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You carried out an experiment to measure the wavelength of a monochromatic light source using a diffraction grating - Leaving Cert Physics - Question 2 - 2007

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You carried out an experiment to measure the wavelength of a monochromatic light source using a diffraction grating. The diffraction grating had 600 lines per mm. (... show full transcript

Worked Solution & Example Answer:You carried out an experiment to measure the wavelength of a monochromatic light source using a diffraction grating - Leaving Cert Physics - Question 2 - 2007

Step 1

Draw a labelled diagram of the apparatus you used.

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Answer

The apparatus used in the experiment includes:

  • Diffraction Grating / Young’s Slits: A device with 600 lines per mm that spreads light into its component colors.
  • Monochromatic Light Source: A sodium lamp or laser used to ensure a single wavelength of light.
  • Spectrometer: This helps measure angles accurately.
  • Screen: Where the diffraction pattern is viewed.
  • Scale: A meter stick used to measure distances.

The diagram should clearly label each component.

Step 2

Name a source of monochromatic light.

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Answer

A suitable source of monochromatic light can be a sodium lamp or a laser.

Step 3

State what measurements you took during the experiment.

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During the experiment, the following measurements were taken:

  • Correct angle to determine the diffraction pattern.
  • Distance from the grating to the screen (let's refer to this as 'L').
  • The distance between diffraction fringes (let's denote this as 'x').
  • Adjustments made to the spectrometer to ensure the correct angle.

Step 4

What is the distance between each line on the diffraction grating?

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The distance between each line on the diffraction grating (d) can be calculated using the formula:

d=1number of lines per meter=1600000=1.66667×106 (m)d = \frac{1}{\text{number of lines per meter}} = \frac{1}{600000} = 1.66667 \times 10^{-6} \text{ (m)}

Step 5

How did you determine the wavelength of the light?

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The wavelength (λ) of the light can be determined using the formula:

dsin(θ)=nλd \sin(\theta) = n \lambda

Where:

  • d is the distance between lines on the grating.
  • \theta is the angle of the first order maximum.
  • n is the order of the diffraction (typically n = 1 for the first maximum).

This can be rearranged to find: λ=dsin(θ)n\lambda = \frac{d \sin(\theta)}{n}

Step 6

Give one precaution that you took to get an accurate result.

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One precaution taken to ensure an accurate result is: properly adjusting the spectrometer to eliminate any parallax errors, especially when reading angles. Additionally, ensuring the screen is positioned at a proper distance from the grating helps to prevent dim spots in the diffraction pattern, which could lead to inaccurate readings.

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