Phy5645/AngularMomentumProblem: Difference between revisions
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We first rewrite the wave vector in Dirac notation: | |||
<math>|\psi\rangle=\frac{1}{\sqrt{5}}|1,-1\rangle+\sqrt{\frac{3}{5}}|1,0\rangle+1/\sqrt{5}|1,1\rangle</math> | |||
We see that the possible results for a measurement of <math>\hat{L}_z</math> are <math>-\hbar,</math> <math>0,\!</math> and <math>\hbar.</math> | |||
The probablity for obtaining <math>-\hbar</math> is | |||
<math>P(-\hbar)=|\langle 1,-1|\psi\rangle|^2=\left |\frac{1}{\sqrt{5}}\langle 1,-1|1,-1\rangle+\sqrt{\frac{3}{5}}\langle 1-1|1,0\rangle+\frac{1}{\sqrt{5}}\langle 1,-1|1,1\rangle\right |^2=\tfrac{1}{5}.</math> | |||
Similarly, the probablites of obtaining <math>0\!</math> and <math>\hbar</math> are | |||
<math>P(0)=|\langle 1,0|\psi\rangle|^2=\tfrac{3}{5}</math> | |||
and | |||
<math>P(\hbar)=|\langle 1,1|\psi\rangle|^2=\tfrac{1}{5}.</math> | |||
Back to [[Orbital Angular Momentum Eigenfunctions#Problem|Orbital Angular Momentum Eigenfunctions]] |
Latest revision as of 13:40, 18 January 2014
We first rewrite the wave vector in Dirac notation:
We see that the possible results for a measurement of are and
The probablity for obtaining is
Similarly, the probablites of obtaining and are
and