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M04CG1.1.3a Recognize a line of symmetry in a two
M04CG1.1.3a Recognize a line of symmetry in a two

... • Content target: Identify when a flat surface (2-D) is separated into equal parts. • Example: Use a simple shape that is easy to identify for sameness when divided. Use only one type of shape per set of examples and no other changes in attributes across shape (color, size, etc.)). Fold one shape in ...
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... where ρ(E) is the level density. Suppose that for E > EM the distribution be ρ(E) = c1 E α with α > −1. For small β we have ...
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... Where E is a number not a function (in this case total energy). Note that in equations like this after the application of the operator (in this case H, the Hamiltonian operator) to the wavefunction you get the eigenvalue (E) and the same wavefunction back. In the case we looked at above (the momentu ...
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...  Sets upper limit on the amount of non-pV work possible at constant T, V (it is free energy since its decrease represents the maximum energy that can be freed in a process and made available for work)  Transitions can only take place to a state with a lower free energy ...
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... applications are also under way. Ballistic conduction, nonlinear magnetic behaviour, possibility of various kinds of pumping. The role of correlation effects is much more critical in 2d (e.g. QHE, charge fractionalization, anyons , Kosterlitz-Thouless ) and above all in 1d (Peierls transition and ch ...
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... Dv=±1 Dv=+1: absorption Dv=-1: emission If an oscillator has only one frequency associated with it, then it can only interact with radiation of that frequency. Selection rules limit the number of allowed transitions ...
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T-symmetry

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