The formula for calculating the energies of an electron in a hydrogenlike ion is given in Problem 8.57. This equation cannot be applied to many-electron atoms. One way to modify it for the more complex atoms is to replace Z with ( Z − σ ), where Z is the atomic number and σ is a positive dimensionless quantity called the shielding constant. Consider the helium atom as an example. The physical significance of σ is that it represents the extent of shielding that the two 1 s electrons exert on each other. Thus, the quantity ( Z − σ ) is appropriately called the “effective nuclear charge.” Calculate the value of σ if the first ionization energy of helium is 3.94 × 10 −18 J per atom. (Ignore the minus sign in the given equation in your calculation.)
The formula for calculating the energies of an electron in a hydrogenlike ion is given in Problem 8.57. This equation cannot be applied to many-electron atoms. One way to modify it for the more complex atoms is to replace Z with ( Z − σ ), where Z is the atomic number and σ is a positive dimensionless quantity called the shielding constant. Consider the helium atom as an example. The physical significance of σ is that it represents the extent of shielding that the two 1 s electrons exert on each other. Thus, the quantity ( Z − σ ) is appropriately called the “effective nuclear charge.” Calculate the value of σ if the first ionization energy of helium is 3.94 × 10 −18 J per atom. (Ignore the minus sign in the given equation in your calculation.)
Solution Summary: The author explains that the value for sigma should be calculated using the given data and conditions.
The formula for calculating the energies of an electron in a hydrogenlike ion is given in Problem 8.57. This equation cannot be applied to many-electron atoms. One way to modify it for the more complex atoms is to replace Z with (Z − σ), where Z is the atomic number and σ is a positive dimensionless quantity called the shielding constant. Consider the helium atom as an example. The physical significance of σ is that it represents the extent of shielding that the two 1s electrons exert on each other. Thus, the quantity (Z − σ) is appropriately called the “effective nuclear charge.” Calculate the value of σ if the first ionization energy of helium is 3.94 × 10−18 J per atom. (Ignore the minus sign in the given equation in your calculation.)
Definition Definition Number of protons in the nucleus of an atom. It uniquely identifies an element, as the number of protons determines the element's properties. The periodic table of elements is arranged based on increasing atomic numbers, allowing scientists to easily locate and study elements.
What is meant by the term nuclear charge?
How does the effective nuclear charge experienced by the valence electrons of an atom vary going from left to right across a period of the periodic table?
3. If each core electron was totally effective in shielding the valence electrons from the full charge of the nucleus and the valence electrons provided no shielding effect for each other, what would be the effective nuclear charge acting on a valence electron in
(a.) K
(B.) Br
4. what is the general relationship between the size of an atom and its first ionization energy?
5. which element in the periodic table has the largest ionization energy? Which has the smallest?
The ionization energy of an alkali metal is reflected in its reaction with water, where a bigger explosion indicates an easier reaction. In general, if X is an alkali metal, the reaction with water is: X (s) + H2O (l) = XOH (aq) + H2 (g). How does the reaction relate to the ionization of X? Write the reaction for X in the boxes below. This reaction does not need to be balanced. Any other species and the state of the reactants and products can be ignored. Include the formal charge in the superscript box. If there is no formal charge, write "0".
Write the electron configuration for xenon.
B I UE E
T
Σ
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