Doppler Effect
விளையாடிக் கற்றுக்கொள்ளுங்கள்
ஆற்றல் சம்பாதிக்க இந்த கேள்விகளுக்குப் பதிலளியுங்கள், பின்னர் மீன் பிடித்து ஆராயுங்கள். கணக்கு தேவையில்லை.
பாட குறிப்புகள்
The Doppler Effect
- The Doppler effect is the change in observed frequency (and wavelength) of a wave due to relative motion between the source and the observer.
- When a source moves towards a stationary observer, the observed frequency is higher and the wavelength is shorter.
- When a source moves away from a stationary observer, the observed frequency is lower and the wavelength is longer.
- The source itself emits at a constant frequency; only the observed frequency changes.
- For sound, a higher frequency is heard as a higher pitch, and a lower frequency as a lower pitch.
- The wave speed remains constant; frequency and wavelength change inversely (v = fλ).
- Wavefront diagrams show that wavefronts are squashed in front of a moving source and spread out behind it.
The Doppler Effect for Light
- The Doppler effect applies to electromagnetic waves such as light.
- Light from a source moving away from the observer is redshifted: its wavelength increases and frequency decreases.
- Light from a source moving towards the observer is blueshifted: its wavelength decreases and frequency increases.
- Red light has a longer wavelength and lower frequency than blue light.
- For a non-relativistic source (v << c), the Doppler shift is given by: Δf/f = Δλ/λ ≈ v/c.
- Δλ = λ₀ − λ, where λ₀ is the observed wavelength and λ is the reference (original) wavelength.
- The relative velocity is Δv = vs − vo; if the observer is stationary, Δv = vs = v.
- The Doppler shift has no units because it is a ratio of like quantities.
Spectral Lines and Redshift
- Spectral lines from elements in a source can be compared with laboratory reference lines.
- If the lines are shifted towards the red end of the spectrum, the source is moving away from Earth.
- If the lines are shifted towards the blue end, the source is moving towards Earth.
- Redshift is defined as the fractional increase in wavelength (or decrease in frequency) due to the source and observer receding from each other.
- The greater the redshift, the faster the source is moving away.
- Redshift provides evidence that the universe is expanding.
Calculating Velocities from Redshift
- The Doppler equation can be rearranged to find velocity: v = cΔλ/λ or v = cΔf/f.
- A positive velocity indicates the source is moving towards Earth (observed frequency > reference frequency).
- A negative velocity indicates the source is moving away from Earth (observed frequency < reference frequency).
- Keep the minus sign in calculations to determine the direction of motion.
- Wavelengths may be left in nm because the units cancel in the ratio.
- The speed of light c = 3.0 × 10⁸ m s⁻¹ is given in the data booklet.
Galactic Redshift and the Expanding Universe
- Almost all galaxies show redshift, meaning they are receding from Earth.
- This led to the idea that the space between galaxies is expanding.
- The expansion stretches light waves as they travel, shifting them towards the red end of the spectrum.
- The expansion can be compared to dots on an inflating balloon: as the balloon expands, the dots move apart, but they themselves do not move.
- The further a galaxy is from Earth, the greater its redshift and the faster it appears to recede.
Applications and Evidence
- The discovery of Doppler redshift gave evidence for the Big Bang theory.
- The Doppler effect is used to measure the rate of blood flow in patients.
- It is used to find planetary orbits around distant stars.
- It is used to map the expansion of the universe.
- Recording the speed of sound is not an application of the Doppler effect.
Worked Example: Rotational Speed of a Galaxy
- A galaxy observed edge-on shows one side blueshifted and the other redshifted.
- The side with shorter wavelength (blueshift) is moving towards Earth.
- The side with longer wavelength (redshift) is moving away from Earth.
- The average change in wavelength is Δλ = (λLHS − λRHS)/2.
- The rotational speed is found using v = cΔλ/λ, where λ is the reference wavelength.
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பயிற்சி கேள்விகள்
இலவச முன்னோட்டம் — 66-இல் 8 கேள்விகள். அனைத்தையும் பார்க்க பதிவு செய்யவும்.
1.A train is moving towards a stationary observer and sounds its horn. Which row correctly shows the changes in frequency, wavelength, and pitch heard by the observer?
Easy- AFrequency: higher, Wavelength: shorter, Pitch: higher
- BFrequency: higher, Wavelength: shorter, Pitch: lower
- CFrequency: lower, Wavelength: shorter, Pitch: lower
- DFrequency: lower, Wavelength: longer, Pitch: higher
2.What did the discovery of the Doppler redshift give scientists evidence for?
Easy- ANewton's Third Law
- BThe formation of solar systems
- CThe Big Bang
- DBlueshift
3.Which of the following is not a use of the Doppler effect?
Easy- AMapping the expansion of the universe
- BMeasuring the rate of blood flow in patients
- CFinding planetary orbits around distant stars
- DRecording the speed of sound
4.Which statement about redshift is true?
Easy- ARedshift shows all galaxies are moving towards the Earth
- BRedshift shows that the space between galaxies is expanding
- CRedshift is the change in pitch of the sound waves emitted from galaxies
- DRedshift is the expansion of stars
5.Which of the following statements about the Doppler effect is correct?
Easy- AWhen a galaxy moves towards the Earth the spectral absorption lines observed will have a longer wavelength
- BWhen a car starts to move away from an observer, the sound from the exhaust appears at a lower frequency to the observer than the driver
- CWhen a train moves towards a station, its horn will sound lower to the passengers on the platform compared to the passengers in the train
- DLight from a star moving towards the Earth is redshifted
6.Which of the following is an equation to calculate the Doppler shift of light?
Easy- AΔf / f ≈ v / c
- BΔf / f ≈ c / v
- Cf / Δf ≈ c / v
- DΔf / f ≈ v / c2
7.In the laboratory on Earth, hydrogen emits a spectral line of wavelength 400 nm. The same line from a galaxy moving away from Earth at 0.2c is observed. What is the observed wavelength?
Medium- A480 nm
- B320 nm
- C80 nm
- D2000 nm
8.A spectral line is observed at 530 nm in the laboratory. The same line in a galaxy receding from Earth at 3.00 × 106 m/s is observed. What is the observed wavelength? (c = 3.00 × 108 m/s)
Medium- A534.7 nm
- B5.3 nm
- C535.3 nm
- D583 nm
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இந்த தலைப்பிற்கான ஒவ்வொரு கேள்வியையும், ஸ்லைடுகளையும், ஃப்ளாஷ் கார்டுகளையும் மற்றும் திருப்புதல் குறிப்புகளையும் பார்க்க இலவச கணக்கை உருவாக்கவும்.