wave particle duality Flashcards

1
Q

what shows light as a wave

A

interference and diffraction

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2
Q

what does light produce that proves it is a wave

A

interference and diffraction patterns - alternating bands of dark and light

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3
Q

how can these only be explained

A

by using waves interfering constructively or interfering destructively

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4
Q

what shows light behaving as a particle

A

photoelectric effect

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5
Q

how did Einstein explain the results of the photoelectric effect

A

by thinking of the beam of light as a series of particle light photons

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6
Q

what does it mean if a photon is a discrete bundle of energy

A

then it can interact with an electron in a one-to-one way. all the energy in the photon is given to one electron

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7
Q

who came up with the wave particle duality theory

A

de broglie

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8
Q

what was his suggestion

A

if a wave-like light showed particle properties (photons) then particles like electrons should be expected to show wave-like properties

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9
Q

how does de broglie relate a wave and particle property

A

he relates wave property (wavelength) to a moving particle property (momentum)

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10
Q

what is the formula for de broglie wavelength

A

lambda = h/mv

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11
Q

what can the de broglie wave of a particle be interpreted as

A

a probability wave

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12
Q

what proved the wave nature of electrons

A

electron diffraction

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13
Q

when are diffraction patterns observed

A

when electrons are accelerated in a vacuum tube interact with the spaces in a graphite crystal

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14
Q

what should happen according to wave theory

A

the spread of the lines in the diffraction pattern increases if the wavelength of the wave is greater

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15
Q

was this proven in electron diffraction experiments

A

a smaller accelerating voltage (slower electrons) gave more widely spaced rings so yes

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16
Q

what is the conclusion

A

increasing the electron speed (and therefore electron momentum) makes the diffraction pattern squash together towards the middle

17
Q

what happens to wavelength if the momentum is greater

A

the wavelength is shorter and the spread of lines in smaller

18
Q

when do you only get a diffraction pattern

A

if a particle interacts with an object of about the same size as its de broglie wavelength

19
Q

how did scientists understanding of nature and matter change over time

A

through process of hypothesis and validation