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Electro-Magnetic
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Electro-Magnetic Radiation
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Part: 4 of 4
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The Doppler Effect
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Imagine that
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Imagine that while on his route,…
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…that a mailman passes
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…that a mailman passes a stationary ambulance.
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mailman
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…that a mailman passes a stationary ambulance. mailman
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…that a mailman passes a stationary ambulance. mailman
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stationary ambulance …that a mailman passes a stationary ambulance. mailman
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…that a mailman passes a stationary ambulance. stationary ambulance
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At that exact moment,
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At that exact moment, the driver receives a call,…
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…and begins to blast
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…and begins to blast the ambulance’s siren.
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Sound waves begin to disperse
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Sound waves begin to disperse in all directions,…
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…both behind the ambulance,
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…both behind the ambulance, and in front of it.
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behind …both behind the ambulance, and in front of it.
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behind …both behind the ambulance, and in front of it.
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behind …both behind the ambulance, and in front of it.
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behindin front
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Since the ambulance
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Since the ambulance is stationary,…
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…then the sound waves leave the ambulance
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…then the sound waves leave the ambulance with equal spacing.
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equal …then the sound waves leave the ambulance with equal spacing.
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The pitch is determined
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The pitch is determined by the wavelength,…
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…and this pitch
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…and this pitch has a medium tone.
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(medium tone)
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The sound waves
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The sound waves pass the mailman.
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The mailman knows
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The mailman knows there is an emergency,…
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…so he decides
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…so he decides to get out of the way.
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As the ambulance
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As the ambulance begins to move forward,…
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…its sound waves also
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…its sound waves also begin to change their spacing.
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From this…
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equal spacing From this…
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…to this.
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unequal spacing …to this.
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The waves in front
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The waves in front of the ambulance…
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…are now a lot
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…are now a lot closer together.
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closer together …are now a lot closer together.
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And the waves
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And the waves behind the ambulance…
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…are now a lot
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…are now a lot farther apart.
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farther apart …are now a lot farther apart.
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Since tone is determined
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Since tone is determined by the wavelengths,…
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…then the wavelengths on front side
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…then the wavelengths on front side will now sound higher in pitch,…
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higher in pitch …then the wavelengths on front side will now sound higher in pitch,…
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…while the wavelengths on the back side
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…while the wavelengths on the back side will now sound lower in pitch.
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lower in pitch …while the wavelengths on the back side will now sound lower in pitch.
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This concept is called
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This concept is called the “Doppler Effect”.
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The Doppler Effect is defined
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The Doppler Effect is defined as the change in the wavelengths…
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…due to the relative motion
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…due to the relative motion between the observer and the source.
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The key term here
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The key term here is “relative motion”,…
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…because it doesn’t matter which object
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…because it doesn’t matter which object is doing the moving.
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So whether the ambulance
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So whether the ambulance is stationary…
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(stationary)
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…and the mailman (stationary)
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…and the mailman runs towards the ambulance,… (stationary)
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…and the mailman runs towards the ambulance,… (stationary)
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…and the mailman runs towards the ambulance,… (stationary)
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…and the mailman runs towards the ambulance,… (stationary) (forward motion)
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…or whether the mailman
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is stationary…
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…or whether the mailman is stationary…
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…or whether the mailman is stationary…
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…or whether the mailman is stationary… (stationary)
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…and the ambulance (stationary)
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…and the ambulance moves towards the mailman,… (stationary)
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…and the ambulance moves towards the mailman,… (stationary)
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…and the ambulance moves towards the mailman,… (stationary)
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…and the ambulance moves towards the mailman,… (stationary) (forward motion)
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(stationary) (forward motion)
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…is irrelevant. (stationary) (forward motion)
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Because either way,
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Because either way, relative to each other,…
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…there is motion which exists
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…there is motion which exists between the (2) objects.
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And it’s this relative motion
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And it’s this relative motion between the (2) objects…
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…which causes the Doppler Effect
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…which causes the Doppler Effect to be created and detected.
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The shortening of the wavelengths
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The shortening of the wavelengths on the front end of the ambulance…
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…is called
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…is called a “blue shift”.
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blue shift …is called a “blue shift”.
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And the lengthening of the wavelengths
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And the lengthening of the wavelengths on the back end of the ambulance…
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…is called
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…is called a “red shift”.
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red shift
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Since the blue wavelengths
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Since the blue wavelengths of visible light are shorter,…
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shorter Since the blue wavelengths of visible light are shorter,…
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shorter
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…and since the red wavelengths
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shorter …and since the red wavelengths of visible light are longer,…
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shorter …and since the red wavelengths of visible light are longer,…
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shorterlonger …and since the red wavelengths of visible light are longer,…
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shorterlonger
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shorterlonger …then we use words
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shorterlonger …then we use words like “blue” and “red”…
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shorterlonger
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shorterlonger …to denote the changes in wavelengths
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shorterlonger …to denote the changes in wavelengths for all types of waves.
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shorterlonger
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shorterlonger And even though these waves
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shorterlonger And even though these waves are sound waves,…
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shorterlonger
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shorterlonger …the Doppler Effect will also work
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shorterlonger …the Doppler Effect will also work for all other types of waves as well.
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So as the ambulance
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So as the ambulance begins to race forward,…
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(forward) So as the ambulance begins to race forward,…
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(forward)
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…its sound waves start heading (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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…its sound waves start heading for the mailman. (forward)
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As they pass the mailman,
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As they pass the mailman, he hears a higher pitch,…
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higher pitch As they pass the mailman, he hears a higher pitch,…
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higher pitch As they pass the mailman, he hears a higher pitch,…
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higher pitch As they pass the mailman, he hears a higher pitch,…
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higher pitch As they pass the mailman, he hears a higher pitch,…
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…and he knows for certain
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…and he knows for certain that the ambulance is approaching.
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So as he goes
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So as he goes to take a look,…
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…he realizes that today
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…he realizes that today just wasn’t his day.
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Houston, …he realizes that today just wasn’t his day.
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Houston, we have a problem! …he realizes that today just wasn’t his day.
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The Doppler Effect
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The Doppler Effect and Stars in Motion
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Imagine that a star
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Imagine that a star were (5) LY away from the Earth.
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5 LY Imagine that a star were (5) LY away from the Earth.
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How could we know
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How could we know whether or not…
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…that the star were moving either towards
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…that the star were moving either towards or away from the Earth?
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The Doppler Effect
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The Doppler Effect can be useful…
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…in determining the motions
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…in determining the motions of any moving star.
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shorterlonger
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shorterlonger Imagine that the star
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shorterlonger Imagine that the star were not moving…
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shorterlonger
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shorterlonger …and reveals the absorption line pattern
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shorterlonger …and reveals the absorption line pattern shown above.
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shorterlonger …and reveals the absorption line pattern shown above.
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shorterlonger
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shorterlonger But if the star begins to move slowly towards the Earth…
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shorterlonger But if the star begins to move slowly towards the Earth…
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shorterlonger But if the star begins to move slowly towards the Earth…
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shorterlonger But if the star begins to move slowly towards the Earth…
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slowly shorterlonger But if the star begins to move slowly towards the Earth…
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slowly shorterlonger
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slowly shorterlonger …then its absorption line pattern
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slowly shorterlonger …then its absorption line pattern will be Doppler shifted…
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slowly shorterlonger
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slowly shorterlonger …towards the blue end
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slowly shorterlonger …towards the blue end of the spectrum.
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slowly shorterlonger …towards the blue end of the spectrum.
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slowly shorterlonger …towards the blue end of the spectrum.
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shorterlonger
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shorterlonger And if the star begins to move
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shorterlonger And if the star begins to move even faster towards the Earth…
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shorterlonger And if the star begins to move even faster towards the Earth…
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shorterlonger And if the star begins to move even faster towards the Earth…
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faster shorterlonger And if the star begins to move even faster towards the Earth…
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faster shorterlonger
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…then its absorption line pattern faster shorterlonger
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…then its absorption line pattern will be even more Doppler shifted… faster shorterlonger
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faster shorterlonger
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faster shorterlonger …towards the blue end
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…towards the blue end of the spectrum. faster shorterlonger
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faster shorterlonger …towards the blue end of the spectrum.
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faster shorterlonger …towards the blue end of the spectrum.
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Compare all three.
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no movement towards Earth Compare all three.
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no movement towards Earth slow movement towards Earth Compare all three.
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no movement towards Earth slow movement towards Earth fast movement towards Earth Compare all three.
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth It’s the same star
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no movement towards Earth slow movement towards Earth fast movement towards Earth It’s the same star traveling towards the Earth,…
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth …but just moving
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…but just moving at different speeds. no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth We know for sure
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no movement towards Earth slow movement towards Earth fast movement towards Earth We know for sure that it’s the same star,…
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth …because it’s the same fingerprint pattern
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no movement towards Earth slow movement towards Earth fast movement towards Earth …because it’s the same fingerprint pattern found in all (3) cases.
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no movement towards Earth slow movement towards Earth fast movement towards Earth …because it’s the same fingerprint pattern found in all (3) cases.
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no movement towards Earth slow movement towards Earth fast movement towards Earth …because it’s the same fingerprint pattern found in all (3) cases.
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no movement towards Earth slow movement towards Earth fast movement towards Earth …because it’s the same fingerprint pattern found in all (3) cases.
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth The fact that the lines
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The fact that the lines are blue shifted at all,... no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth …tells us that the star
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…tells us that the star is moving towards the Earth. no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth But it’s the amount of blue shift,
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no movement towards Earth slow movement towards Earth fast movement towards Earth But it’s the amount of blue shift, however,…
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no movement towards Earth slow movement towards Earth fast movement towards Earth
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no movement towards Earth slow movement towards Earth fast movement towards Earth …which reveals the star’s speed
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no movement towards Earth slow movement towards Earth fast movement towards Earth …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth faster …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth faster …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth faster …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth slower faster …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth slower faster …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth slower faster …which reveals the star’s speed towards the Earth.
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no movement towards Earth slow movement towards Earth fast movement towards Earth slower no motion faster …which reveals the star’s speed towards the Earth.
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shorterlonger
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shorterlonger Now imagine
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shorterlonger Now imagine that the same star…
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shorterlonger
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shorterlonger …begins to move slowly
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shorterlonger …begins to move slowly away from the Earth.
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shorterlonger …begins to move slowly away from the Earth.
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shorterlonger …begins to move slowly away from the Earth.
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slowly shorterlonger …begins to move slowly away from the Earth.
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slowly shorterlonger
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slowly shorterlonger The absorption line pattern
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slowly The absorption line pattern will now be Doppler shifted… shorterlonger
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slowly shorterlonger
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slowly shorterlonger …towards the red end
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slowly shorterlonger …towards the red end of the spectrum.
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slowly shorterlonger …towards the red end of the spectrum.
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slowly shorterlonger …towards the red end of the spectrum.
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shorterlonger
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shorterlonger And if the star begins to move
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shorterlonger And if the star begins to move even faster away from the Earth,…
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shorterlonger And if the star begins to move even faster away from the Earth,…
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shorterlonger And if the star begins to move even faster away from the Earth,…
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faster shorterlonger And if the star begins to move even faster away from the Earth,…
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faster shorterlonger
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faster shorterlonger …then its absorption line pattern
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faster …then its absorption line pattern will be even more Doppler shifted… shorterlonger
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faster shorterlonger
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faster shorterlonger …towards the red end
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faster shorterlonger …towards the red end of the spectrum.
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faster shorterlonger …towards the red end of the spectrum.
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shorterlonger faster …towards the red end of the spectrum.
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Once again,
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Once again, let’s compare the (3) spectra.
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no movement away from Earth Once again, let’s compare the (3) spectra.
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slow movement away from Earth no movement away from Earth Once again, let’s compare the (3) spectra.
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slow movement away from Earth fast movement away from Earth no movement away from Earth Once again, let’s compare the (3) spectra.
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slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth no movement away from Earth It’s again the same star
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slow movement away from Earth fast movement away from Earth no movement away from Earth It’s again the same star traveling away from the Earth,…
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slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth no movement away from Earth …it’s just now traveling
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slow movement away from Earth fast movement away from Earth no movement away from Earth …it’s just now traveling at different speeds.
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slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth We know for certain
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no movement away from Earth slow movement away from Earth fast movement away from Earth We know for certain that it’s the same star,…
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no movement away from Earth slow movement away from Earth fast movement away from Earth
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no movement away from Earth slow movement away from Earth fast movement away from Earth …because all (3) spectra
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no movement away from Earth slow movement away from Earth fast movement away from Earth …because all (3) spectra have the exact same fingerprint pattern.
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no movement away from Earth slow movement away from Earth fast movement away from Earth …because all (3) spectra have the exact same fingerprint pattern.
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no movement away from Earth slow movement away from Earth fast movement away from Earth …because all (3) spectra have the exact same fingerprint pattern.
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no movement away from Earth slow movement away from Earth fast movement away from Earth …because all (3) spectra have the exact same fingerprint pattern.
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slow movement away from Earth fast movement away from Earth no movement away from Earth
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The fact that the lines slow movement away from Earth fast movement away from Earth no movement away from Earth
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The fact that the lines are red shifted at all… slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth no movement away from Earth …tells us that the star
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…tells us that the star is moving away from Earth. slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth no movement away from Earth
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slow movement away from Earth fast movement away from Earth But it’s the amount of red shift,
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no movement away from Earth slow movement away from Earth fast movement away from Earth But it’s the amount of red shift, however,…
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no movement away from Earth slow movement away from Earth fast movement away from Earth
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no movement away from Earth slow movement away from Earth fast movement away from Earth …which reveals the star’s speed
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no movement away from Earth slow movement away from Earth fast movement away from Earth …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth faster …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth faster …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth faster …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth slower faster …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth slower faster …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth slower faster …which reveals the star’s speed away from the Earth.
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no movement away from Earth slow movement away from Earth fast movement away from Earth slower faster no motion …which reveals the star’s speed away from the Earth.
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The Doppler Effect
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The Doppler Effect and Rotating Stars
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The Doppler Effect
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The Doppler Effect is also useful…
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…in determining the rotations
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…in determining the rotations of stars.
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star’s north pole …in determining the rotations of stars.
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star’s north pole …in determining the rotations of stars.
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star’s north pole …in determining the rotations of stars.
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star’s equatorstar’s north pole …in determining the rotations of stars.
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Imagine that the Earth lies
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Imagine that the Earth lies is in this direction.
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This star’s motion
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This star’s motion is stationary in space.
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The star is not approaching
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The star is not approaching the Earth,…
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…but neither is it receding away
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…but neither is it receding away from the Earth either.
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But the star does spin on its axis
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But the star does spin on its axis in a counter-clockwise direction.
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counter-clockwise
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But the star does spin on its axis in a counter-clockwise direction. counter-clockwise
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But the star does spin on its axis in a counter-clockwise direction. counter-clockwise
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The far left side
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The far left side of the star…
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…approaches the Earth
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…approaches the Earth with the greatest speed.
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So a spectral line
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So a spectral line from this point on the star’s surface…
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…would show the greatest amount
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…would show the greatest amount of blue shift.
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shorterlonger …would show the greatest amount of blue shift.
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shorterlonger …would show the greatest amount of blue shift.
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shorterlonger …would show the greatest amount of blue shift.
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shorterlonger
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But other places shorterlonger
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But other places on left side of the star… shorterlonger
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shorterlonger
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shorterlonger …also approach the Earth
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…also approach the Earth but at different speeds. shorterlonger
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shorterlonger
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For example, shorterlonger
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For example, consider this position. shorterlonger
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shorterlonger For example, consider this position.
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shorterlonger For example, consider this position.
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shorterlonger For example, consider this position.
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shorterlonger
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At this location shorterlonger
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At this location on the star’s surface,… shorterlonger
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shorterlonger
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shorterlonger …the motion is more complicated
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…the motion is more complicated than the previous position’s motion. shorterlonger
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shorterlonger …the motion is more complicated than the previous position’s motion.
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shorterlonger
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Only some of its motion shorterlonger
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Only some of its motion is towards the Earth,… shorterlonger
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shorterlonger Only some of its motion is towards the Earth,…
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shorterlonger Only some of its motion is towards the Earth,…
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shorterlonger
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shorterlonger …while the rest of it’s motion
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…while the rest of it’s motion is lateral to our line of sight. shorterlonger
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shorterlonger …while the rest of it’s motion is lateral to our line of sight.
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shorterlonger …while the rest of it’s motion is lateral to our line of sight.
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shorterlonger
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Therefore, the spectral line shorterlonger
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Therefore, the spectral line which is located at this position… shorterlonger
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shorterlonger
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shorterlonger …is not nearly as blue shifted
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shorterlonger …is not nearly as blue shifted as much as the other one.
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shorterlonger …is not nearly as blue shifted as much as the other one.
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shorterlonger …is not nearly as blue shifted as much as the other one.
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shorterlonger
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shorterlonger Now consider a point
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shorterlonger Now consider a point on the front side of the star.
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shorterlonger Now consider a point on the front side of the star.
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shorterlonger Now consider a point on the front side of the star.
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shorterlonger
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shorterlonger
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Its motion at this location shorterlonger
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Its motion at this location is lateral to our line of sight. shorterlonger
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Its motion at this location is lateral to our line of sight. shorterlonger
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Its motion at this location is lateral to our line of sight. shorterlonger
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shorterlonger
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shorterlonger So neither it is red shifted,
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So neither it is red shifted, nor is it blue shifted. shorterlonger
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shorterlonger
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shorterlonger A spectral line from this location
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shorterlonger A spectral line from this location will therefore be centered…
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shorterlonger
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shorterlonger …and show no Doppler shift
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…and show no Doppler shift at all. shorterlonger
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shorterlonger …and show no Doppler shift at all.
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shorterlonger …and show no Doppler shift at all.
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shorterlonger
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A point which is located shorterlonger
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A point which is located on the star’s right side… shorterlonger
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shorterlonger A point which is located on the star’s right side…
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shorterlonger A point which is located on the star’s right side…
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shorterlonger A point which is located on the star’s right side…
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shorterlonger
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shorterlonger …will also demonstrate
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shorterlonger …will also demonstrate complicated motion.
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shorterlonger …will also demonstrate complicated motion.
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shorterlonger …will also demonstrate complicated motion.
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shorterlonger
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Only some of its motion shorterlonger
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shorterlonger Only some of its motion recedes away from the Earth,…
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shorterlonger Only some of its motion recedes away from the Earth,…
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shorterlonger
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shorterlonger
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…while the rest of it moves laterally shorterlonger
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…while the rest of it moves laterally to our line of sight. shorterlonger
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shorterlonger …while the rest of it moves laterally to our line of sight.
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shorterlonger …while the rest of it moves laterally to our line of sight.
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shorterlonger
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A spectral line from this point shorterlonger
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A spectral line from this point on the star’s surface… shorterlonger
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shorterlonger
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…will therefore be shorterlonger
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…will therefore be only partially red shifted. shorterlonger
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shorterlonger …will therefore be only partially red shifted.
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shorterlonger …will therefore be only partially red shifted.
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shorterlonger
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Now consider shorterlonger
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Now consider this final position. shorterlonger
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shorterlonger Now consider this final position.
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shorterlonger Now consider this final position.
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shorterlonger Now consider this final position.
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shorterlonger
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shorterlonger The far right side
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The far right side of the star… shorterlonger
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shorterlonger
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…recedes away from the Earth shorterlonger
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…recedes away from the Earth with the greatest speed. shorterlonger
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shorterlonger …recedes away from the Earth with the greatest speed.
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shorterlonger …recedes away from the Earth with the greatest speed.
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shorterlonger
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shorterlonger Therefore, a spectral line
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Therefore, a spectral line from this point on the star’s surface… shorterlonger
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shorterlonger
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shorterlonger …shows the greatest amount
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…shows the greatest amount of red shift of all. shorterlonger
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shorterlonger …shows the greatest amount of red shift of all.
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shorterlonger …shows the greatest amount of red shift of all.
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shorterlonger
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shorterlonger So for this
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So for this rotating star,… shorterlonger
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shorterlonger
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shorterlonger …should we expect to see
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…should we expect to see only these (5) spectral lines? shorterlonger
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shorterlonger …should we expect to see only these (5) spectral lines?
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shorterlonger
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shorterlonger No, because there are more
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No, because there are more than (5) individual points… shorterlonger
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shorterlonger
660
shorterlonger …on the star’s surface
661
…on the star’s surface which are rotating. shorterlonger
662
shorterlonger
663
shorterlonger All of the other points,
664
All of the other points, which we did not select,… shorterlonger
665
shorterlonger
666
shorterlonger …would fill in the rest of the spaces
667
…would fill in the rest of the spaces between the (2) extremes. shorterlonger
668
shorterlonger
669
shorterlonger So rather than having
670
So rather than having only (5) spectral lines in total,… shorterlonger
671
shorterlonger
672
shorterlonger …all of the points
673
…all of the points would now just blend together. shorterlonger
674
shorterlonger
675
shorterlonger So this would instead result
676
So this would instead result in one single broad bar. shorterlonger
677
shorterlonger So this would instead result in one single broad bar.
678
shorterlonger So this would instead result in one single broad bar.
679
shorterlonger
680
shorterlonger So the faster that the star rotates
681
So the faster that the star rotates on its axis,… shorterlonger
682
shorterlonger
683
shorterlonger …then the more red and blue shifted
684
…then the more red and blue shifted the points on its surface will become. shorterlonger
685
shorterlonger
686
And the more red and blue shifted shorterlonger
687
And the more red and blue shifted those points become,… shorterlonger
688
shorterlonger
689
shorterlonger …then the broader
690
…then the broader the bar also becomes. shorterlonger
691
shorterlonger …then the broader the bar also becomes.
692
shorterlonger …then the broader the bar also becomes.
693
shorterlonger …then the broader the bar also becomes.
694
shorterlonger
695
shorterlonger So a broad bar
696
shorterlonger So a broad bar indicates a fast rotation.
697
shorterlonger fast rotation So a broad bar indicates a fast rotation.
698
shorterlonger
699
shorterlonger But the slower the star rotates,
700
But the slower the star rotates, on the other hand,… shorterlonger
701
shorterlonger
702
shorterlonger …then the less red and blue shifted
703
…then the less red and blue shifted the points on its surface become. shorterlonger
704
shorterlonger
705
And the less red and blue shifted shorterlonger
706
And the less red and blue shifted those points become… shorterlonger
707
shorterlonger
708
shorterlonger …then the less broad
709
…then the less broad the bar also becomes. shorterlonger
710
shorterlonger …then the less broad the bar also becomes.
711
shorterlonger …then the less broad the bar also becomes.
712
shorterlonger …then the less broad the bar also becomes.
713
shorterlonger
714
shorterlonger So a narrow bar
715
shorterlonger So a narrow bar indicates a slow rotation.
716
shorterlonger slow rotation So a narrow bar indicates a slow rotation.
717
shorterlonger
718
shorterlonger And if the star
719
And if the star were to cease rotating all together,… shorterlonger
720
shorterlonger
721
shorterlonger …then the bar would reduce
722
…then the bar would reduce to one single spectral line. shorterlonger
723
shorterlonger …then the bar would reduce to one single spectral line.
724
shorterlonger …then the bar would reduce to one single spectral line.
725
shorterlonger …then the bar would reduce to one single spectral line.
726
shorterlonger
727
shorterlonger So the fact that the star’s spectral lines
728
shorterlonger So the fact that the star’s spectral lines are broad in the first place…
729
shorterlonger
730
shorterlonger …reveals that the star
731
shorterlonger …reveals that the star is spinning on its axis.
732
shorterlonger …reveals that the star is spinning on its axis.
733
shorterlonger shorterlonger …reveals that the star is spinning on its axis.
734
shorterlonger …reveals that the star is spinning on its axis.
735
shorterlonger spinning …reveals that the star is spinning on its axis.
736
shorterlonger
737
shorterlonger But it’s the amount of the spectral line’s
738
But it’s the amount of the spectral line’s red or blue shift,… shorterlonger
739
shorterlonger
740
…which reveals the speed shorterlonger
741
…which reveals the speed at which the star rotates. shorterlonger
742
…which reveals the speed at which the star rotates. shorterlonger
743
shorterlonger …which reveals the speed at which the star rotates.
744
shorterlonger …which reveals the speed at which the star rotates.
745
shorterlonger …which reveals the speed at which the star rotates.
746
shorterlonger …which reveals the speed at which the star rotates. faster
747
shorterlonger …which reveals the speed at which the star rotates.
748
shorterlonger …which reveals the speed at which the star rotates.
749
shorterlonger …which reveals the speed at which the star rotates.
750
shorterlonger …which reveals the speed at which the star rotates.
751
shorterlonger …which reveals the speed at which the star rotates. slower
752
shorterlonger …which reveals the speed at which the star rotates.
753
shorterlonger
754
…which reveals the speed at which the star rotates. shorterlonger
755
shorterlonger
756
shorterlonger However, if the star rotated
757
However, if the star rotated while it also was approaching the Earth,… shorterlonger
758
shorterlonger
759
shorterlonger …then not only
760
…then not only would it’s bar be broad,… shorterlonger
761
shorterlonger …then not only would it’s bar be broad,…
762
shorterlonger …then not only would it’s bar be broad,…
763
shorterlonger …then not only would it’s bar be broad,…
764
shorterlonger …then not only would it’s bar be broad,…
765
shorterlonger
766
shorterlonger …but it would also be shifted
767
…but it would also be shifted towards the blue end of the spectrum. shorterlonger
768
shorterlonger …but it would also be shifted towards the blue end of the spectrum.
769
shorterlonger …but it would also be shifted towards the blue end of the spectrum.
770
shorterlonger
771
shorterlonger
772
But if the same star rotated shorterlonger
773
But if the same star rotated while it also was receding away from Earth,… shorterlonger
774
shorterlonger
775
shorterlonger …then not only
776
…then not only would it’s bar be broad,… shorterlonger
777
shorterlonger …then not only would it’s bar be broad,…
778
shorterlonger …then not only would it’s bar be broad,…
779
shorterlonger …then not only would it’s bar be broad,…
780
shorterlonger
781
shorterlonger …but it would also be shifted
782
…but it would also be shifted towards the red end of the spectrum. shorterlonger
783
shorterlonger …but it would also be shifted towards the red end of the spectrum.
784
shorterlonger …but it would also be shifted towards the red end of the spectrum.
785
shorterlonger
786
And the faster the star’s speed shorterlonger
787
And the faster the star’s speed either towards or away from Earth… shorterlonger
788
shorterlonger
789
…then the greater shorterlonger
790
…then the greater its red or blue shift would be. shorterlonger
791
shorterlonger
792
This would create an almost infinite shorterlonger
793
This would create an almost infinite number of combinations… shorterlonger
794
shorterlonger
795
shorterlonger …of possible bar broadnesses
796
…of possible bar broadnesses and red and blue shifts. shorterlonger
798
Review
800
shorterlonger
801
shorterlonger So not only can we determine
802
So not only can we determine that the star is rotating on its axis,… shorterlonger
803
shorterlonger
804
shorterlonger …but also thanks
805
…but also thanks to the Doppler Effect,… shorterlonger
806
shorterlonger
807
shorterlonger …we can also determine
808
…we can also determine how fast the star is rotating. shorterlonger
809
shorterlonger …we can also determine how fast the star is rotating.
810
shorterlonger …we can also determine how fast the star is rotating.
811
shorterlonger …we can also determine how fast the star is rotating.
812
shorterlonger
813
shorterlonger And not only can we tell a star’s motion
814
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
815
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
816
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
817
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
818
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
819
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
820
shorterlonger And not only can we tell a star’s motion either towards or away from Earth,…
821
shorterlonger
822
shorterlonger …but we can also determine
823
shorterlonger …but we can also determine the speed of that motion as well.
824
shorterlonger
825
And all of these motions shorterlonger
826
And all of these motions are detectable… shorterlonger
827
shorterlonger
828
…simply by using shorterlonger
829
…simply by using the Doppler Effect. shorterlonger
830
shorterlonger …simply by using the Doppler Effect.
831
shorterlonger …simply by using the Doppler Effect.
833
End of Part 4
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