Difference between revisions of "Forest ModernPhysics"
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:<math>= 5.8 \times 10^{-4} \frac{3 \times 10^{8}\mbox{m/s}}{c}</math> | :<math>= 5.8 \times 10^{-4} \frac{3 \times 10^{8}\mbox{m/s}}{c}</math> | ||
:<math>= 1.75 \times 10^{4} \frac{\mbox{eV}}{c}</math> | :<math>= 1.75 \times 10^{4} \frac{\mbox{eV}}{c}</math> | ||
− | :<math>= 17.5 \frac{\mbox{keV}}{c}</math> | + | :<math>= 17.5 \frac{\mbox{keV}}{c}\Rightarrow \mbox{E}=17.5 \mbox{keV}</math> |
Hit a crystal made of nickel with 54 eV electrons. | Hit a crystal made of nickel with 54 eV electrons. |
Revision as of 01:44, 30 September 2009
Matter Waves (Wave Particle Duality)
Special relativity said that
if m=0
Plank said he could fit the Black Body radiation data assuming that that
where = Plank's constant
Combining the two we have
photons have momentum like a particle (mv)
Do particles reciprocate and behave like photons?
De Broglie's Hypothesis
If photons can behave like particles by having momentum
Then can a particle behave like a wave by having wavelength
or
de Broglie Hypothesis
Davisson and Germer
We know that X-rays having a wavelength of
make an interference patter on an aluminum foil.
Hit a crystal made of nickel with 54 eV electrons.
1.) 54 eV electrons
From hyperphysics: