Draw the intensity distribution for two slit interference.

A massless particle, very well known.
What is the photon?
How is this image created and what is it evidence for?

low density gas emit discrete wavelengths when energised by light.
Discrete wavelengths (spectral line) match energy of the transition of an electron between energy levels.
Quarks required for a proton
What is two up, one down?
What is the frequency of yellow light with a wavelength of 600 nm?
5 x 1014 HZ
A popular radio station in Adelaide broadcasts radio waves with a frequency of 102.3MHz.
Calculate the wavelength of the transmitted radio waves.

What experiment led to believing light behaves a wave?
Double Slit Experiment (Young's)
What is the difference between baryons and mesons?
Baryons have 3 quarks, but mesons have one quark and one anti-quark
The work function of a silver surface is 4.73 eV. Two photons of 2.5 eV each hit the silver.
Why are no electrons ejected?
1:1 interaction.
Does not meet work function to get electron to surface etc.
Describe how transmitting and receiving antennas work.
EM waves produced by oscillating charges (AC current in conductor) with freq equal to AC current.
E field of radio wave exerts force on electrons in conductor causing them to oscillate at freq of incoming wave.
Describe three features of this graph.
Slope = h
X intercept = threshold freq
y-intercept = work function
Carried by two bosons.
What is the weak nuclear force?
What is meant by superposition?
When two waves meet
resultant displacement is the sum of the individual displacement
Explain why the double-slit experiment produces alternating bright and dark bands.
- waves diffracted as they passed through the two slits.
- they interfered with each other resulting in constructive and destructive interference
- Where the waves add together → Bright bands
Where the waves cancel each other → Dark bands
Derive:

Davisson-Germer experiment
Electron diffraction by a crystal, supports de Broglie’s hypothesis of the wave nature of matter?