Consider the follow image of two waves (i.e., orange and black oscillatory curves). Note that the horizontal and vertical axes labels are the numbers on the straight lines intersecting at 0,0. a) What is the amplitude and wavelength of the black and orange lines? (Note the wavelength may be a whole number or a multiple of pi.) b) Write out the form of these two waves in terms of a sine or a cosine function times a constant (i.e. in form Asin(cx) or Acos(cx) ). c) What is the momentum of a photon associated with each of the two waves? You may assume the x-axis measures distance in units of nanometers.

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Consider the follow image of two waves (i.e., orange and black oscillatory curves). Note that the
horizontal and vertical axes labels are the numbers on the straight lines intersecting at 0,0.
a) What is the amplitude and wavelength of the black and orange lines? (Note the wavelength
may be a whole number or a multiple of pi.)
b) Write out the form of these two waves in terms of a sine or a cosine function times a
constant (i.e. in form Asin(cx) or Acos(cx) ).
c) What is the momentum of a photon associated with each of the two waves? You may
assume the x-axis measures distance in units of nanometers.
Transcribed Image Text:Consider the follow image of two waves (i.e., orange and black oscillatory curves). Note that the horizontal and vertical axes labels are the numbers on the straight lines intersecting at 0,0. a) What is the amplitude and wavelength of the black and orange lines? (Note the wavelength may be a whole number or a multiple of pi.) b) Write out the form of these two waves in terms of a sine or a cosine function times a constant (i.e. in form Asin(cx) or Acos(cx) ). c) What is the momentum of a photon associated with each of the two waves? You may assume the x-axis measures distance in units of nanometers.
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