Lesson 5.5.2
5.5.2 Diffraction gratings and the wavelength of light Quiz: Pearson Edexcel Physics, Unit 5
20 questions
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Lesson 5.5.2, Diffraction gratings and the wavelength of light: 20 multiple choice questions for the Pearson Edexcel Physics (9PH0), Unit 5: Waves and Particle Nature of Light, written with Revision Ninja.
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The 20 questions
-
What is the diffraction grating equation for maxima?
- n lambda = d sin(theta)
- n d = lambda sin(theta)
- lambda = n d sin(theta)
- n lambda = d tan(theta)
-
In the grating equation, what does d represent?
- The width of each slit
- The number of slits per metre
- The distance from the grating to the screen
- The spacing between adjacent slits
-
A grating has 500 lines per millimetre. What is the slit spacing d?
- 5.0 micrometres
- 0.5 micrometres
- 20 micrometres
- 2.0 micrometres
-
Where does the zero-order maximum (n = 0) appear on the screen?
- Straight through the grating, at theta = 0, with all wavelengths overlapping to give white light
- At 90 degrees to the grating
- Only for red light
- As a dark fringe
-
Compared with a double slit of the same spacing, what does a diffraction grating produce?
- Wider maxima with lower peak intensity
- Sharper and narrower bright maxima
- Fewer orders of maxima
- No maxima at all
-
What limits the highest order n that can be observed with a grating?
- The condition that sin(theta) cannot exceed 1, so n must be less than d/lambda
- The width of the grating only
- The wavelength alone, regardless of spacing
- The number of lines on the grating alone
-
When white light passes through a grating, which colour is deviated the most in each order?
- Violet
- Green
- Red
- Yellow
-
A grating has slit spacing 2.0 micrometres. Light of wavelength 500 nm is used. What is the angle of the first-order maximum?
- 30.0 degrees
- 7.2 degrees
- 25.0 degrees
- 14.5 degrees
-
A diffraction grating with spacing 2.0 micrometres gives a second-order maximum at 36.9 degrees. What is the wavelength of the light?
- 300 nm
- 1200 nm
- 450 nm
- 600 nm
-
A grating has spacing 1.0 micrometre and light of wavelength 650 nm is used. Which orders are observed?
- Only the first order, since d/lambda is about 1.5
- No orders, since d is less than the wavelength
- Orders up to the third, since d/lambda is about 3
- Only the second order, since d/lambda is about 1.5
-
Light of wavelength 600 nm produces a first-order maximum at 30 degrees from a grating. What is the number of lines per millimetre of the grating?
- About 1200 lines per mm
- About 83 lines per mm
- About 830 lines per mm
- About 500 lines per mm
-
A grating has slit spacing 2.5 micrometres. For light of wavelength 500 nm, what is the angle of the second-order maximum?
- 36.9 degrees
- 11.5 degrees
- 53.1 degrees
- 23.6 degrees
-
A first-order maximum appears at 19.5 degrees from a grating of spacing 2.0 micrometres. What is the wavelength of the light?
- 1000 nm
- 340 nm
- 670 nm
- 520 nm
-
A grating has 300 lines per millimetre. What is its slit spacing?
- 3.3 micrometres
- 300 micrometres
- 0.30 micrometres
- 33 micrometres
-
A grating has spacing 3.0 micrometres. Light of wavelength 600 nm is used. What is the angle of the third-order maximum?
- 18.4 degrees
- 65.4 degrees
- 53.1 degrees
- 36.9 degrees
-
A student says that for a given grating, the angle of each maximum increases with wavelength. Which evaluation is correct?
- Correct, because for a given order sin(theta) is proportional to lambda
- Incorrect, because angles depend only on the number of slits
- Correct, but only for the zero-order maximum
- Incorrect, because longer wavelengths give smaller angles
-
A grating's first-order maximum for light of wavelength 633 nm appears at 25.0 degrees. What is the slit spacing?
- 0.67 micrometres
- 2.5 micrometres
- 1.5 micrometres
- 3.5 micrometres
-
A grating of spacing 2.0 micrometres is used with white light. What is the approximate angular separation of the first-order maxima for 400 nm and 700 nm light?
- About 17 degrees
- About 4.5 degrees
- About 9.0 degrees
- About 12 degrees
-
Why does a diffraction grating give sharper maxima than a double slit of the same spacing?
- Many slits interfere together, so the bright maxima become narrower while the intensity between them falls
- The grating has fewer slits, so less interference occurs
- Each slit is wider, so the maxima are sharper
- The grating absorbs light between the maxima only
-
A student says that the central maximum of a grating pattern in white light is white, and so is every higher order. Which evaluation is correct?
- Correct, because every order is white
- Correct, because higher orders overlap to form white light
- Incorrect, because the central maximum is coloured
- Incorrect for higher orders, which spread into a spectrum; only the zero-order maximum stays white
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