Figure 1 shows the boundary surface of 2s orbital of a hydrogenic atom in three dimensions. (i) Define boundary surface. (ii) What are the number 2 and the letter s in the name '2s orbital' stand for?

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Kindly answer question I & II

Figure 1
Figure 1 shows the boundary surface of 2s orbital of a hydrogenic atom in
three dimensions.
Define boundary surface.
(i)
What are the number 2 and the letter s in the name '2s orbital'
stand for?
Other s orbitals (such as 1s, 3s, etc. orbitals) have similar
spherical boundary surfaces. How do you differentiate between
the different types of the s orbitals?
By using the separation of variables, the wave function of a
particle in a three-dimensional space can be written as an
expression
y(r.0.4) = R(r)Y(0,ø)
Explain the changes occurring to this expression for a particle in the
s rbital.
(ii)
(iii)
(iv)
Transcribed Image Text:Figure 1 Figure 1 shows the boundary surface of 2s orbital of a hydrogenic atom in three dimensions. Define boundary surface. (i) What are the number 2 and the letter s in the name '2s orbital' stand for? Other s orbitals (such as 1s, 3s, etc. orbitals) have similar spherical boundary surfaces. How do you differentiate between the different types of the s orbitals? By using the separation of variables, the wave function of a particle in a three-dimensional space can be written as an expression y(r.0.4) = R(r)Y(0,ø) Explain the changes occurring to this expression for a particle in the s rbital. (ii) (iii) (iv)
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