An electron confined to a one-dimensional box has energy levels given by the equation En = n²h²/8mL² where n is a quantu

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An electron confined to a one-dimensional box has energy levels given by the equation En = n²h²/8mL² where n is a quantu

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An Electron Confined To A One Dimensional Box Has Energy Levels Given By The Equation En N H 8ml Where N Is A Quantu 1
An Electron Confined To A One Dimensional Box Has Energy Levels Given By The Equation En N H 8ml Where N Is A Quantu 1 (36.39 KiB) Viewed 101 times
An Electron Confined To A One Dimensional Box Has Energy Levels Given By The Equation En N H 8ml Where N Is A Quantu 2
An Electron Confined To A One Dimensional Box Has Energy Levels Given By The Equation En N H 8ml Where N Is A Quantu 2 (24.93 KiB) Viewed 101 times
An electron confined to a one-dimensional box has energy levels given by the equation En = n²h²/8mL² where n is a quantum number with possible values of 1, 2, 3, ...; m is the mass of the particle; and L is the length of the box.
Part A Calculate the energies of the n = 1, n=2, and n = 3 levels for an electron in a box with a length of 200 pm. Enter your answers separated by a comma. 15. ΑΣΦ E₁, E2, E3= Submit Part B Request Answer J Calculate the wavelength of light required to make a transition from n=1-n-2 and from n=2→n=3. Enter your answers separated by a comma. 196) ΑΣΦ
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