Why is it necessary to normalize quantum wave functions? Othis ensures that the wave function has no negative values O this preserves the wave functions status as an eigenfunction O this allows the wave function to satisfy the boundary conditions O the square magnitude of the wave function represents a probability density
Why is it necessary to normalize quantum wave functions? Othis ensures that the wave function has no negative values O this preserves the wave functions status as an eigenfunction O this allows the wave function to satisfy the boundary conditions O the square magnitude of the wave function represents a probability density
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
Transcribed Image Text:Why is it necessary to normalize quantum wave functions?
this ensures that the wave function has no negative values
this preserves the wave functions status as an eigenfunction
this allows the wave function to satisfy the boundary conditions
O the square magnitude of the wave function represents a probability density
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