![For a two dimensional particle in a box and we have this molecule, with 26 pi electrons, what should the n's be in the Schrodinger equation? In other words, which orbitals are For a two dimensional particle in a box and we have this molecule, with 26 pi electrons, what should the n's be in the Schrodinger equation? In other words, which orbitals are](https://homework.study.com/cimages/multimages/16/aaa1359668641142067577.jpg)
For a two dimensional particle in a box and we have this molecule, with 26 pi electrons, what should the n's be in the Schrodinger equation? In other words, which orbitals are
![If h is the Planck's constant, m = mass of the electron, e = charge of the electron and in(0) = permittivity of vacuum, then (h^(2)in(0))/(me^(2)) has the unit If h is the Planck's constant, m = mass of the electron, e = charge of the electron and in(0) = permittivity of vacuum, then (h^(2)in(0))/(me^(2)) has the unit](https://d10lpgp6xz60nq.cloudfront.net/web-thumb/648318293_web.png)
If h is the Planck's constant, m = mass of the electron, e = charge of the electron and in(0) = permittivity of vacuum, then (h^(2)in(0))/(me^(2)) has the unit
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Uncertainty in the position of an electron (mass = 9.1 × 10^-31kg) moving with a velocity 300ms^-1 accurate upon 0.001
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Symmetry | Free Full-Text | New Limit on Space-Time Variations in the Proton-to-Electron Mass Ratio from Analysis of Quasar J110325-264515 Spectra
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