Yr 12 - Quantum Physics Flashcards

1
Q

What is a photon?

A

Discrete packet of energy

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2
Q

What is the rest mass for a photon at the speed of light?

A

0

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3
Q

What is a LED?

A

Diode

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4
Q

What is the threshold voltage?

A

Max PD of a circuit before any current flows

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5
Q

What is an electron volt?

A

Amount of KE gained by electron that is accelerated through a PD of 1V

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6
Q

How do you convert from Joules to electon-volts and vice versa?

A

1ev = 1.6x10^-19 J

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7
Q

Define each letter of the equation

hf = ɸ + KEmax

A

h = planks constant
f = frequency
ɸ = work function (J)
KEmax = KE of photoelectrons

hf = energy (J)

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8
Q

Describe the Photoelectric effect (experiment)

6 Marks

A
  • EM waves exist as quantas of energy (discrete packets) called photons
  • When an EM wave hits metal surface photons are absorbed why electrons 1:1
  • Photoelectrons emitted if energy > ɸ
  • KE of Photoelectrons depends of energy of photon
  • KEmax = Energy of photon - work function
  • Number of electrons emitted depends on intensity of EM waves as higher intensity means more photons of light and therefore more photoelectrons emitted.

(Gold leaf, Zinc plate, negative charges)

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9
Q

Describe the setup & effect of the gold leaf experiment

A

Zinc plate with gold leaf attached

  • Zinc plate negatively charged
  • Gold leaf falls when EM radiation exceeds (threshold frequency/work function) as electron charges are ejected
  • Leaf is upright because it is negatively charged and is repelling the negative charges of the zinc plate.
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10
Q

What does ‘Irradiated’ mean?

A

Exposed to radiation

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11
Q

In terms of the work function, when does:

  • Ek = 0
  • Ek > 0
A
  • When E = ɸ
  • When E > ɸ
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12
Q

Do photoelectrons have a constant speed?

A

No, it varies and is not constant

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13
Q

How does Intensity affect frequency/energy?

A

Intensity has no effect on frequency or energy.

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14
Q

What is the threshold frequency?

A

Minimum frequency of em radiation causing the emission of an electron from surface of a metal.

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15
Q

What is the work function?

A

Minimum energy to remove a single electron from the surface of a metal.

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16
Q

Define each letter of the equation:

hf = ɸ + KEmax

A

h = planks constant

f = frequency of incident wave

ɸ = work function of metal

KEmax = Make KE an emitted photoelectron can have (as KE varies but does have a maximum which is a result of the amount of energy above the work function)

17
Q

What is the photoelectric effect?

A

When em radiation >ɸ is incident on the surface of a metal
- One election absorbs One photon 1:1 ratio
- Emitted electron is a photoelectron (Photon and electron)

18
Q

Why is graphic suitable for DE Broglie’s electron diffraction experiment?

A

The spacing between atoms is similar to De Broglie wavelength

19
Q

What is meant by ‘wave-particle duality’?

A

Em radiation / matter can display both wave & particle properties

20
Q

How does the photoelectric effect explain that waves behave like particles?

A

It shows that waves behave like particles as there is no way to explain the results unless waves split into distinct particles.

21
Q

Explain:

  • Independent
  • Dependant
  • Control

variables

A

Independent - You change

Dependent - You then measure effect

Control - You keep the same to ensure a fair test

22
Q

How does electron diffraction explain that particles behave like waves?

A

Diffraction pattern gives evidence for wave nature of electrons (or particles)