A neutron of mass m with energy E <+ V, is in the internucleon potential which can be modeled as follows: x =0,V(x) =+00; 0 a,V(x) =+Vo . I. Draw the potential sketch!
A neutron of mass m with energy E <+ V, is in the internucleon potential which can be modeled as follows: x =0,V(x) =+00; 0 a,V(x) =+Vo . I. Draw the potential sketch!
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
Transcribed Image Text:A neutron of mass m with energy E <+ Vo is in the internucleon potential
which can be modeled as follows:
x =0,V(x) =+0; 0 <x sa,V (x) = -Vo; and x >a,V(x) =+Vo
I.
Draw the potential sketch!
Write down the Schrödinger equation for:
II.
region I (0 <x sa, V(x)=-V, ), and region II ( x >a,V(x) =+Vo ),
Calculate the total probability of nucleons tunneling through the
barrier?; from region I to II (with E 2 0 and E < 0).
II.
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