unit 2 wave ( doppler efffect ) Flashcards

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1
Q

doppler effect

A

change of apparent frequency of wave caused by an observer moving relative to the source

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2
Q

red shift

A
  • doppler effect
  • apparent decrease in frequency due to the separation of the source and the observer
  • the wavelength appears shifted towards the red end of spectrum is because the distance travelled by each successive wave has increased
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3
Q

blue shift

A
  • doppler effect
  • apparent increase in frequency due to the approaching of the source and the observer
  • the wavelength appears shifted towards the blue end of spectrum is because the distance travelled by each successive wave has decreased
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4
Q

doppler

sound
ultrasound
electromagnetic wave
radar speed gun
remote sensing
A

pg 43, 44, 45,46.47

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5
Q

doppler effect
pulse echo technique ( ultrasound )

method describe

A

a signal pulse is sent towards the object and reflected wave is analysed

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6
Q

doppler effect
pulse echo technique ( ultrasound )

we can detect… from

time of reflection
change in wavelength

A

time reflection

  • find the distance of boundary from the source
  • distance = 1/2 speed of wave time time of reflection

change in wavelength
- the speed of object reflecting the waves

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7
Q

doppler effect
pulse echo technique ( ultrasound )

why transmitted in pulses

A
  • one pulse must return before the next is sent
  • otherwise it is hard to tell which bit of reflected sound originated with which bit of emitted sound
  • no overlap btwn pulses
  • no interference btwn pulses
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8
Q

doppler effect
pulse echo technique ( ultrasound )

how to avoid overlapping btwn pulses?

A

time btwn pulses being emitted must be greater than the time interval btwn sending out pulse and receiving its echo

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9
Q

doppler effect
pulse echo technique ( ultrasound )

why shorten the interval btwn pulses being emitted when near to the object

A
  • the distance is shorter so time taken to receive echo is shorter
  • time btwn pulses being emitted can be shorten and still able to avoid overlapping btwn pulses
  • more frequent pulses allow rapid motion to be preceived
  • allow position to be determined precisely / accurately
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10
Q

doppler effect
pulse echo technique ( ultrasound )

explain how ultrasound pulses can be used to build up the image of the fetus in the uterus

A
  • pulses reflected at the boundary
  • time for echo pulse to return measured
  • distance calculated from time to return
  • ultrasound travels as pulses so that one pulse is detected before the next pulse is sent
  • probe moved to diff positions
  • many pulses are sent
  • distance and image of fetus can be plotted
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11
Q

doppler effect
pulse echo technique ( ultrasound )

image quality

sharpness of each reflection depends on

A

the duration of the transmitted pulse

if the pulse is too long , echo will overlap
if the pulse is too short, energy is small and reflections may be too weak to be detected

best pulse length is the balanced btwn the two

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12
Q

doppler effect
pulse echo technique ( ultrasound )

image quality

resolution =

A

the smallest details detected
half the length of a pulse

pulse length = speed times time pulse is on

resolution = 1/2 times pulse length

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13
Q

doppler effect
pulse echo technique ( ultrasound )

image quality

shorter pulse =

A

smaller thickness

different in distance can be measured

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14
Q

doppler effect
pulse echo technique ( ultrasound )

image quality

diffraction will occur if

A

the wavelength used is too large

resolution will decrease

ultrasound will just resolve details of the same size as its wavelength

resolution = wavelength

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15
Q

doppler effect
pulse echo technique ( ultrasound )

image quality

resolution of ultrasound is higher in air than water

why

A
  • ultrasound speed in air is lower than speed in water
  • with same ultrasound frequency, wavelength in air is shorter than in water
  • echolocation will detect smaller targets due to less diffraction
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16
Q

doppler effect
pulse echo technique ( ultrasound )

danger of ultrasound

A

ultrasound is absorbed in tissue and causes heating

at some frequencies small objects in the body could resonate and literally be shaken to pieces

  • cause cavitation , production of small gas bubble which absorb energy, expand and damage surrounding tissues