4. The graph below shows the variation with distance r from the nucleus of the square of the wave function, v. of a hydr

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4. The graph below shows the variation with distance r from the nucleus of the square of the wave function, v. of a hydr

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4 The Graph Below Shows The Variation With Distance R From The Nucleus Of The Square Of The Wave Function V Of A Hydr 1
4 The Graph Below Shows The Variation With Distance R From The Nucleus Of The Square Of The Wave Function V Of A Hydr 1 (22.38 KiB) Viewed 27 times
4 The Graph Below Shows The Variation With Distance R From The Nucleus Of The Square Of The Wave Function V Of A Hydr 2
4 The Graph Below Shows The Variation With Distance R From The Nucleus Of The Square Of The Wave Function V Of A Hydr 2 (31.91 KiB) Viewed 27 times
4. The graph below shows the variation with distance r from the nucleus of the square of the wave function, v. of a hydrogen atom according to the Schrödinger theory. a The define the expression y? (11) State and explain in terms of a where the electron is most likely to be found. An electron is approaching a potential barrier. (11) State two factors that would affect the tunnelling probability of the electron. (11) Complete the probability wave function for the electron within the on the other side of the barrier.
An electron is approaching a potential barrier. (11) State two factors that would affect the tunnelling probability of the electron. (11) Complete the probability wave function for the electron within the on the other side of the barrier. As E>V (E<V E>V
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