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@ -532,11 +532,11 @@ $${1\over8}\pi$$
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\include{francois-viete}
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\include{example2}
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\include{vector-curl}
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\include{example3}
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\include{qho}
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\include{example4}
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\include{hydrogen-wavefunctions}
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\include{space-shuttle-and-corvette}
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@ -1,9 +1,4 @@
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\newpage
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\index{quantum harmonic oscillator}
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\noindent
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\section*{Quantum-harmonic-oscillator}
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For total energy $E$, kinetic energy $K$ and potential energy $V$ we have
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$$E=K+V$$
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The corresponding formula for a quantum harmonic oscillator is
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@ -1,7 +1,4 @@
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\newpage
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\noindent
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\section*{Vector curl}
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The curl of a vector function can be expressed in tensor form as
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$$\mathop{\rm curl}{\bf F}=\epsilon_{ijk}\,{\partial F_k\over\partial x_j}$$
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where $\epsilon_{ijk}$ is the Levi-Civita tensor.
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