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Question 2
In an experiment to measure the refractive index of a substance, a student used a rectangular block of the substance to measure the angle of incidence i and the corr... show full transcript
Step 1
Step 2
Answer
To determine the angle of refraction (r), the student used a rectangular block placed on a flat surface. The setup involves:
Ensure that all measurements are recorded accurately for consistency.
Step 3
Answer
To calculate the refractive index (n), plot the sine of the angles:
Calculate and for all recorded angles:
i (degrees) | r (degrees) | sin(i) | sin(r) |
---|---|---|---|
20 | 13 | 0.34 | 0.23 |
30 | 20 | 0.50 | 0.34 |
40 | 27 | 0.64 | 0.39 |
50 | 36 | 0.77 | 0.59 |
60 | 40 | 0.87 | 0.64 |
70 | 43 | 0.98 | 0.68 |
Plot sin(i) against sin(r) on a graph.
Fit a straight line to the points, ensuring that the slope is examined for consistency.
From the graph, determine the slope, which is approximated by n = rac{ ext{sin}(i)}{ ext{sin}(r)}. The calculated slope value can help find the refractive index.
Step 4
Answer
Reduction of Error: By using a graph, the impact of random errors in individual angle measurements is minimized. It calculates the overall trend, providing a more accurate average instead of relying on individual data points.
Visual Representation: Graphing allows for a visual representation of the relationship between sin(i) and sin(r). This can reveal any outlier effects and ensure a more comprehensive analysis of the data collected.
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