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Quantum Physics

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Wave/Particle Duality. Electron can be in multiple states at one time. ... Wave Mechanics. DeBroglie Wavelength. Schrodinger's Equation. Solution: PHYS 2120 ... – PowerPoint PPT presentation

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Title: Quantum Physics


1
Quantum Physics
2
Blackbody Radiation
  • Stephan-Boltzman Law

T4
T3
Radiance
T2
T1
wavelength
3
Wiens Law Blackbody Radiance
4
Photons
  • Light consists of packets or quanta of energy.
  • Heisenbergs Uncertainty Principle

5
Photoelectric Effect
  • Electrons are emitted when light is incident on
    certain metals.

IR
l1.010-5m
UV
e-
e-
l1.010-7m
6
Atomic Spectra
  • Emission
  • Specific wavelengths added by hot gas.
  • Absorption
  • Specific wavelengths removed by cold gas.

7
Bohr Model of Hydrogen
  • Electrons move in circular orbits
  • Only certain orbits are stable
  • Radiation emitted or absorbed as electron moves
    from one orbit to another
  • Allowed orbits determined by quantized angular
    momentum

8
Bohr Model of Hydrogen
  • Electron of the hydrogen atom can only be in
    specific energy states.

e-
9
Matter Waves
g
g
g
How can an electron go through two holes at once?
10
Fundamental Paradox
  • Wave/Particle Duality
  • Electron can be in multiple states at one time.
  • Godels Incompleteness Theorem
  • Can not have an all encompassing theory of
    everything.
  • Finiteness of man

11
End of Science?
  • Positivism
  • Progress towards an ultimate understanding of the
    nature of reality.
  • Limitation
  • All universal models will be incomplete and
    possibly paradoxical.
  • Does not eliminate the usefulness of the model.

12
Wave Mechanics
  • DeBroglie Wavelength
  • Schrodingers Equation
  • Solution

13
Quantum Numbers
  • Principle QN
  • n1,2,3,
  • Orbital QN
  • l0,1,2,n-1
  • Magnetic QN
  • ml-l,0l
  • Spin
  • ms-1/2,1/2

14
Valence Electrons
  • What states are filled by the electons of Ne?

n 4
0
0
1
1
-1
-1
0
-2
2
n 3
0
0
ml
1
1
-1
-1
0
-2
2
n 2
0
0
ml
1
-1
n 1
ml
0
l 0
l 1
l 2
15
Lasers
  • Light Amplification through Stimulated Emission
    of Radiation.

E2
e-
e-
e-
e-
e-
e-
E1
E0
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