write down the slater determinant For the ground state of Beryllium
(4 electrons )and indicate which states are allowed or not? Explain
on of the terms ? does the wave function that is given satisfy the
pauli exclusion principle ? Explain your reasons to
Use the Slater determinant formalism to write the spin-orbital
for the ground state of He atom. Prove that the wave function that
is obtained for this satisfies the anti-symmetric requirements for
fermions.
A) Show that the Slater determinant wavefunction for the boron
atom in its ground state is antisymmetric.
(Please use one of the theorems on determinants).
B) State why this is an indistinguishable wavefunction.
The electron configuration of a neutral atom in the ground state
is 1s22s22p63s2. Write
a possible set of quantum numbers for the fourth electron added to
the atom, and identify the element.
Starting with the previous noble gas, write the condensed
ground-state electron configuration of an atom of the following
elements. (Type your answer using the format [Ar] 3d10 4s2 for
[Ar]3d104s2.)
(a) cadmium
(b) lead
(c) hafnium
(d) arsenic
e)scandium
f)silver
a)
write the ground state electron configuration for two cation and
two anions that each resemble the electron configuration for a neon
noble gas atom. (the term for this is isoelectronic).
b) which if these four ions is the largest?
In this problem we will use a slater determinant to examine a
proposed electronic configuration for Lithium 1s3
a) Draw an orbital diagram showing two possible ways to achieve
this configuration
b)using the diagram, write the Slater Determinant for this
electronic configuration
TRUE or FALSE
The element with a ground state electron configuration of
1s22s22p63s2 is an alkaline earth metal.
The element with a ground state electron configuration of
[Kr]5s24d105p5 has 15 valence electrons.
The ground state electron configuration for the undiscovered
element 115 is [Rn]6s24f145d106p3.
The ground state electron configuration for Cu is
[Ar]4s13d10.
If an element (abbreviated X) has a ground state electron
configuration of [Ne]3s23p4, then the formula of the compound that
X forms with magnesium is MgX.
The...
Base your answer to the following question on the electron
configuration for the ground state of element X, given below.
1s22s22p63s23p4
How many valence electrons does element X have?