1.5).
The index of refraction is a measure of how much light slows down when passing through a medium. The molecules in gases are more spread out compared to solids like glass, so there's less interaction with light, resulting in a smaller index of refraction for air compared to glass.
Materials with a high density, such as diamond or glass, typically have the greatest index of refraction.
The presence of the wet filter paper will alter the light's path due to refraction, allowing for measurements to determine the glass's index of refraction. By measuring the angles of incidence and refraction and applying Snell's Law, the glass's refractive index can be calculated. The refractive index of the glass can be determined by comparing the angle of incidence and refraction with and without the wet filter paper.
Depending on the glass, it ranges from 1.45 to 1.93
The index of refraction for glass is calculated by taking the speed of light in a vacuum and dividing it by the speed of light in glass. Since light travels 1.5 times faster in a vacuum, the index of refraction for glass would be 1 divided by 1.5, which equals 0.67.
The index of refraction is a measure of how much light slows down when passing through a medium. In solids like glass, the atoms are closely packed together, causing the light to interact more with the atoms and slow down more than in air where the atoms are more spread out. This difference in atomic arrangement leads to a higher index of refraction in glass compared to air.
The index of refraction of glass is higher than that of air, meaning light travels slower in glass compared to air. This causes refraction when light passes from air to glass, bending the light rays towards the normal.
Each substance has an index of refraction. The index of refraction of water is about 1.3330 . The index of refraction of air at standard conditions is about 1.0003 . There is no such thing as the index of refraction of "water to air".
A material with a high index of refraction bends light more than a material with a low index of refraction. This means that light travels slower through the material and the material appears denser to light. Materials like diamond and glass have high indexes of refraction.
submerge it in a liquid that has the same index of refraction eg. water.