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In an experiment to determine the refractive index of glass, light was passed through a glass block and the angles of incidence $i$ and refraction $r$ were measured for different values of $i$ - Leaving Cert Physics - Question 2 - 2020

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In an experiment to determine the refractive index of glass, light was passed through a glass block and the angles of incidence $i$ and refraction $r$ were measured ... show full transcript

Worked Solution & Example Answer:In an experiment to determine the refractive index of glass, light was passed through a glass block and the angles of incidence $i$ and refraction $r$ were measured for different values of $i$ - Leaving Cert Physics - Question 2 - 2020

Step 1

Explain how the refracted ray and the angle of refraction were determined.

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Answer

To determine the refracted ray and the angle of refraction, a ray box or laser is used to direct a beam of light towards the glass block. A normal line is drawn at the point of incidence, where the light enters the block. The angle of incidence ii is measured between the incident ray and the normal. As the light passes through the glass, it bends, and the refracted ray emerges at an angle rr from the normal. By using a protractor, the angle of refraction can be accurately measured.

Step 2

Why would using a smaller angle of incidence have led to a less accurate measurement of the angle of refraction?

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Using a smaller angle of incidence can result in a larger percentage error in measuring the angle of refraction. This tendency occurs because small angles are harder to measure accurately due to the limitations of the protractor's scale, leading to greater uncertainty in the results.

Step 3

Use the data to draw a suitable graph to verify Snell's law.

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To verify Snell's law, we can plot a graph of rac{ ext{sin}~i}{ ext{sin}~r} against the angle of incidence ii. For this, first, we calculate extsin i ext{sin}~i and extsin r ext{sin}~r for the provided values of ii and corresponding rr. Then we can label the axes appropriately and include a linear fit through the data points.

Step 4

Explain how your graph verifies Snell's law.

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Answer

The graph verifies Snell's law if it shows a linear relationship that passes through the origin. According to Snell's law, the ratio rac{ ext{sin}~i}{ ext{sin}~r} should be constant for all points, indicating that as angle ii increases, angle rr also increases linearly. This means the points should lie on a straight line, verifying the law.

Step 5

Use your graph to calculate the refractive index of the glass.

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Answer

To calculate the refractive index nn of the glass, we can use the slope mm of the line in the graph. The refractive index can be determined using the formula: n = rac{ ext{sin}~i}{ ext{sin}~r} From the graph, if we take two points on the line, we can substitute these into the formula to find nn. For example, if m=1.50m = 1.50, then the refractive index of the glass is n=1.50n = 1.50.

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